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(11) | EP 2 173 714 B9 |
| (12) | CORRECTED EUROPEAN PATENT SPECIFICATION |
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PIPERIDINE DERIVATIVES AS MODULATORS OF CHEMOKINE RECEPTOR ACTIVITY PIPERIDINDERIVATE ALS MODULATOREN DER CHEMOKIN-REZEPTORAKTIVITÄT DÉRIVÉS DE PIPÉRIDINE EN TANT QUE MODULATEURS D'ACTIVITÉ DE RÉCEPTEUR DE CHIMIOKINE |
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| Note: Within nine months from the publication of the mention of the grant of the European patent, any person may give notice to the European Patent Office of opposition to the European patent granted. Notice of opposition shall be filed in a written reasoned statement. It shall not be deemed to have been filed until the opposition fee has been paid. (Art. 99(1) European Patent Convention). |
FIELD OF THE INVENTION
BACKGROUND OF THE INVENTION
SUMMARY OF THE INVENTION
DETAILED DESCRIPTION OF THE PRESENT INVENTION
Q is CH or N;
Z is O or S;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O), S(O)2, N(R8), C(=O) or
Z1 is CH(R7), CH2, O, S, N(R8), S(O) or S(O)2;
T is a bond,
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally
substituted with 0-5 R1a; provided that R1 is not unsubstituted phenyl when T is
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocycyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF2, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6. -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, CN or NH2;
R5 is hydrogen, halo, -CN or -Oalkyl;
R5a is hydrogen, halo, -CN or alkynyl;
R5b is hydrogen, halo, -CN or -Oalkyl;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)R10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)CF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8RS)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -C(=NR14)NR14R14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(OMCF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -C(=NR14)NR14R14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2;
r is 0-5;
provided that:R5, R5a and R5b are not all H when T is a bond and R4 is H or OH.
Z is O or S;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O), S(O)2, N(R8), C(=O) or
Z1 is CH(R7), CH2, O, S, N(R8), S(O) or S(O)2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally
substituted with 0-5 R1a; provided that R1 is not unsubstituted phenyl when T is
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, CN or -NH2;
R5 is hydrogen, halo or -CN;
R5a is halo, -CN or alkynyl;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NRgC(=O)(CRSR8)rR10 -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylallcyloxyallcyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)CF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3. -O(CR8R8)rR14. -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-4.
Z is O or S;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O)2, N(R8), C(=O) or
Z1 is CH(R7), CH2, O, S, N(R8)or S(O)2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)CF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)R10, -OC(=O)(CR8R8)r-R10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, CN or -NH2;
R5 is hydrogen, halo or -CN;
R5a is halo, -CN or alkynyl;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylatkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3. -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloallcylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3. -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-3.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O)2, N(R8) or C(=O);
Z1 is CH(R7), CH2, O, S or N(R8);
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, or -NH2;
R5 is hydrogen, halo or -CN;
R5a is halo, -CN or alkynyl;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R4, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloallcylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O)2, N(R8), or C(=O);
Z1 is CH(R7), CH2, O or N(R8);
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)CF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, or -NH2;
R5 is hydrogen, halo or -CN;
R5. is halo or -CN;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclytalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8),
Y is CH(R1a), CH2, O, S or S(O)2;
Z1 is CH(R7), CH2 or O;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8R10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is F, OH, or -NH2;
R5 is hydrogen, halo or -CN;
R5. is halo or -CN;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylatkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R4, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2, O or S;
Z1 is CH(R7) or CH2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is F or OH;
R5 is hydrogen, halo or -CN;
R5a is halo or -CN;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylatkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, - NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2 or O;
Z1 is CH(R7) or CH2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is alkyl;
R4 is OH;
R5 is hydrogen or halo;
R5a is halo or -CN;
R5b is hydrogen or halo;
R6, at each occurrence, is independently alkyl, cycloalkyl, aryl or heteroaryl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9SO)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3. -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, heteroaryl or heterocyclyl, wherein the aryl, heteroaryl or heterocyclyl may be optionally substituted with 0-5 R9a, and the heteroaryl or heterocyclyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, - O(CR8R8)rR14, -OH, -SH, -S(CR8R8),R14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, aryl or heterocyclyl, wherein the aryl or heterocyclyl may be optionally substituted with 0-3 R10a, and the heterocyclyl contains 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, - O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2),CF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a) or CH2;
Z1 is CH(R7) or CH2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =0, -OC(=O)NR9R9, or aryloxy, wherein the alkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl and aryloxy may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, or aryloxy;
R3, at each occurrence, is alkyl;
R4 is OH;
R5 is hydrogen or halo;
R5a is halo;
R5b is hydrogen or halo;
R6, at each occurrence, is independently alkyl, cycloalkyl, aryl or heteroaryl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(o)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9 or aryloxy, wherein the alkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl and aryloxy may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6 or aryloxy;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, heteroaryl or heterocyclyl, wherein the aryl, heteroaryl or heterocyclyl may be optionally substituted with 0-5 R9a, and the heteroaryl or heterocyclyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14RI4, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, or aryloxy;
R10, at each occurrence, is independently selected from alkyl, aryl or heterocyclyl, wherein the aryl or heterocyclyl may be optionally substituted with 0-3 R10a, and the heterocyclyl contains 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)CF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14 or aryloxy;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is CH;
Y is CH2;
Z1 is CH2;
T is
R1 is alkyl, cycloalkyl, aryl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=o)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, -OC(=O)NR9R9, or aryloxy, wherein the alkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl and aryloxy may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, or aryloxy;
R3, at each occurrence, is alkyl;
R4 is OH;
R5 is hydrogen or halo;
R5a is chloro;
R5b is hydrogen or halo;
R6, at each occurrence, is independently alkyl, cycloalkyl, aryl or heteroaryl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, heteroaryl or heterocyclyl, wherein the aryl, heteroaryl or heterocyclyl may be optionally substituted with 0-5 R9a, and the heteroaryl or heterocyclyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, or aryloxy;
R10, at each occurrence, is independently selected from alkyl, aryl or heterocyclyl, wherein the aryl or heterocyclyl may be optionally substituted with 0-3 R10a, and the heterocyclyl contains 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14 or aryloxy;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is CH;
Y is CH2;
Z1 is CH2;
T is
R1 is alkyl, aryl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(0)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, or -OC(=0)NR9R9, wherein the alkyl, aryl, cycloalkyl, heteroaryl and heterocyclyl may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, or -NR9S(O2)R6;
R3, at each occurrence, is alkyl;
R4 is OH;
R5 is hydrogen or halo;
R5a is chloro;
R5b is hydrogen or halo;
R6, at each occurrence, is independently alkyl, cycloalkyl, aryl or heteroaryl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, heteroaryl or heterocyclyl, wherein the aryl, heteroaryl or heterocyclyl may be optionally substituted with 0-5 R9a, and the heteroaryl or heterocyclyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)R14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, or -OC(=O)NR14R14;
R10, at each occurrence, is independently selected from alkyl, aryl or heterocyclyl, wherein the aryl or heterocyclyl may be optionally substituted with 0-3 R10a, and the heterocyclyl contains 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)r-CF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14 -S(=O)(CR8R8)rR14, -S(OHCR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, or -OC(=O)NR14R14;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0 or 2; and
r is 0-2.
Z is O;
W is
X is CH;
Y is CH2;
Z is CH2;
T is
R1 is alkyl or phenyl, both of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -NH2, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2),CF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR8, -NR9S(O2)R8 or aryloxy, wherein the alkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl or aryloxy may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -NH2, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)r,CF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8),R10, -OC(=O)(CR8R8)rR10, -C(=NR14-NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8),R10, -NR9C(=O)OR8, -NR9S(O2)R8, or aryloxy;
R3 is methyl;
R4 is OH;
R5 is hydrogen or halo;
R5a is chloro;
R5b is hydrogen or halo;
R6, at each occurrence, is independently alkyl, cycloalkyl, aryl or heteroaryl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, heteroaryl or heterocyclyl, wherein the aryl, heteroaryl or heterocyclyl may be optionally substituted with 0-5 R9a, and the heteroaryl or heterocyclyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -NH2, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8),R14, -C(=NR14)NR14R14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR8, -NR14S(O2)R8, or aryloxy;
R10, at each occurrence, is independently selected from alkyl, aryl or heterocyclyl, wherein the aryl or heterocyclyl may be optionally substituted with 0-3 R10a, and the heterocyclyl contains 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -NH2, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14. -C(=NR14)NR14R14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR8, -NR14S(O2)Rs or aryloxy;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 2; and
r is 0-2.
DEFINITIONS
SYNTHESIS
EXAMPLES
EXAMPLE 1
tert-Butyl (1R,2S)-2-((S)-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamate
Step 1: (1S,2R)-Ethyl 2-((R)-1-phenylethylamino)cyclohexanecarboxylate
Step 2: (1S,2R)-Ethyl 2-((R)-2-phenylethylamino)cyclohexanecarboxylate, p-TsOH salt
Step 3: (1S,2R)-Ethyl 2-aminocyclohexanecarboxylate, p-TsOH salt
Step 4: (1S,2R)-2-Aminocyclohexanecarboxylic acid, HCl salt
Step 5: (1S,2R)-2-(tert-Butoxycarbonylamino)cyclohexanecarboxylic acid
Step 6: Example 1
EXAMPLE 2
N-((1R,2S)-2-((S)-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexyl)benzamide
Step 1: ((1S,2R)-2-Aminocyclohexyl)((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidin-1-yl)methanone, HCl salt
Step 2: Example 2
EXAMPLE 3
Methyl 3-((1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamoyl)benzoate
EXAMPLE 4
3-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamoyl)benzoic acid
EXAMPLE 5
Phenyl (1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamate
EXAMPLE 6
1-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexyl)-3-(2-hydroxy-2-methylpropyl)urea
EXAMPLE 7
tert-Butyl (1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclopentylcarbamate
Step 1: (1S,2R)-2-(tert-Butoxycarbonylamino)cyclopentanecarboxylic acid
Step 2: Example 7
EXAMPLE 8
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclopentyl)benzamide
Step 1: ((1S,2R)-2-Aminocyclopentyl)((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidin-1-yl)methanone
Step 2: Example 8
EXAMPLE 9
1-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclopentyl)-3-phenylurea
EXAMPLE 10
N-((7S,8R)-7-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)-1,4-dioxaspiro[4.5]decan-8-yl)benzamide
Step 1: (7S,8R)-Ethyl 8-((R)-1-phenylethylamino)-1,4-dioxaspiro[4.5]decane-7-carboxylate
Step 2: (7S,8R)-Ethyl 8-((R)-1-phenylethylamino)-1,4-dioxaspiro[4.5]decane-7-carboxylate, p-TsOH salt
Step 3: (7S,8R)-Ethyl 8-amino-1,4-dioxaspiro[4.5]decane-7-carboxylate, p-toluenesulfonic acid salt
Step 4: (7S,8R)-Ethyl 8-benzamido-1,4-dioxaspiro[4,5]decane-7-carboxylate
Step 5: (7S,8R)-8-Benzamido-1,4-dioxaspiro[4.5]decane-7-carboxylic acid
Step 6: Example 10
EXAMPLE 11
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)-4-oxocyclohexyl)benzamide
Step 1: (1S,2R)-2-Benzamido-5-oxocyclohexanecarboxylic acid
Step 2: Example 11
EXAMPLE 12
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)-4-(methylamino)cydohexyl)benzamide, TFA salt
EXAMPLE 13
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)4-hydroxycyclohexyl)benzamide
EXAMPLE 14
Methyl 5-((1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamoyl)biphenyl-3-carboxylate
Step 1: Preparation of 3-amino-5-(methoxycarbonyl)benzoic acid
Step 2: Preparation of 3-bromo-5-(methoxycarbonyl)benzoic acid
Step 3: Preparation of 5-(methoxycarbonyl)biphenyl-3-carboxylic acid
Step 4: Example 14
EXAMPLE 15
Preparation of 5-((1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamoyl)biphenyl-3-carboxylic acid
EXAMPLE 16
Preparation of methyl 3'-((1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamoyl)biphenyl-3-carboxylate
Step 1: Preparation of 3'-(methoxycarbonyl)biphenyl-3-carboxylic acid
Step 2: Example 16
EXAMPLE 17
Preparation of 3'-((1R,2S)-2-((S)-4-(4-chlorophenyl)4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamoyl)biphenyl-3-carboxylic acid
EXAMPLE 18
Mixture of N-((3R,4R)-3-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)tetrahydro-2H-pyran-4-yl)benzamide and N-((3S,4S)-3-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)tetrahydro-2H-pyran-4-yl)benzamide
Step 1: Preparation of a mixture of (3R,4R)-methyl 4-benzamidotetrahydro-2H-pyran-3-carboxylate and (3S,4S)-methyl 4-benzamidotetrahydro-2H-pyran-3-carboxylate
Step 2: Preparation of (3S,4S)- and (3R,4R)-4-benzamidotetrahydro-2H-pyran-3-carboxylic acid
Step 3: Example 18
EXAMPLE 19
Benzyl (1R,2S)-2-((S)-4-(4-ehtorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexylcarbamate
EXAMPLE 20
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexyl)propionamide
EXAMPLE 21
3-(2-(Benzyloxymethyl)-2H-tetrazol-5-yl)-N-((1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexyl)benzamide
Step 1: 2-(Benzyloxymethyl)-2H-tetrazole
Step 2: 2-(Benzyloxymethyl)-5-(tributylstannyl)-2H-tetrazole
Step 3: 3-(2-(Benzyloxymethyl)-2H-tetrazol-5-yl)benzoate
Step 4: 3-(2-(Benzyloxymethyl)-2H-tetrazol-5-yl)benzoic acid
Step 5: Example 21
EXAMPLE 22
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexyl)-3-(2H-tetraxol-5-yl)benzamide
EXAMPLE 23
3-(2-(Benzyloxymethyl)-2H-tetrazol-5-yl)-N-((1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydrony-3,3-dimethylpiperidine-1-carbonyl)cyclopentyl)benzamide
EXAMPLE 24
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclopentyl)-3-(2H-tetrazol-5-yl)benzamide
EXAMPLE 25
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexyl)-3-(hydroxymethyl)benzamide
Step 1: Methyl 3-(hydroxymethyl)benzoate
Step 2: 3-(Hydroxymethyl)benzoic acid
Step 3: Example 25
EXAMPLE 26
N-((1R,2S)-2-((S)-4-(4-Chtorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclopentyl)-3-(hydroxymethyl)benzamide
EXAMPLE 27
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclohexyl)-cis-3,4-dihydroxycyclopentanecarboxamide
Step 1: 2-Phenylpropan-2-yl 2,2,2-trichloroacetimidate
Step 2: 2-Phenylpropan-2-yl cyclopent-3-enecarboxylate
Step 3: 2-Phenylpropan-2-yl cis-3,4-dihydroxycyclopentanecarboxylate
Step 4: cis-3,4-Dihydroxycyclopentanecarboxylic acid
Step 5: Example 27
EXAMPLE 28
((S)-4-(4-Chtorophenyl)-4-hydroxy-3,3-dimethylpiperidin-l-yt)((1S,2R)-2-(m-tolylamino)cyclohexyl)methanone
EXAMPLE 29
((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidin-1-yl)((1S,2R)-2-(m-tolylamino)cyclopentyl)methanone
EXAMPLE 30
((1 S,2R)-2-(Benzo[d]oxazol-2-ylamino)cyclopentyl)((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidin-1-yl)methanone
EXAMPLES 31 TO 95
| Example | Structure | Mass Spec (M+H)+ |
| 31 |
|
548 |
| 32 |
|
527 |
| 33 |
|
527 |
| 34 |
|
513 |
| 35 |
|
484 |
| 36 |
|
519 |
| 37 |
|
498 |
| 38 |
|
450 |
| 39 |
|
436 |
| 40 |
|
465 |
| 41 |
|
423 |
| 42 |
|
512 |
| 43 |
|
526 |
| 44 |
|
503 |
| 45 |
|
503 |
| 46 |
|
464 |
| 47 |
|
470 |
| 48 |
|
407 |
| 49 |
|
435 |
| 50 |
|
483 |
| S1 |
|
511 |
| 52 |
|
449 |
| 53 |
|
450 |
| 54 |
|
514 |
| 55 |
|
477 |
| 56 |
|
471 |
| 57 |
|
471 |
| 58 |
|
504 |
| 59 |
|
485 |
| 60 |
|
497 |
| 61 |
|
423 |
| 62 |
|
598 |
| 63 |
|
505 |
| 64 |
|
505 |
| 65 |
|
500 |
| 66 |
|
520 |
| 67 |
|
499 |
| 68 |
|
499 |
| 69 |
|
484 |
| 70 |
|
477 |
| 71 |
|
477 |
| 72 |
|
545 |
| 73 |
|
531 |
| 74 |
|
513 |
| 75 |
|
513 |
| 76 |
|
466 |
| 77 |
|
466 |
| 78 |
|
451 |
| 79 |
|
513 |
| 80 |
|
534 |
| 81 |
|
463 |
| 82 |
|
463 |
| 83 |
|
463 |
| 84 |
|
463 |
| 85 |
|
499 |
| 86 |
|
447 |
| 87 |
|
462 |
| 88 |
|
456 |
| 89 |
|
498 |
| 90 |
|
459 |
| 91 |
|
483 |
| 92 |
|
436 |
| 93 |
|
512 |
| 94 |
|
471 |
| 95 |
|
466 |
EXAMPLE 96
N-((cis)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylptperidine-1-carbonyl)cyclobutyl)benzamide, isomer 2
Step 1: (±)-(cis)-2-(tert-Butoxycarbonylamino)cyclobutanecarboxylic acid
Step 2: tert-Butyl (±)-(cis)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclobutylcarbamate
Step 3: ((±)-(cis)-2-Aminocyclobutyl)((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidin-1-yl)methanone hydrochloride
Step 4: N-((cis)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclobutyl)benzamide, isomer 2
EXAMPLE 97
N-((cis)-2-((S)-4-(4-Chtorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclobutyl)-3-sulfamoylbenzamide, isomer 2
EXAMPLE 98
N-((±)-(cis)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclobutyl)cyclopentanecarboxamide
EXAMPLE 99
(1R,3R)-N-((±)-(cis)-2-((S)-4-(4-Chlorophenyt)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclobutyl)-3-hydroxycyclopentanecarboxamide
EXAMPLE 100
3-((1R,2S)-2-((S)-4-(4-Cyanophenyt)-4-hydroxy-3,3-dimethytpiperidine-1-carbonyl)cyclohexylcarbamoyl)benzoic acid
EXAMPLE 101
| Example | Structure | Mass Spec (M+H)+ |
| 101 |
|
460 |
EXAMPLES 102 AND 103
N-((1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)-1-methylcyclopentyl)benzamide and N-((1S,2R)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)-1-methylcyclopentyl)benzamide
Step 1: tert-Butyl (1R,2S)-2-((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)-1-methylcyclopentylcarbamate and tert-Butyl (1S,2R)-2-((S)-4-(4-chtorophenyl)-4-hydroxy-3,3-dimethytpiperidine-1-carbonyl)-1-methylcyclopentylcarbamate, respectively
Step 2A: ((1R,2S)-2-Amino-2-methylcyclopentyl)((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidin-1-yl)methanone, HCl
Step 2B: ((1S,2R)-2-Amino-2-methylcyclopentyl)((S)-4-(4-chlorophenyl)-4-hydroxy-3,3-dimethylpiperidin-1-yl)methanone, HCl
Step 3A: Example 102
Step 3B: Example 103
EXAMPLE 104
| Example | Structure | Mass Spec (M+H)+ |
| 104 |
|
483 |
EXAMPLE 105
1-((1R,2S)-2-((S)-4-(4-Chtorophenyl)-4-hydroxy-3,3-d)methytpiperidine-1-carbonyl)cyclopentyl)-3-((S)-3-hydroxy-3-methylbutan-2-yl)urea
Step 1: (S)-tert-Butyl 3-hydroxy-3-methylbutan-2-ylcarbamate
Step 2: (S)-3-Amino-2-methylbutan-2-ol • HCl
Step 3: Phenyl (1R,2S)-2-((S)-4-(4-Chlorophenyl)-4-hydroxy-3,3-dimethylpiperidine-1-carbonyl)cyclopentylcarbamate
Step 4: Example 105
EXAMPLE 106
| Example | Structure | Mass Spec (M+H)+ |
| 106 |
|
494 |
UTILITY
CCR1 ligand binding scintillation proximity assay (SPA)
| Example | CCR1 IC50 (nM) | Replicates* |
| 2 | 2.1 | 2 |
| 7 | 12.1 | 1 |
| 9 | 11.5 | 1 |
| 10 | 1065 | 1 |
| 11 | 17.2 | 1 |
| 35 | 18.5 | 1 |
| 41 | 996.7 | 2 |
| 57 | 18.7 | 1 |
| 58 | 931.8 | 1 |
| 60 | 15.7 | 1 |
| 61 | 767.5 | 1 |
| 67 | 857.8 | 1 |
| 68 | 580.6 | 1 |
| 76 | 14.6 | 1 |
| 80 | 1.0 | 1 |
| 83 | 14.0 | 1 |
| 84 | 1.5 | 1 |
| 85 | 1.6 | 1 |
| 86 | 1.3 | 1 |
| 89 | 1.8 | 1 |
| 100 | 11.3 | 1 |
| 104 | 818 | 1 |
| 106 | 0.7 | 1 |
| *number of individual assay determinations |
DOSAGE AND FORMULATION
Capsules
Soft Gelatin Capsules
Tablets
Injectable
Suspension
Q is CH or N;
Z is O or S;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O), S(O)2, N(R8), C(=O) or
Z1 is CH(R7), CH2, O, S, N(R8), S(O) or S(O)2;
T is a bond,
or
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally
substituted with 0-5 R1a; provided that R1 is not unsubstituted phenyl when T is
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8),R10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8),R10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8),R10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8),R10, -S(O)2(CR8R8),R10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8),R10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8),R10, -NR9C(=O)H, -NR9C(=O)(CR8R8),R10, -OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8),R10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, CN or -NH2;
R5 is hydrogen, halo, -CN or -Oalkyl;
R5a is hydrogen, halo, -CN or alkynyl;
R5b is hydrogen, halo, -CN or -Oalkyl;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2),CF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -OC(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -OC(=O)(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -OC(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14,-S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14,-NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -C(=NR14)NR14R14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -C(=NR14)NR14R14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2;
r is 0-5;
provided that: R5, R5a and R5b are not all H when T is a bond and R4 is H or OH;
wherein
"alkyl" by itself or as part of another group refers both branched and straight-chain saturated aliphatic hydrocarbon groups containing 1 to 20 carbons in the normal chain which may optionally include 1 to 4 substituents selected from F, Br, Cl, or I, CF3, alkyl, alkoxy, aryl, aryloxy, aryl, diaryl, arylalkyl, arylalkyloxy, alkenyl, cycloalkyl, cycloalkylalkyl, cycloalkylalkyloxy, amino, hydroxy, hydroxyalkyl, acyl, heteroaryl, heteroaryloxy, heteroarylalkyl, heteroarylalkoxy, aryloxyalkyl, alkylthio, arylalkylthio, aryloxyaryl, alkylamido, alkanoylamino, arylcarbonylamino, nitro, cyano, thiol, haloalkyl, trihaloalkyl, and/or alkylthio;
"alkenyl" by itself or as part of another group refers to straight or branched chain radicals of 2 to 20 carbons, which include one to six double bonds in the normal chain which may be optionally substituted with 1 to 4 substituents selected from halogen, haloalkyl, alkyl, alkoxy, alkenyl, alkynyl, aryl, arylalkyl, cycloalkyl, amino, hydroxy, heteroaryl, cycloheteroalkyl, alkanoylamino, alkylamido, arylcarbonyl-amino, nitro, cyano, thiol, alkylthio, and/or any of the alkyl substituents set out above;
"alkynyl" by itself or as part of another group refers to straight or branched chain radicals of 2 to 20 carbons in the normal chain, which include one triple bond in the normal chain and which may be optionally substituted with 1 to 4 substituents,
selected from halogen, haloalkyl, alkyl, alkoxy, alkenyl, alkynyl, aryl, arylalkyl, cycloalkyl, amino, heteroaryl, cycloheteroalkyl, hydroxy, alkanoylamino, alkylamido, arylcarbonylamino, nitro, cyano, thiol, and/or alkylthio, and/or any of the alkyl substituents set out above;
"cycloalkyl" alone or as part of another group includes saturated or partially unsaturated (containing 1 or 2 double bonds) cyclic hydrocarbon groups containing 1 to 3 rings and a total of 3 to 20 carbons forming the ring and which may be fused to 1 or 2 aromatic rings as described for aryl and may be optionally substituted with 1 to 4 substituents selected from halogen, alkyl, alkoxy, hydroxy, aryl, aryloxy, arylalkyl, cycloalkyl, alkylamido, alkanoylamino, oxo, acyl, arylcarbonylamino, amino, nitro, cyano, thiol, and/or alkylthio, and/or any of the substituents for alkyl;
"aryl" alone or as part of another group refers to monocyclic and bicyclic aromatic groups containing 6 to 10 carbons in the ring portion and may optionally include 1 to 3 additional rings fused to a carbocyclic ring or a heterocyclic ring;
and may be optionally substituted through available carbon atoms with 1, 2, or 3 substituents selected from halo, haloalkyl, alkyl, haloalkyl, alkoxy, haloalkoxy, alkenyl, trifluoromethyl, trifluoromethoxy, alkynyl, cycloalkyl-alkyl, cycloheteroalkyl, cycloheteroalkylalkyl, aryl, heteroaryl, arylalkyl, aryloxy, aryloxyalkyl, arylalkoxy, arylthio, arylazo, heteroarylalkyl, heteroarylalkenyl, heteroarylheteroaryl, heteroaryloxy, hydroxy, nitro, cyano, amino, substituted amino wherein the amino includes 1 or 2 substituents (which are alkyl, aryl, or any of the other aryl compounds mentioned in the definitions), thiol, alkylthio, arylthio, heteroarylthio, arylthioalkyl, alkoxyarylthio, alkylcarbonyl, arylcarbonyl, alkyl-aminocarbonyl, arylaminocarbonyl, alkoxycarbonyl, aminocarbonyl, alkylcarbonyloxy, arylcarbonyloxy, alkylcarbonylamino, arylcarbonylamino, arylsulfinyl, arylsulfinylalkyl, arylsulfonylamino, or arylsulfonaminocarbonyl, and/or any of the alkyl substituents set out above;
"heterocyclyl" or "heterocyclic system" means a stable 5, 6, or 7-membered monocyclic or bicyclic or 7, 8, 9, or 10-membered bicyclic heterocyclic ring which is saturated, partially unsaturated or unsaturated (aromatic), and which consists of carbon atoms and 1, 2, 3, or 4 heteroatoms independently selected from the group consisting of N, NH, O and S and including any bicyclic group in which any of the above-defined heterocyclic rings is fused to a benzene ring; and"aromatic heterocyclic system" or "heteroaryl" means a stable 5- to 7-membered monocyclic or bicyclic or 7-to 10-membered bicyclic heterocyclic aromatic ring which consists of carbon atoms and from 1 to 4 heteroatoms independently selected from the group consisting of N, O and S and is aromatic in nature.
Z is O or S;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O), S(O)2, N(R8), C(=O) or
Z1 is CH(R7), CH2, O, S, N(R8), S(O) or S(O)2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally
substituted with 0-5 R1a; provided that R1 is not unsubstituted phenyl when T is
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, CN or -NH2;
R5 is hydrogen, halo or -CN;
R5a is halo, -CN or alkynyl;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylatkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2),CF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-4.
Z is O or S ;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O)2, N(R8), C(=O) or
Z1 is CH(R7), CH2, O, S, N(R8) or S(O)2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, CN or NH2;
R5 is hydrogen, halo or -CN;
R5a is halo, -CN or alkynyl;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylallcyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R16, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(C8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3. -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-3.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O)2, N(R8) or C(=O);
Z1 is CH(R7), CH2, O, S or N(R8);
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)R10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, or -NH2;
R5 is hydrogen, halo or -CN;
R5a is halo, -CN or alkynyl;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10 -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)R14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)R14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)R14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or
phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S, S(O)2, N(R8), or C(=O);
Z1 is CH(R7), CH2, O or N(R8);
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is hydrogen, F, OH, or -NH2;
R5 is hydrogen, halo or -CN;
R5a is halo or -CN;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(-O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)O6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10) -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2CF3. -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2, O, S or S(O)2;
Z1 is CH(R7), CH2 or O;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9P9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b; or any two R1a's attached to the same carbon atom may form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rOCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is F, OH, or -NH2;
R5 is hydrogen, halo or -CN;
R5a is halo or -CN;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)R6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S; or any two R9's may be taken to form a 3- to 6-membered ring, wherein the carbon atoms of said ring may be optionally replaced with a heteroatom selected from N, O, and S and the N heteroatom of said ring may be optionally substituted with one or more of the following: hydrogen, alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(-O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 or arylalkyl;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, "NR14C(-O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR4R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2, O or S;
Z1 is CH(R7) or CH2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2N, -S(O)2NR9C(-O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3. -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is independently OH or alkyl; or two R3's together with the carbon atom to which they are attached may form a 3- to 6-membered ring;
R4 is F or OH;
R5 is hydrogen, halo or -CN;
R5a is halo or -CN;
R5b is hydrogen, halo or -CN;
R6, at each occurrence, is independently alkyl, cycloalkyl, cycloalkylalkyl, aryl, arylalkyl, heteroaryl or heteroarylalkyl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-5 R9a, and the heteroaryl, heteroarylalkyl, heterocyclyl or heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, alkenyl, alkynyl, aryl, arylalkyl, heterocyclyl or heterocyclylalkyl, wherein the aryl, arylalkyl, heterocyclyl or heterocyclylalkyl may be optionally substituted with 0-3 R10a, and the heterocyclyl and heterocyclylalkyl contain 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, alkenyl, alkynyl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(-O)NR4S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or
phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a), CH2 or O;
Z1 is CH(R7) or CH2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R3, at each occurrence, is alkyl;
R4 is OH;
R5 is hydrogen or halo;
R5a is halo or -CN;
R5b is hydrogen or halo;
R6, at each occurrence, is independently alkyl, cycloalkyl, aryl or heteroaryl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2N, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, aryloxy or arylalkyl, wherein the alkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, aryloxy and arylalkyl may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2N, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, aryloxy, arylalkyl or arylalkyloxyalkyl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, heteroaryl or heterocyclyl, wherein the aryl, heteroaryl or heterocyclyl may be optionally substituted with 0-5 R9a, and the heteroaryl or heterocyclyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, - O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R10, at each occurrence, is independently selected from alkyl, aryl or heterocyclyl, wherein the aryl or heterocyclyl may be optionally substituted with 0-3 R10a, and the heterocyclyl contains 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heteroarylalkyl, heterocyclyl heterocyclylalkyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, - O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, .S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, aryloxy or arylalkyl;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is C(R8);
Y is CH(R1a) or CH2;
Z1 is CH(R7) or CH2;
T is
R1 is alkyl, cycloalkyl, aryl, heterocyclyl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2N, -S(O)2NR9C(-O)ORS6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6 -NR9S(O2)R6, =O, -OC(=O)NR9R9, or aryloxy, wherein the alkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl and aryloxy may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10. -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(-O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, or aryloxy;
R3, at each occurrence, is alkyl;
R4 is OH;
R5 is hydrogen or halo;
R5a is halo;
R5b is hydrogen or halo;
R6, at each occurrence, is independently alkyl, cycloalkyl, aryl or heteroaryl;
R7, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(-O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9 or aryloxy, wherein the alkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl and aryloxy may be optionally substituted with 0-3 R7b;
R7b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6 or aryloxy;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, heteroaryl or heterocyclyl, wherein the aryl, heteroaryl or heterocyclyl may be optionally substituted with 0-5 R9a, and the heteroaryl or heterocyclyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, or aryloxy;
R10, at each occurrence, is independently selected from alkyl, aryl or heterocyclyl, wherein the aryl or heterocyclyl may be optionally substituted with 0-3 R10a, and the heterocyclyl contains 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14 or aryloxy;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Z is O;
W is
X is CH;
Y is CH2;
Z1 is CH2;
T is
R1 is alkyl, cycloalkyl, aryl or heteroaryl, all of which may be optionally substituted with 0-5 R1a;
R1a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, -OC(=O)NR9R9, or aryloxy, wherein the alkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl and aryloxy may be optionally substituted with 0-3 R1b;
R1b, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR)10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(C8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, or aryloxy;
R3, at each occurrence, is alkyl;
R4 is OH;
R5 is hydrogen or halo;
R5a is chloro;
R5b is hydrogen or halo;
R6, at each occurrence, is independently alkyl, cycloalkyl, aryl or heteroaryl;
R8, at each occurrence, is independently hydrogen or alkyl;
R9, at each occurrence, is independently hydrogen, alkyl, cycloalkyl, aryl, heteroaryl or heterocyclyl, wherein the aryl, heteroaryl or heterocyclyl may be optionally substituted with 0-5 R9a, and the heteroaryl or heterocyclyl contain 1-4 heteroatoms selected from N, O, and S;
R9a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, or aryloxy;
R10, at each occurrence, is independently selected from alkyl, aryl or heterocyclyl, wherein the aryl or heterocyclyl may be optionally substituted with 0-3 R10a, and the heterocyclyl contains 1-4 heteroatoms selected from N, O, and S;
R10a, at each occurrence, is independently selected from alkyl, haloalkyl, aryl, cycloalkyl, heteroaryl, heterocyclyl, halo, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14 or aryloxy;
R14, at each occurrence, is independently selected from hydrogen, alkyl, cycloalkyl or phenyl;
m is 0-2; and
r is 0-2.
Q CH oder N ist;
Z O oder S ist;
W
ist.
X C(R8) ist;
Y CH(R1a), CH2, O, S, S(O), S(O)2, N(R8), C(=O) oder
ist;
Z1 CH(R7), CH2, O, S, N(R8), S(O) oder S(O)2 ist;
T eine Bindung,
oder
ist;
R1 ein Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise
mit 0-5 R1a substituiert sein können, vorausgesetzt, dass R1 kein nichtsubstituiertes Phenyl ist, wenn T
ist;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S (CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O) NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)r R10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14) NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy oder Arylalkyl wahlweise mit 0-3 R1b substituiert sein können; oder wobei irgend zwei R1a, die an das gleiche Kohlenstoffatom gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise durch ein Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und wobei das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(C R8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)N R9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)N R14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R3 bei jedem Auftreten unabhängig voneinander OH oder Alkyl ist; oder zwei R3 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können;
R4 Wasserstoff, F, OH, CN oder -NH2 ist;
R5 Wasserstoff, Halogen. -CN oder -O-Alkyl ist;
R5a Wasserstoff, Halogen, -CN oder Alkinyl ist;
R5b Wasserstoff, Halogen, -CN oder -O-Alkyl ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Cycloalkylalkyl, Aryl, Arylalkyl, Heteroaryl oder Heteroarylalkyl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S (O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)N R9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14) NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl ist, wobei das Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind; oder wobei irgend zwei R9 zusammen einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise mit einem Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O) NR14S(O)2R6, -S(O)2NR14C(=O)OR6,-S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O) (CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -C(=NR14)NR14R14, -NHC (=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, - NR14S(O2)R6, -OC(=O) NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Alkenyl, Alkinyl, Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl ausgewählt ist, wobei das Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl und Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind.
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(C R8R8)rR14, -S(O)3H, -P(O)3H2, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)N R14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O) (CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - C(=NR14)NR14R14, -NHC (=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, - NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O) NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist;
r gleich 0-5 ist;
vorausgesetzt, dass: R5, R5a und R5b nicht alle H sind, wenn T eine Bindung ist und R4 H oder OH ist;
wobei
"Alkyl" allein oder als Teil einer anderen Gruppe sich sowohl auf verzweigt- als auch auf geradkettige gesättigte aliphatische Kohlenwasserstoffgruppen bezieht, die 1 bis 20 Kohlenstoffatome in der normalen Kette enthalten, die wahlweise 1 bis 4 Substituenten enthalten kann, die unter F, Br, Cl oder I, CF3, Alkyl, Alkoxy, Aryl, Aryloxy, Diaryl, Arylalkyl, Arylalkyloxy, Alkenyl, Cycloalkyl, Cycloalkylalkyl, Cycloalkylalkyloxy, Amino, Hydroxy, Hydroxyalkyl, Acyl, Heteroaryl, Heteroaryloxy, Heteroarylalkyl, Heteroarylalkoxy, Aryloxyalkyl, Alkylthio, Arylalkylthio, Aryloxyaryl, Alkylamido, Alkanoylamino, Arylcarbonylamino, Nitro, Cyano, Thiol, Halogenalkyl, Trihalogenalkyl und/oder Alkylthio ausgewählt sind;
"Alkenyl" allein oder als Teil einer anderen Gruppe sich auf gerad- oder verzweigtkettige Radikale von 2 bis 20 Kohlenstoffatomen bezieht, die eine bis sechs Doppelbindungen in der normalen Kette enthalten, die wahlweise mit 1 bis 4 Substituenten substituiert sein kann, die unter Halogen, Halogenalkyl, Alkyl, Alkoxy, Alkenyl, Alkinyl, Aryl, Arylalkyl, Cycloalkyl, Amino, Hydroxy, Heteroaryl, Cycloheteroaryl, Alkanoylamino, Alkylamido, Arylcarbonylamino, Nitro, Cyano, Thiol, Alkylthio und/oder einem der oben dargelegten Alkylsubstituenten ausgewählt sind;
"Alkinyl" allein oder als Teil einer anderen Gruppe sich auf gerad- oder verzweigtkettige Radikale von 2 bis 20 Kohlenstoffatomen in der normalen Kette bezieht, die eine Dreifachbindung in der normalen Kette enthalten und wahlweise mit 1 bis 4 Substituenten substituiert sein können, die unter Halogen, Halogenalkyl, Alkyl, Alkoxy, Alkenyl, Alkinyl, Aryl, Arylalkyl, Cycloalkyl, Amino, Heteroaryl, Cycloheteroaryl, Hydroxy, Alkanoylamino, Alkylamido, Arylcarbonylamino, Nitro, Cyano, Thiol und/oder Alkylthio und/oder einem der oben dargelegten Alkylsubstituenten ausgewählt sind;
"Cycloalkyl" allein oder als Teil einer anderen Gruppe gesättigte oder teilweise ungesättigte (1 oder 2 Doppelbindungen enthaltende) cyclische Kohlenwasserstoffgruppen einschließt, die 1 bis 3 Ringe und insgesamt 3 bis 20 Kohlenstoffatome enthalten, die den Ring bilden, und die zu 1 oder 2 aromatischen Ringen kondensiert werden können, wie für Aryl beschrieben, und die wahlweise mit 1 bis 4 Substituenten substituiert sein können, die unter Halogen, Alkyl, Alkoxy, Hydroxy, Aryl, Aryloxy, Arylalkyl, Cycloalkyl, Alkylamido, Alkanoylamino, Oxy, Acyl, Arylcarbonylamino, Amino, Nitro, Cyano, Thiol und/oder Alkylthio und/oder einem der Alkylsubstituenten ausgewählt sind;
"Aryl" allein oder als Teil einer anderen Gruppe sich auf monocyclische und bicyclische aromatische Gruppen bezieht, die 6 bis 10 Kohlenstoffatome im Ringabschnitt enthalten und wahlweise 1 bis 3 zusätzliche Ringe enthalten können, die an einen carbocyclischen Ring oder einen heterocyclischen Ring ankondensiert sind; und die wahlweise über verfügbare Kohlenstoffatome mit 1, 2 oder 3 Substituenten substituiert sein können, die unter Halogen, Halogenalkyl, Alkyl, Halogenalkyl, Alkoxy, Halogenalkoxy, Alkenyl, Trifluormethyl, Trifluormethoxy, Alkinyl, Cycloalkylalkyl, Cycloheteroalkyl, Cycloheteroalkylalkyl, Aryl, Heteroaryl, Arylalkyl, Aryloxy, Aryloxyalkyl, Arylalkoxy, Arylthio, Arylazo, Heteroarylalkyl, Heteroarylalkenyl, Heteroarylheteroaryl, Heteroaryloxy, Hydroxy, Nitro, Cyano, Amino, substituiertem Amino, wobei die Aminogruppe 1 oder 2 Substituenten enthält (die Alkyl, Aryl oder eine der anderen, in den Definitionen erwähnten Arylverbindungen sind), Thiol, Alkylthio, Arylthio, Heteroarylthio Arylthioalkyl, Alkoxyarylthio, Alkylcarbonyl, Arylcarbonyl, Alkylaminocarbonyl, Arylaminocarbonyl, Alkoxycarbonyl, Aminocarbonyl, Alkylcarbonyloxy, Arylcarbonyloxy, Alkylcarbonylamino, Arylcarbonylamino, Arylsulfinyl, Arylsulfinylalkyl, Arylsulfonylamino oder Arylsulfonylaminocarbonyl und/oder einem der oben dargelegten Alkylsubstituenten ausgewählt sind;
"Heterocyclyl" oder "heterocyclisches System" einen stabilen 5-, 6- oder 7-gliedrigen monocyclischen oder bicyclischen oder 7-, 8-, 9- oder 10-gliedrigen bicyclischen heterocyclischen Ring bedeutet, der gesättigt, teilweise ungesättigt oder ungesättigt (aromatisch) ist und aus Kohlenstoffatomen und 1, 2, 3 oder 4 Heteroatomen besteht, die unabhängig voneinander ausgewählt sind aus N, NH, O und S, und jede bicyclische Gruppe einschließt, in der einer der oben erwähnten heterocyclischen Ringe an einen Benzolring ankondensiert ist; und "aromatisches heterocyclisches System" oder "Heteroaryl" einen stabilen 5- bis 7-gliedrigen monocyclischen oder bicyclischen oder 7-bis 10-gliedrigen bicyclischen heterocyclischen aromatischen Ring bedeutet, der aus Kohlenstoffatomen und 1-4 Heteroatomen besteht, die unabhängig voneinander ausgewählt sind aus N, O und S, und der aromatischer Natur ist.
Z O oder S ist;
W
ist;
X C(R8) ist;
Y CH(R1a), CH2, O, S, S(O), S(O)2, N(R8), C(=O) oder
ist;
Z1 CH(R7), CH2, O, S, N(R8), S(O) oder S(O)2 ist;
T
ist;
R1 Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise mit
0-5 R1a substituiert sein können; vorausgesetzt, dass R1 kein nichtsubstituiertes Phenyl ist, wenn T
ist;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S (O)2N, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -N R9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy oder Arylalkyl wahlweise mit 0-3 R1b substituiert sein können, oder wobei irgend zwei R1a, die an das gleiche Kohlenstoffatom gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise durch ein Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und wobei das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)N R9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)r R10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8 R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R3 bei jedem Auftreten unabhängig voneinander OH oder Alkyl ist; oder zwei R3 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können;
R4 Wasserstoff, F, OH, CN oder -NH2 ist;
R5 Wasserstoff, Halogen oder -CN ist;
R5a Halogen, -CN oder Alkinyl ist;
R5b Wasserstoff, Halogen oder -CN ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Cycloalkylalkyl, Aryl, Arylalkyl, Heteroaryl oder Heteroarylalkyl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2 NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 -NR9C(=O)H, - N R9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9 C(=O)OR6, -NR9 S(O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O) (CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl ist, wobei das Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind; oder wobei irgend zwei R9 einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise mit einem Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O (CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O) NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O) (CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -NHC(=NR14)NR14R14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O) NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Alkenyl, Alkinyl, Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl ausgewählt ist, wobei das Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl und Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind.
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl; Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -S(O)3H, -P(O)3H2, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O) NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O) (CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -NHC =NR14)NR14R14, -S(=O) (CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, - NR14S(O2)R6, -OC(=O)NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-4 ist.
Z O oder S ist;
W
ist;
X C(R8) ist;
Y CH(R1a), CH2, O, S, S(O)2, N(R8), C(=O) oder
ist;
Z1 CH(R7), CH2, O, S, N(R8) oder S(O)2 ist;
T
ist;
R1 ein Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise mit 0-5 R1a substituiert sein können;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S (O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C (=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R1b substituiert sein können, oder wobei irgend zwei R1a, die an das gleiche Kohlenstoffatom gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise durch ein Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und wobei das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)N R9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8 R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R3 bei jedem Auftreten unabhängig voneinander OH oder Alkyl ist; oder zwei R3 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können;
R4 Wasserstoff, F, OH, CN oder -NH2 ist;
R5 Wasserstoff, Halogen oder -CN ist;
R5a Halogen, -CN oder Alkinyl ist;
R5b Wasserstoff, Halogen oder -CN ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Cycloalkylalkyl, Aryl, Arylalkyl, Heteroaryl oder Heteroarylalkyl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C (=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C (=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S (O2)Rb, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)N R9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)r R10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2 (CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl ist, wobei das Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind; oder wobei irgend zwei R9 einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise mit einem Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O (CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)N R14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O) (CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2 (CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O) NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Alkenyl, Alkinyl, Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl ausgewählt ist, wobei das Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl und Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -S(O)3H, -P(O)3H2, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)N R14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O) (CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2 (CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR4R14, Aryloxy oder Arylalkyl ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-3 ist.
Z O ist;
W
ist;
X C(R8) ist;
Y CR(R1a), CH2, O, S, S(O)2, N(R8) oder C(=O) ist;
Z1 CR(R7), CH2, O, S oder N(R8) ist;
T
ist;
R1 ein Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise mit 0-5 R1a substituiert sein können;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2 NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C (=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R1b substituiert sein können; oder wobei irgend zwei R1a, die an das gleiche Kohlenstoffatom gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise durch ein Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und wobei das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O) NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2N R9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8 R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R3 bei jedem Auftreten unabhängig voneinander OH oder Alkyl ist; oder zwei R3 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können;
R4 Wasserstoff, F, OH oder -NH2 ist;
R5 Wasserstoff, Halogen oder -CN ist;
R5a Halogen, -CN oder Alkinyl ist;
R5b Wasserstoff, Halogen oder -CN ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Cycloalkylalkyl, Aryl, Arylalkyl, Heteroaryl oder Heteroarylalkyl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C (=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C (=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S (O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2 NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl ist, wobei das Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind; oder wobei irgend zwei R9 einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise mit einem Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O (CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -S(O)3H, -C(=O)NR14R14, -NR14R14, - S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O) NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Alkenyl, Alkinyl, Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl ausgewählt ist, wobei das Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl und Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -S(O)3H, -C(=O)NR14R14, - NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14-C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-2 ist.
Z O ist;
W
ist;
X C(R8) ist;
Y CH(R1a), CH2, O, S, S(O)2, N(R8) oder C(=O) ist;
Z1 CH(R7), CH2, O, S oder N(R8) ist;
T
ist;
R1 ein Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise mit 0-5 R1a substituiert sein können;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C (=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C (=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S (O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R1b substituiert sein können; oder wobei irgend zwei R1a, die an das gleiche Kohlenstoffatom gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise durch ein Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und wobei das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - - S(O)2NR14C(=O) NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C (=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C (=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S (O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R3 bei jedem Auftreten unabhängig voneinander OH oder Alkyl ist; oder zwei R3 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können;
R4 Wasserstoff, F, OH oder -NH2 ist;
R5 Wasserstoff, Halogen oder -CN ist;
R5a Halogen oder -CN ist;
R5b Wasserstoff, Halogen oder -CN ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Cycloalkylalkyl, Aryl, Arylalkyl, Heteroaryl oder Heteroarylalkyl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C (=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C (=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S (O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl ist, wobei das Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind; oder wobei irgend zwei R9 einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise mit einem Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O (CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2N R14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Alkenyl, Alkinyl, Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl ausgewählt ist, wobei das Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl und Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -C(=O)NR14R14, -NR14R14, - S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-2 ist.
Z O ist;
W
ist;
X C(R8) ist;
Y CH(R1a), CH2, O, S oder S(O)2 ist;
Z1 CH(R7), CH2 oder O ist;
T
ist;
R1 ein Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise mit 0-5 R1a substituiert sein können;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O) NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2N R9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)CR8R8)rR10, OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O) NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R1b substituiert sein können, oder wobei irgend zwei R1a, die an das gleiche Kohlenstoffatom gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise durch ein Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und wobei das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O) NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O) NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8 R8)rR10 oder Arylalkyl;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O) NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2N R9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R3 bei jedem Auftreten unabhängig voneinander OH oder Alkyl ist; oder zwei R3 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können;
R4 F, OH oder -NH2 ist;
R5 Wasserstoff, Halogen oder -CN ist;
R5a Halogen oder -CN ist;
R5b Wasserstoff, Halogen oder -CN ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Cycloalkylalkyl, Aryl, Arylalkyl, Heteroaryl oder Heteroarylalkyl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O) NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2N R9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC (=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O) NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2N R9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl ist, wobei das Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind; oder wobei irgend zwei R9 einen 3- bis 6-gliedrigen Ring bilden können, wobei die Kohlenstoffatome des Rings wahlweise mit einem Heteroatom substituiert sein können, das unter N, O und S ausgewählt ist, und das N-Heteroatom des Rings wahlweise mit einem oder mehreren der folgenden Substituenten substituiert sein kann: Wasserstoff, Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, -C(=O)O(CR8 R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2N R)4C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 oder Arylalkyl;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, - O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O) NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O) (CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2) R6, -OC(=O)NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Alkenyl, Alkinyl, Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl ausgewählt ist, wobei das Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl und Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, - O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O) NR14R14, -NR14R14, - S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O) (CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2) R6, -OC(=O)NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-2 ist.
Z O ist;
W
ist;
X C(R8) ist;
Y CH(R1a), CH2, O oder S ist;
Z1 CH(R7) oder CH2 ist;
T
ist;
R1 ein Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise mit 0-5 R1a substituiert sein können;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R1b substituiert sein können;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8 R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8 R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R3 bei jedem Auftreten unabhängig voneinander OH oder Alkyl ist; oder zwei R3 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, einen 3- bis 6-gliedrigen Ring bilden können;
R4 F oder OH ist;
R5 Wasserstoff, Halogen oder -CN ist;
R5a Halogen oder -CN ist;
R5b Wasserstoff, Halogen oder -CN ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Cycloalkylalkyl, Aryl, Arylalkyl, Heteroaryl oder Heteroarylalkyl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O) NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2N R9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC (=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O) NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)N R9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2N R9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl ist, wobei das Aryl, Arylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl, Heteroarylalkyl, Heterocyclyl oder Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, - O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O) NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O) (CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2) R6, -OC(=O)NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Alkenyl, Alkinyl, Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl ausgewählt ist, wobei das Aryl, Arylalkyl, Heterocyclyl oder Heterocyclylalkyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl und Heterocyclylalkyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Alkenyl, Alkinyl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, - O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O) NR14R14, -NR14R14, - S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O) (CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2) R6, -OC(=O)NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-2 ist.
Z O ist;
W
ist;
X C(R8) ist;
Y CH(R1a), CH2 oder O ist;
Z1 CH(R7) oder CH2 ist;
T
ist;
R1 ein Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise mit 0-5 R1a substituiert sein können;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8 R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R1b substituiert sein können;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8 R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R3 bei jedem Auftreten Alkyl ist;
R4 OH ist;
R5 Wasserstoff oder Halogen ist;
R5a Halogen oder -CN ist;
R5b Wasserstoff oder Halogen ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Aryl oder Heteroaryl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, - O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8 R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, Aryloxy oder Arylalkyl ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Aryloxy und Arylalkyl wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, - O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8 R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, Aryloxy, Arylalkyl oder Arylalkyloxyalkyl ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Heteroaryl oder Heterocyclyl ist, wobei das Aryl, Heteroaryl oder Heterocyclyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl oder Heterocyclyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, - CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O) NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, - OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2 (CR8R8)rR14, -NR14C(=O)OR6, - NR14S(O2)R6, -OC(=O) NR14R14, Aryloxy oder Arylalkyl ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Aryl oder Heterocyclyl ausgewählt ist, wobei das Aryl oder Heterocyclyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl 1-4 Heteroatome enthält, die unter N, O und S ausgewählt sind;
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Cycloalkylalkyl, Heteroaryl, Heteroarylalkyl, Heterocyclyl, Heterocyclylalkyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, - O(CR8R8)rR14, -OH, -SH, -S(CR8 R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)N R14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, - NR14C(=O)(CR8R8)rR14, -OC (=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, - NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14 R14, Aryloxy oder Arylalkyl ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-2 ist.
Z O ist;
W
ist;
X C(R8) ist;
Y CH(R1a) oder CH2 ist;
Z1 CH(R7) oder CH2 ist;
T
ist;
R1 ein Alkyl, Cycloalkyl, Aryl, Heterocyclyl oder Heteroaryl ist, die alle wahlweise mit 0-5 R1a substituiert sein können;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, - O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S (O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C (=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O) OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9 oder Aryloxy ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl und Aryloxy wahlweise mit 0-3 R1b substituiert sein können;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, - O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6 oder Aryloxy ausgewählt ist;
R3 bei jedem Auftreten Alkyl ist;
R4 OH ist;
R5 Wasserstoff oder Halogen ist;
R5a Halogen ist;
R5b Wasserstoff oder Halogen ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Aryl oder Heteroaryl ist;
R7 bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, - O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9 oder Aryloxy ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl und Aryloxy wahlweise mit 0-3 R7b substituiert sein können;
R7b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, - O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C (=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C (=O)OR6, -NR9S(O2)R6 oder Aryloxy ausgewählt ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Heteroaryl oder Heterocyclyl ist, wobei das Aryl, Heteroaryl oder Heterocyclyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl oder Heterocyclyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, - O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, - S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)N R14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8 R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8), R14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14 oder Aryloxy ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Aryl oder Heterocyclyl ausgewählt ist, wobei das Aryl oder Heterocyclyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl 1-4 Heteroatome enthält, die unter N, O und S ausgewählt sind;
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, - O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, - S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S (O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)r R14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14 oder Aryloxy ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-2 ist.
Z O ist;
W
ist;
X CH ist;
Y CH2 ist;
Z1 CH2 ist;
T
ist;
R1 ein Alkyl, Cycloalkyl, Aryl oder Heteroaryl ist, die alle wahlweise mit 0-5 R1a substituiert sein können;
R1a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, - O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8 R8)rR10, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, -OC(=O)NR9R9 oder Aryloxy ausgewählt ist, wobei das Alkyl, Aryl, Cycloalkyl Heteroaryl, Heterocyclyl und Aryloxy wahlweise mit 0-3 R1b substituiert sein können;
R1b bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, , Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR10, - O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, - S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, - S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, - NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6 oder Aryloxy ausgewählt ist;
R3 bei jedem Auftreten Alkyl ist;
R4 OH ist;
R5 Wasserstoff oder Halogen ist;
R5a Chlor ist;
R5b Wasserstoff oder Halogen ist;
R6 bei jedem Auftreten unabhängig voneinander Alkyl, Cycloalkyl, Aryl oder Heteroaryl ist;
R8 bei jedem Auftreten unabhängig voneinander Wasserstoff oder Alkyl ist;
R9 bei jedem Auftreten unabhängig voneinander Wasserstoff, Alkyl, Cycloalkyl, Aryl, Heteroaryl oder Heterocyclyl ist, wobei das Aryl, Heteroaryl oder Heterocyclyl wahlweise mit 0-5 R9a substituiert sein können, und wobei das Heteroaryl oder Heterocyclyl 1-4 Heteroatome enthalten, die unter N, O und S ausgewählt sind;
R9a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, - O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, - S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2 R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O) NR14R14 oder Aryloxy ausgewählt ist;
R10 bei jedem Auftreten unabhängig voneinander unter Alkyl, Aryl oder Heterocyclyl ausgewählt ist, wobei das Aryl oder Heterocyclyl wahlweise mit 0-3 R10a substituiert sein können und das Heterocyclyl 1-4 Heteroatome enthält, die unter N, O und S ausgewählt sind;
R10a bei jedem Auftreten unabhängig voneinander unter Alkyl, Halogenalkyl, Aryl, Cycloalkyl, Heteroaryl, Heterocyclyl, Halogen, -CN, -NO2, -C(=O)O(CR8R8)rR14, - O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, - S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14 S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8 R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8 R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14 oder Aryloxy ausgewählt ist;
R14 bei jedem Auftreten unabhängig voneinander unter Wasserstoff, Alkyl, Cycloalkyl oder Phenyl ausgewählt ist;
m gleich 0-2 ist; und
r gleich 0-2 ist.
Q est CH ou N;
Z est O ou S;
W est:
X est C(R8);
Y est CH(R1a), CH2, O, S, S(O), S(O)2, N(R8), C(=O) ou
Z1 est CH(R7), CH2, O, S, N(R8), S(O) ou S(O)2;
T est une liaison,
ou
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous
pouvant être éventuellement substitués avec 0-5 R1a; à condition que R1 ne soit pas un phényle non substitué lorsque T est:
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -(OCR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, - S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R1b; ou deux R1a quelconques attachés au même atome de carbone peuvent former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, - S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R3, à chaque occurrence, est indépendamment OH ou un alkyle; ou deux R3 accompagnés de l'atome de carbone auquel ils sont attachés peuvent former un cycle de 3 à 6 membres;
R4 est un hydrogène, F, OH, CN ou -NH2;
R5 est un hydrogène, un halo, -CN ou un -Oalkyle;
R5a est un hydrogène, un halo, -CN ou un alcynyle;
R5b est un hydrogène, un halo, -CN ou un -Oalkyle;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un cycloalkylalkyle, un aryle, un arylalkyle, un hétéroaryle ou un hétéroarylalkyle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)Rb, =O, -OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -C(=NR14)NR9R9, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, - S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un arylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle contient 1-4 hétéroatomes choisis parmi N, O et S; ou deux R9 quelconques peuvent être pris pour former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -C(=NR14)NR14R14, - NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, - NR14S(O2)R6, -OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un alcényle, un alcynyle, un aryle, un arylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle et l'hétérocyclylalkyle contiennent 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -C(=NR14)NR14R14, - NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, - NR14S(O2)R6, -OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2;
r est 0-5;
à condition que: R5, R5a et R5b ne soient pas tous H lorsque T est une liaison et R4 est H ou OH;
dans lequel:
un « alkyle » seul ou en tant que partie d'un autre groupe se réfère à des groupes hydrocarbures aliphatiques saturés à la fois ramifiés et à chaîne droite contenant de 1 à 20 carbones dans la chaîne normale qui peuvent éventuellement inclure de 1 à 4 substituants choisis parmi F, Br, Cl ou I, CF3, un alkyle, un alcoxy, un aryle, un aryloxy, un aryle, un diaryle, un arylalkyle, un arylalkyloxy, un alcényle, un cycloalkyle, un cycloalkylalkyle, un cycloalkylalkyloxy, un amino, un hydroxy, un hydroxyalkyle, un acyle, un hétéroaryle, un hétéroaryloxy, un hétéroarylalkyle, un hétéroarylalcoxy, un aryloxyalkyle, un alkylthio, un arylalkylthio, un aryloxyaryle, un alkylamido, un alcanoylamino, un arylcarbonylamino, un nitro, un cyano, un thiol, un haloalkyle, un trihaloalkyle et/ou un alkylthio;
un « alcényle » seul ou en tant que partie d'un autre groupe se réfère à des radicaux à chaîne droite ou ramifiée de 2 à 20 carbones, qui incluent de une à six liaisons doubles dans la chaîne normale qui peuvent être éventuellement substitués avec de 1 à 4 substituants choisis parmi un halogène, un haloalkyle, un alkyle, un alcoxy, un alcényle, un alcynyle, un aryle, un arylalkyle, un cycloalkyle, un amino, un hydroxy, un hétéroaryle, un cyclohétéroalkyle, un alcanoylamino, un alkylamido, un arylcarbonylamino, un nitro, un cyano, un thiol, un alkylthio et/ou n'importe lequel des substituants d'alkyle présentés ci-dessus;
un « alcynyle » seul ou en tant que partie d'un autre groupe se réfère à des radicaux à chaîne droite ou ramifiée de 2 à 20 carbones dans la chaîne normale, qui incluent une liaison triple dans la chaîne normale et qui peuvent être éventuellement substitués avec de 1 à 4 substituants choisis parmi un halogène, un haloalkyle, un alkyle, un alcoxy, un alcényle, un alcynyle, un aryle, un arylalkyle, un cycloalkyle, un amino, un hétéroaryle, un cyclohétéroalkyle, un hydroxy, un alcanoylamino, un alkylamido, un arylcarbonylamino, un nitro, un cyano, un thiol et/ou un alkylthio et/ou n'importe lequel des substituants d'alkyle présentés ci-dessus;
un « cycloalkyle » seul ou en tant que partie d'un autre groupe inclut des groupes hydrocarbures cycliques saturés ou partiellement insaturés (contenant 1 ou 2 liaisons doubles) contenant de 1 à 3 cycles et un total de 3 à 20 carbones formant le cycle et qui peuvent être condensés à 1 à 2 cycles aromatiques tels que décrits pour un aryle et peuvent être éventuellement substitués avec de 1 à 4 substituants choisis parmi un halogène, un alkyle, un alcoxy, un hydroxy, un aryle, un aryloxy, un arylalkyle, un cycloalkyle, un alkylamido, un alcanoylamino, un oxo, un acyle, un arylcarbonylamino, un amino, un nitro, un cyano, un thiol et/ou un alkylthio et/ou n'importe lequel des substituants pour un alkyle;
un « aryle » seul ou en tant que partie d'un autre groupe se réfère à des groupes aromatiques monocycliques et bicycliques contenant de 6 à 10 carbones dans la portion de cycle et qui peuvent éventuellement inclure de 1 à 3 cycles supplémentaires condensés à un cycle carbocyclique ou un cycle hétérocyclique et peuvent être éventuellement substitués par des atomes de carbone disponibles avec 1, 2 ou 3 substituants choisis parmi un halo, un haloalkyle, un alkyle, un haloalkyle, un alcoxy, un haloalcoxy, un alcényle, un trifluorométhyle, un trifluorométhoxy, un alcynyle, un cycloalkylalkyle, un cyclohétéroalkyle, un cyclohétéroalkylalkyle, un aryle, un hétéroaryle, un arylalkyle, un aryloxy, un aryloxyalkyle, un arylalcoxy, un arylthio, un arylazo, un hétéroarylalkyle, un hétéroarylalcényle, un hétéroarylhétéroaryle, un hétéroaryloxy, un hydroxy, un nitro, un cyano, un amino, un amino substitué où l'amino inclut 1 ou 2 substituants (qui sont un alkyle, un aryle ou n'importe lequel des autres composés d'aryle mentionnés dans les définitions), un thiol, un alkylthio, un arylthio, un hétéroarylthio, un arylthioalkyle, un alcoxyarylthio, un alkylcarbonyle, un arylcarbonyle, un alkylaminocarbonyle, un arylaminocarbonyle, un alcoxycarbonyle, un aminocarbonyle, un alkylcarbonyloxy, un arylcarbonyloxy, un alkylcarbonylamino, un arylcarbonylamino, un arylsulfinyle, un arylsulfinylalkyle, un arylsulfonylamino ou un arylsulfonaminocarbonyle et/ou n'importe lequel des substituants d'alkyle présentés ci-dessus;
un « hétérocyclyle » ou un « système hétérocyclique » veut dire un cycle hétérocyclique monocyclique ou bicyclique de 5, 6 ou 7 membres ou hétérocyclique bicyclique de 7, 8, 9 ou 10 membres stable qui est saturé, partiellement insaturé ou insaturé (aromatique) et qui est constitué d'atomes de carbone et de 1, 2, 3 ou 4 hétéroatomes indépendamment choisis dans le groupe constitué de N, NH, O et S et incluant tout groupe bicyclique dans lequel n'importe lequel des cycles hétérocycliques définis ci-dessus est condensé à un cycle de benzène; et un « système hétérocyclique aromatique » ou un « hétéroaryle » veut dire un cycle aromatique hétérocyclique monocyclique ou bicyclique de 5 à 7 membres ou bicyclique de 7 à 10 membres stable qui est constitué d'atomes de carbone et de 1 à 4 hétéroatomes indépendamment choisis dans le groupe constitué de N, O et S et il est aromatique de nature.
Z est O ou S;
W est:
X est C(R8);
Y est CH(R1a), CH2, O, S, S(O), S(O)2, N(R8), C(=O) ou
Z1 est CH(R7), CH2, O, S, N(R8), S(O) ou S(O)2;
T est:
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous
pouvant être éventuellement substitués avec 0-5 R1a; à condition que R1 ne soit pas un phényle non substitué lorsque T est:
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, =O, -OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R1b; ou deux R1a quelconques attachés au même atome de carbone peuvent former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R3, à chaque occurrence, est indépendamment OH ou un alkyle; ou deux R3 accompagnés de l'atome de carbone auquel ils sont attachés peuvent former un cycle de 3 à 6 membres;
R4 est un hydrogène, F, OH, CN ou -NH2;
R5 est un hydrogène, un halo ou -CN;
R5a est un halo, -CN ou un alcynyle;
R5b est un hydrogène, un halo ou -CN;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un cycloalkylalkyle, un aryle, un arylalkyle, un hétéroaryle ou un hétéroarylalkyle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, - C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, - C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, =O, -OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -NHC(=NR14)NR14R14, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, - NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un arylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle contient 1-4 hétéroatomes choisis parmi N, O et S; ou deux R9 quelconques peuvent être pris pour former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -NHC(=NR14)NR14R14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un alcényle, un alcynyle, un aryle, un arylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle et l'hétérocyclylalkyle contiennent 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -NHC(=NR14)NR14R14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-4.
Z est O ou S;
W est:
X est C(R8);
Y est CH(R1a), CH2, O, S, S(O)2, N(R8), C(=O) ou
Z1 est CH(R7), CH2, O, S, N(R8), S(O) ou S(O)2;
T est:
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous pouvant être éventuellement substitués avec 0-5 R1a;
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, =O, -OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R1b; ou deux R1a quelconques attachés au même atome de carbone peuvent former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, - C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10 ou arylalkyle;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R3, à chaque occurrence, est indépendamment OH ou un alkyle; ou deux R3 accompagnés de l'atome de carbone auquel ils sont attachés peuvent former un cycle de 3 à 6 membres;
R4 est un hydrogène, F, OH, CN ou -NH2;
R5 est un hydrogène, un halo ou -CN;
R5a est un halo, -CN ou un alcynyle;
R5b est un hydrogène, un halo ou -CN;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un cycloalkylalkyle, un aryle, un arylalkyle, un hétéroaryle ou un hétéroarylalkyle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, - C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, - C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, =O, -OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -P(O)3H2, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, - NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un arylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle contient 1-4 hétéroatomes choisis parmi N, O et S; ou deux R9 quelconques peuvent être pris pour former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un alcényle, un alcynyle, un aryle, un arylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle et l'hétérocyclylalkyle contiennent 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -S(O)3H, -P(O)3H2, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-3.
Z est O;
W est:
X est C(R8);
Y est CH(R1a), CH2, O, S, S(O)2, N(R8) ou C(=O);
Z1 est CH(R7), CH2, O, S ou N(R8);
T est:
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous pouvant être éventuellement substitués avec 0-5 R1a;
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, - C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, - C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, =O, -OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R1b; ou deux R1a quelconques attachés au même atome de carbone peuvent former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, - C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10 ou arylalkyle;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, - C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, - C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R3, à chaque occurrence, est indépendamment OH ou un alkyle; ou deux R3 accompagnés de l'atome de carbone auquel ils sont attachés peuvent former un cycle de 3 à 6 membres;
R4 est un hydrogène, F, OH ou -NH2;
R5 est un hydrogène, un halo ou -CN;
R5a est un halo, -CN ou un alcynyle;
R5b est un hydrogène, un halo ou -CN;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un cycloalkylalkyle, un aryle, un arylalkyle, un hétéroaryle ou un hétéroarylalkyle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6 -NR9S(O2)R6, =O, - OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -S(O)3H, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, - C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, - C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un arylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle contient 1-4 hétéroatomes choisis parmi N, O et S; ou deux R9 quelconques peuvent être pris pour former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -S(O)3H, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un alcénle, un alcynyle, un aryle, un arylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle et l'hétérocyclylalkyle contiennent 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -S(O)3H, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, - NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, - NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, - S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-2.
Z est O;
W est:
X est C(R8);
Y est CH(R1a), CH2, O, S, S(O)2, N(R8) ou C(=O);
Z1 est CH(R7), CH2, O ou N(R8);
T est:
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous pouvant être éventuellement substitués avec 0-5 R1a;
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, - C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, - C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, =O, -OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R1b; ou deux R1a quelconques attachés au même atome de carbone peuvent former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, - C(=O)O(CR8R8)rR10, -OH, -SH, -C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10 ou arylalkyle;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, - C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R3, à chaque occurrence, est indépendamment OH ou un alkyle; ou deux R3 accompagnés de l'atome de carbone auquel ils sont attachés peuvent former un cycle de 3 à 6 membres;
R4 est un hydrogène, F, OH ou -NH2;
R5 est un hydrogène, un halo ou -CN;
R5a est un halo ou -CN;
R5b est un hydrogène, un halo ou -CN;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un cycloalkylalkyle, un aryle, un arylalkyle, un hétéroaryle ou un hétéroarylalkyle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, - S(CR8R8)rR10, -C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, - C(=O)NR9S(O)2R6, -S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, - C(=O)NR9S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, - OC(=O)(CR8R8)rR10, -S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, - NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un arylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle contient 1-4 hétéroatomes choisis parmi N, O et S; ou deux R9 quelconques peuvent être pris pour former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, - NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, - NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un alcényle, un alcynyle, un aryle, un arylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle et l'hétérocyclylalkyle contiennent 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)OH, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, - S(CR8R8)rR14, -C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, - C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, - C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR14, -NR14C(=O)H, - NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, -S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, - NR14C(=O)OR6, -NR14S(O2)R6, -OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-2.
Z est O;
W est:
X est C(R8);
Y est CH(R1a), CH2, O, S ou S(O)2;
Z1 est CH(R7), CH2 ou O;
T est:
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous pouvant être éventuellement substitués avec 0-5 R1a;
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R1b; ou deux R1a quelconques attachés au même atome de carbone peuvent former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R3, à chaque occurrence, est indépendamment OH ou un alkyle; ou deux R3 accompagnés de l'atome de carbone auquel ils sont attachés peuvent former un cycle de 3 à 6 membres;
R4 est F, OH ou -NH2;
R5 est un hydrogène, un halo ou -CN;
R5a est un halo ou -CN;
R5b est un hydrogène, un halo ou -CN;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un cycloalkylalkyle, un aryle, un arylalkyle, un hétéroaryle ou un hétéroarylalkyle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)R10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =0, - OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=o)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un arylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle contient 1-4 hétéroatomes choisis parmi N, O et S; ou deux R9 quelconques peuvent être pris pour former un cycle de 3 à 6 membres, dans lequel les atomes de carbone dudit cycle peuvent être éventuellement remplacés avec un hétéroatome choisi parmi N, O et S et l'hétéroatome N dudit cycle peut être éventuellement substitué avec un ou plusieurs de ce qui suit: hydrogène, alkyle, haloalkyle, aryle, alcényle, alcynyle, cycloalkyle, cycloalkylalkyle, hétéroaryle, hétéroarylalkyle, hétérocyclyle, hétérocyclylalkyle, -C(=O)O(CR8R8)rR10, -OH, -SH, - C(=O)NR14R14, -S(O)2NR14R14, -C(=O)NR14S(O)2R6, -S(O)2NR14C(=O)OR6, - S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, -C(=O)(CR8R8)rR10 ou arylalkyle;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un alcényle, un alcynyle, un aryle, un arylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle et l'hétérocyclylalkyle contiennent 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)R14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-2.
Z est O;
W est:
X est C(R8);
Y est CH(R1a), CH2, O ou S;
Z1 est CH(R7) ou CH2;
T est:
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous pouvant être éventuellement substitués avec 0-5 R1a;
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R1b;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R3, à chaque occurrence, est indépendamment OH ou un alkyle; ou deux R3 accompagnés de l'atome de carbone auquel ils sont attachés peuvent former un cycle de 3 à 6 membres;
R4 est F ou OH;
R5 est un hydrogène, un halo ou -CN;
R5a est un halo ou -CN;
R5b est un hydrogène, un halo ou -CN;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un cycloalkylalkyle, un aryle, un arylalkyle, un hétéroaryle ou un hétéroarylalkyle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CP8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un arylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle contient 1-4 hétéroatomes choisis parmi N, O et S;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un alcényle, un alcynyle, un aryle, un arylalkyle, un hétérocyclyle ou un hétérocyclylalkyle, dans lequel l'aryle, l'arylalkyle, l'hétérocyclyle ou l'hétérocyclylalkyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle et l'hétérocyclylalkyle contiennent 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un alcényle, un alcynyle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-2.
Z est O;
W est:
X est C(R8);
Y est CH(R1a), CH2 ou O;
Z1 est CH(R7) ou CH2;
T est:
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous pouvant être éventuellement substitués avec 0-5 R1a;
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, -NO2, - C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R1b;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, -NO2, - C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R3, à chaque occurrence, est un alkyle;
R4 est OH;
R5 est un hydrogène ou un halo;
R5a est un halo ou -CN;
R5b est un hydrogène ou un halo;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un aryle ou un arylalkyle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, -NO2, - C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9, un aryloxy ou un arylalkyle, dans lequel l'alkyle, l'aryle, le cycloalkyle, le cycloalkylalkyle, l'hétéroaryle, l'hétéroarylalkyle, l'hétérocyclyle, l'hétérocyclylalkyle, l'aryloxy et l'arylalkyle peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, -NO2, - C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, un aryloxy, un arylalkyle ou un arylalkyloxyalkyle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un hétéroaryle ou un hétérocyclyle, dans lequel l'aryle, l'hétéroaryle ou l'hétérocyclyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle ou l'hétérocyclyle contient 1-4 hétéroatomes choisis parmi N, O et S;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, -NO2, - C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un aryle ou un hétérocyclyle, dans lequel l'aryle ou l'hétérocyclyle peut être éventuellement substitué avec 0-3 R100a et l'hétérocyclyle contient 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un cycloalkylalkyle, un hétéroaryle, un hétéroarylalkyle, un hétérocyclyle, un hétérocyclylalkyle, un halo, -CN, -NO2, - C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14, un aryloxy ou un arylalkyle;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-2.
Z est O;
W est:
X est C(R8);
Y est CH(R1a) ou CH2;
Z1 est CH(R7) ou CH2;
T est:
R1 est un alkyle, un cycloalkyle, un aryle, un hétérocyclyle ou un hétéroaryle, tous pouvant être éventuellement substitués avec 0-5 R1a;
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9 ou un aryloxy, dans lequel l'alkyle, l'aryle, le cycloalkyle, l'hétéroaryle, l'hétérocyclyle et l'aryloxy peuvent être éventuellement substitués avec 0-3 R1b;
Rib, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6 ou un aryloxy;
R3, à chaque occurrence, est un alkyle;
R4 est OH;
R5 est un hydrogène ou un halo;
R5a est un halo;
R5b est un hydrogène ou un halo;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un aryle ou un hétéroaryle;
R7, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9 ou un aryloxy, dans lequel l'alkyle, l'aryle, le cycloalkyle, l'hétéroaryle, l'hétérocyclyle et l'aryloxy peuvent être éventuellement substitués avec 0-3 R7b;
R7b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6 ou un aryloxy;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un hétéroaryle ou un hétérocyclyle, dans lequel l'aryle, l'hétéroaryle ou l'hétérocyclyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle ou l'hétérocyclyle contient 1-4 hétéroatomes choisis parmi N, O et S;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14 ou un aryloxy;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un aryle ou un hétérocyclyle, dans lequel l'aryle ou l'hétérocyclyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle contient 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14 ou un aryloxy;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-2.
Z est O;
W est:
X est CH;
Y est CH2;
Z, est CH2;
T est:
R1 est un alkyle, un cycloalkyle, un aryle ou un hétéroaryle, tous pouvant être éventuellement substitués avec 0-5 R1a;
R1a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6, =O, - OC(=O)NR9R9 ou un aryloxy, dans lequel l'alkyle, l'aryle, le cycloalkyle, l'hétéroaryle, l'hétérocyclyle et l'aryloxy peuvent être éventuellement substitués avec 0-3 R1b;
R1b, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR10, -O(CF2)rCF3, -O(CR8R8)rR10, -OH, -SH, -S(CR8R8)rR10, - C(=O)NR9R9, -NR9R9, -S(O)2NR9R9, -NR9S(O)2(CF2)rCF3, -C(=O)NR9S(O)2R6, - S(O)2NR9C(=O)OR6, -S(O)2NR9C(=O)NR9R9, -C(=O)NR9S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR10, -NR9C(=O)H, -NR9C(=O)(CR8R8)rR10, -OC(=O)(CR8R8)rR10, - S(=O)(CR8R8)rR10, -S(O)2(CR8R8)rR10, -NR9C(=O)OR6, -NR9S(O2)R6 ou un aryloxy;
R3, à chaque occurrence, est un alkyle;
R4 est OH;
R5 est un hydrogène ou un halo;
R5a est un chloro;
R5b est un hydrogène ou un halo;
R6, à chaque occurrence, est indépendamment un alkyle, un cycloalkyle, un aryle ou un hétéroaryle;
R8, à chaque occurrence, est indépendamment un hydrogène ou un alkyle;
R9, à chaque occurrence, est indépendamment un hydrogène, un alkyle, un cycloalkyle, un aryle, un hétéroaryle ou un hétérocyclyle, dans lequel l'aryle, l'hétéroaryle ou l'hétérocyclyle peut être éventuellement substitué avec 0-5 R9a et l'hétéroaryle ou l'hétérocyclyle contient 1-4 hétéroatomes choisis parmi N, O et S;
R9a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14 ou un aryloxy;
R10, à chaque occurrence, est indépendamment choisi parmi un alkyle, un aryle ou un hétérocyclyle, dans lequel l'aryle ou l'hétérocyclyle peut être éventuellement substitué avec 0-3 R10a et l'hétérocyclyle contient 1-4 hétéroatomes choisis parmi N, O et S;
R10a, à chaque occurrence, est indépendamment choisi parmi un alkyle, un haloalkyle, un aryle, un cycloalkyle, un hétéroaryle, un hétérocyclyle, un halo, -CN, - NO2, -C(=O)O(CR8R8)rR14, -O(CF2)rCF3, -O(CR8R8)rR14, -OH, -SH, -S(CR8R8)rR14, - C(=O)NR14R14, -NR14R14, -S(O)2NR14R14, -NR14S(O)2(CF2)rCF3, -C(=O)NR14S(O)2R6, - S(O)2NR14C(=O)OR6, -S(O)2NR14C(=O)NR14R14, -C(=O)NR14S(O)2(CF2)rCF3, - C(=O)(CR8R8)rR14, -NR14C(=O)H, -NR14C(=O)(CR8R8)rR14, -OC(=O)(CR8R8)rR14, - S(=O)(CR8R8)rR14, -S(O)2(CR8R8)rR14, -NR14C(=O)OR6, -NR14S(O2)R6, - OC(=O)NR14R14 ou un aryloxy;
R14, à chaque occurrence, est indépendamment choisi parmi un hydrogène, un alkyle, un cycloalkyle ou un phényle;
m est 0-2; et
r est 0-2.
REFERENCES CITED IN THE DESCRIPTION
Patent documents cited in the description
Non-patent literature cited in the description