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(11) | EP 2 019 825 B9 |
| (12) | CORRECTED EUROPEAN PATENT SPECIFICATION |
| Note: Bibliography reflects the latest situation |
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| (54) |
INHIBITORS OF HUMAN IMMUNODEFICIENCY VIRUS REPLICATION HEMMER DER NEUBILDUNG MENSCHLICHER IMMUNDEFEKT-VIREN INHIBITEURS DE LA RÉPLICATION DU VIRUS DE L'IMMUNODÉFICIENCE HUMAINE |
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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 INVENTION
Definitions
Preferred embodiments
Core:
Core-A: In one embodiment, X is O or NR1; a is a single bond and b is a double bond. In this embodiment, the compounds of the invention are represented
by formula (Ia):
wherein c, R1, R2, R3, R4, R6 and R7 are as defined herein.
Core-B: In another embodiment, X is O; a is a single bond; and b is a double bond. In this embodiment, the compounds of the invention are represented
by formula (Ib):
wherein c, R2, R3, R4, R6 and R7 are as defined herein.
Core-C: In another embodiment, X is NR1; a is a single bond; and b is a double bond. In this embodiment, the compounds of the invention are represented
by formula (Ic):
wherein c, R1, R2, R3, R4, R6 and R7 are as defined herein.
It will be apparent to one skilled in the art that when R1 is H and R2 is O, compounds of formula (Ic) can exist in two possible tautomeric forms, (Ic-1)
and (Ic-2), as shown below:
Core-D: In an alternative embodiment, X is N; a is a double bond; and b is a single bond. In this embodiment, the compounds of the invention are represented
by formula (Id):
wherein c, R2, R3, R4, R6 and R7 are as defined herein.
It will be apparent to a person skilled in the art that, when bond c is a single bond,
the carbon atom bonded to the -COOH and R3 substituents can exist in two possible stereochemical configurations, as shown in
formulas (Ie) and (If) below:
wherein a, b, X, R1, R2, R3, R4, R6 and R7 are as defined herein.
It has been found that compounds of formula (Ie) have improved activity over compounds
of formula (if).
Core-E: Therefore, in one embodiment, the compounds of the present invention are represented
by formula (Ie):
wherein a, b, X, R2, R3, R4, R6 and R7 are as defined herein.
Core-F: In another embodiment, the compounds of the present invention are represented by
formula (If):
wherein a, b, X, R2, R3, R4, R6 and R7 are as defined herein.
Core-G: In another embodiment, the compounds of the invention are represented by formula
(Ig):
wherein R2, R3, R4, R6 and R7 are as defined herein.
Core-H: In another embodiment, the compounds of the invention are represented by formula
(Ih):
wherein R2, R3, R4, R6 and R7 are as defined herein.
Core-I: In another embodiment, the compounds of the invention are represented by formula
(Ii):
wherein R1, R2, R3, R4, R6 and R7 are as defined herein.
Core-J: In another embodiment, the compounds of the invention are represented by formula
(Ij):
wherein R1, R2, R3, R4, R6 and R7 are as defined herein.
It will be apparent to one skilled in the art that when R1 is H and R2 is O, compounds of formula (Ii) and (Ij) can each also exist in two possible tautomeric
forms, as described for compounds of formula (Ic) above.
Core-K: In an alternative embodiment, the compounds of the invention are represented by formula
(Ik):
wherein R2, R3, R4, R6 and R7 are as defined herein.
Core-M: In an alternative embodiment, the compounds of the invention are represented by formula
(Im):
wherein R2, R3, R4, R6 and R7 are as defined herein.
R6:
R7:
| Embodiment | Core | R1 | R2 | R3 | R4 | R6 | R7 |
| E-1 | Core-B | R2-A | R3-B | R4-B | R6-A | R7-A | |
| E-2 | Core-G | R2-A | R3-B | R4-B | R6-A | R7-A | |
| E-3 | Core-C | R1-A | R2-A | R3-B | R4-B | R6-A | R7-A |
| E-4 | Core-I | R1-A | R2-A | R3-B | R4-B | R6-A | R7-A |
| E-5 | Core-D | R2-C | R3-B | R4-B | R6-A | R7-A | |
| E-6 | Core-K | R2-C | R3-B | R4-B | R6-A | R7-A | |
| E-7 | Core-D | R2-D | R3-B | R4-B | R6-A | R7-A | |
| E-8 | Core-K | R2-D | R3-B | R4-B | R6-A | R7-A | |
| E-9 | Core-B | R2-A | R3-C | R4-B | R6-A | R7-A | |
| E-10 | Core-G | R2-A | R3-C | R4-B | R6-A | R7-A | |
| E-11 | Core-C | R1-A | R2-A | R3-C | R4-B | R6-A | R7-A |
| E-12 | Core-I | R1-A | R2-A | R3-C | R4-B | R6-A | R7-A |
| E-13 | Core-D | R2-C | R3-C | R4-B | R6-A | R7-A | |
| E-14 | Core-K | R2-C | R3-C | R4-B | R6-A | R7-A | |
| E-15 | Core-D | R2-D | R3-C | R4-B | R6-A | R7-A | |
| E-16 | Core-K | R2-D | R3-C | R4-B | R6-A | R7-A | |
| E-17 | Core-B | R2-A | R3-F | R4-B | R6-A | R7-A | |
| E-18 | Core-G | R2-A | R3-F | R4-B | R6-A | R7-A | |
| E-19 | Core-C | R1-A | R2-A | R3-F | R4-B | R6-A | R7-A |
| E-20 | Core-I | R1-A | R2-A | R3-F | R4-B | R6-A | R7-A |
| E-21 | Core-D | R2-C | R3-F | R4-B | R6-A | R7-A | |
| E-22 | Core-K | R2-C | R3-F | R4-B | R6-A | R7-A | |
| E-23 | Core-D | R2-D | R3-F | R4-B | R6-A | R7-A | |
| E-24 | Core-K | R2-D | R3-F | R4-B | R6-A | R7-A | |
| E-25 | Core-B | R2-A | R3-B | R4-H | R6-A | R7-A | |
| E-26 | Core-G | R2-A | R3-B | R4-H | R6-A | R7-A | |
| E-27 | Core-C | R1-A | R2-A | R3-B | R4-H | R6-A | R7-A |
| E-28 | Core-I | R1-A | R2-A | R3-B | R4-H | R6-A | R7-A |
| E-29 | Core-D | R2-C | R3-B | R4-H | R6-A | R7-A | |
| E-30 | Core-K | R2-C | R3-B | R4-H | R6-A | R7-A | |
| E-31 | Core-D | R2-D | R3-B | R4-H | R6-A | R7-A | |
| E-32 | Core-K | R2-D | R3-B | R4-H | R6-A | R7-A | |
| E-33 | Core-B | R2-A | R3-C | R4-H | R6-A | R7-A | |
| E-34 | Core-G | R2-A | R3-C | R4-H | R6-A | R7-A | |
| E-35 | Core-C | R1-A | R2-A | R3-C | R4-H | R6-A | R7-A |
| E-36 | Core-I | R1-A | R2-A | R3-C | R4-H | R6-A | R7-A |
| E-37 | Core-D | R2-C | R3-C | R4-H | R6-A | R7-A | |
| E-38 | Core-K | R2-C | R3-C | R4-H | R6-A | R7-A | |
| E-39 | Core-D | R2-D | R3-C | R4-H | R6-A | R7-A | |
| E-40 | Core-K | R2-D | R3-C | R4-H | R6-A | R7-A | |
| E-41 | Core-B | R2-A | R3-F | R4-H | R6-A | R7-A | |
| E-42 | Core-G | R2-A | R3-F | R4-H | R6-A | R7-A | |
| E-43 | Core-C | R1-A | R2-A | R3-F | R4-H | R6-A | R7-A |
| E-44 | Core-I | R1-A | R2-A | R3-F | R4-H | R6-A | R7-A |
| E-45 | Core-D | R2-C | R3-F | R4-H | R6-A | R7-A | |
| E-46 | Core-K | R2-C | R3-F | R4-H | R6-A | R7-A | |
| E-47 | Core-D | R2-D | R3-F | R4-H | R6-A | R7-A | |
| E-48 | Core-K | R2-D | R3-F | R4-H | R6-A | R7-A |
Pharmaceutical composition
Combination therapy
Derivatives comprising a detectable label
METHODOLOGY AND SYNTHESIS
EXAMPLES
| Time (min) | Flow (mL/min) | Solvent A (%) | Solvent B (%) |
| 0 | 3.0 | 95 | 5 |
| 0.5 | 3.0 | 95 | 5 |
| 6.0 | 3.0 | 50 | 50 |
| 10.5 | 3.5 | 0 | 100 |
Ac: acetyl;
AcOH: acetic acid;
Ac2O: acetic anhydride;
BOC or Boc: tert-butyloxycarbonyl;
Bu: butyl;
DBU: 1,8-diazabicyclo[5.4.0]undec-7-ene;
DCM: dichloromethane;
DME: dimethoxyethane;
DMF: N,N-dimethylformamide;
DMSO: dimethylsulfoxide;
EC50: 50% effective concentration;
Et: ethyl;
Et3N : triethylamine;
Et2O: diethyl ether;
EtOAc: ethyl acetate;
EtOH: ethanol;
HPLC: high performance liquid chromatography;
IC50: 50% inhibitory concentration;
iPr or i-Pr: 1-methylethyl (iso-propyl);
LiHMDS: lithium hexamethyldisilazide;
Me: methyl;
MeCN: acetonitrile;
MeOH: methanol;
MOI: multiplicity of infection;
MS: mass spectrometry (MALDI-TOF: Matrix Assisted Laser Desorption lonization-Time of Flight, FAB: Fast Atom Bombardment);
NMR: nuclear magnetic resonance spectroscopy;
Ph: phenyl;
PG: protecting group;
Pr: propyl;
RPMI: Roswell Park Memorial Institute (cell culture medium);
RT: room temperature (approximately 18°C to 25°C);
tert-butyl or t-butyl: 1,1-dimethylethyl;
Tf: trifluoromethanesulfonyl;
Tf2O: trifluoromethanesulfonic anhydride;
TFA: trifluoroacetic acid;
THF: tetrahydrofuran; and
TLC: thin layer chromatography.
EXAMPLE 1A
Step 1:
Step 2:
EXAMPLE 1B
EXAMPLE 1C
Step 1:
Step 2:
EXAMPLE 2A
Preparation of compounds 3001 and 3002, Table 3
Step 1:
Step 2:
Step 3:
Step 4:
Step 5:
EXAMPLE 2B
Preparation of compound 2011, Table 2
Step 1:
Step 2:
Step 3:
Step 4:
Step 5:
Step 6:
EXAMPLE 2C
Preparation of compound 2010 (Table 2)
Step 1:
Step 2:
EXAMPLE 3A
Preparation of compound 1058, Table 1
Step 1:
Step 2:
Step 3:
Step 4:
EXAMPLE 3B
Preparation of compound 1061, Table 1
Step 1:
Step 2:
EXAMPLE 3C
Preparation of compound 1078, Table 1
Step 1:
Step 2:
EXAMPLE 4A
Preparation of compound 1035, Table 1
Step 1:
Step 2:
Step 3:
Step 4:
Step 5:
EXAMPLE 4B
Preparation of compound 1101 (Table 1)
Step 1:
Step 2:
Step 3:
Step 4:
EXAMPLE 5A
Preparation of compound 1034, Table 1
Step 1:
Step 2:
Step 3:
Step 4:
Step 5:
Step 6:
EXAMPLE 5B
Preparation of compound 1093, Table 1
Step 1:
Step 2:
Step 3:
Step 4:
Step 5:
Step 6:
EXAMPLE 5C
Step 1:
Step 2:
Step 3:
EXAMPLE 6A
Preparation of compound 1009, Table 1
Step 1:
Step 2:
Step 3:
Step 4:
Step 5:
Step 6:
EXAMPLE 7A
Preparation of compound 1007, Table 1
Step 1:
Step 2:
Step 3:
EXAMPLE 8A
Synthesis of derivative D1
Step 1:
Step 2:
Step 3:
EXAMPLE 9
C8166 HIV-1 Luciferase Assay (EC50)
Preparation of Compounds
Infection of Cells
TABLES OF COMPOUNDS
|
|
| Cpd | R2 | R3 | R4 | R6 | R7 | tR (min) |
MS (M+H)+ |
| 1001 | CH3 |
|
|
Br | H | 5.2 | 419.8 |
| 1002 | CH3 |
|
|
Br | H | 6.2 | 447.8 |
| 1003 | CH3 |
|
|
Br | H | 4.5 | 419.9 |
| 1004 | CH3 |
|
|
Br | H | 5.1 | 430.0 |
| 1005 | CH3 |
|
|
Cl | H | 4.8 | 410.0 |
| 1006 | CH3 |
|
|
Br | H | 5.3 | 432.0 |
| 1007 | CH3 |
|
|
Br | H | 5.0 | 430.0 |
| 1008 | CH3 |
|
|
Cl | H | 5.9 | 432.0 |
| 1009 | -OCH3 |
|
|
Br | H | 7.5 | 448.0 |
| 1010 | -CH(CH3)2 |
|
|
Br | H | 7.7 | 460.0 |
| 1011 | CH3 |
|
|
H | H | 3.5 | 342.1 |
| 1012 | CH3 |
|
|
Cl | H | 5.9 | 404.1 |
| 1013 | CH3 |
|
|
Cl | H | 5.6 | 368.1 |
| 1014 | CH3 |
|
|
Cl | H | 5.7 | 386.1 |
| 1015 | CH3 |
|
|
Cl | H | 4.7; 4.9 mixture of diastereomers |
395.1 |
| 1016 | CH3 |
|
|
Cl | H | 4.3; 4.3 mixture of diastereomers |
384.1 |
| 1017 | CH3 |
|
|
Cl | H | 4.3 | 372.1 |
| 1018 | CH3 |
|
|
Cl | H | 5.8; 5.9 mixture of diastereomers |
382.1 |
| 1019 | CH3 |
|
|
Cl | H | 4.2; 4.6 mixture of diastereomers |
381.0 |
| 1020 | CH3 |
|
|
Br | H | 5.6 | 501.0 |
| 1021 | CH3 |
|
|
Cl | H | 4.1; 4.1 mixture of diastereomers |
382.0 |
| 1022 | CH3 |
|
|
Br | H | 4.2 | 460.0 |
| 1023 | CH3 |
|
|
Br | H | 5.6 | 512.1 |
| 1024 | CH3 |
|
|
Cl | H | 4.1 | 356.0 |
| 1025 | CH3 |
|
|
Br | H | 5.7 | 448.0 |
| 1026 | CH3 |
|
|
Br | H | 5.2 | 459.9 |
| 1027 | CH3 |
|
|
Br | H | 4.7 | 483.0 |
| 1028 | CH3 |
|
|
Br | H | 5.0 | 446.0 |
| 1029 | CH3 |
|
|
Cl | H | 4.7 | 376.0 |
| 1030 | CH3 |
|
|
Cl | H | 5.2 | 372.1 |
| 1031 | CH3 |
|
|
Cl | H | 5.0 | 354.1 |
| 1032 | CH3 |
|
|
Br | H | 5.0 | 414.0 |
| 1033 | CH3 |
|
|
H | H | 4.3 | 334.1 |
| 1034 | CH3 |
|
|
Cl | H | 5.1 | 380.1 |
| 1035 | CH3 |
|
|
Br | H | 6.1 | 446.0 |
| 1036 | CH3 |
|
|
Cl | H | 4.7 | 384.1 |
| 1037 | CH3 |
|
|
Cl | H | 5.2 | 394.1 |
| 1038 | CH3 |
|
|
Br | H | 5.2 | 444.9 |
| 1039 | CH3 |
|
|
Br | H | 6.0 | 460 |
| 1040 | CH3 |
|
|
Br | H | 6.3 | 474 |
| 1041 | CH3 |
|
|
Br | H | 5.3 | 443.9 |
| 1042 | CH3 |
|
|
Br | H | 5.6 | 458 |
| 1043 | CH3 |
|
|
Br | H | 5.3 | 434 |
| 1044 | CH3 |
|
|
Br | H | 6.4 | 462 |
| 1045 | CH3 |
|
|
Br | H | 5.0 | 464 |
| 1046 | CH3 |
|
|
Br | H | 6.8 | 476 |
| 1047 | CH3 |
|
|
Br | H | 6.8 | 476 |
| 1048 | CH3 |
|
|
Br | H | 5.2 | 473 |
| 1049 | CH3 |
|
|
Br | H | 5.5 | 458.9 |
| 1050 | CH3 |
|
|
Br | H | 5.0 | 476 |
| 1051 | CH3 |
|
|
Br | H | 5.7 | 459 |
| 1052 | CH3 |
|
|
Br | H | 5.4 | 476 |
| 1053 | CH3 |
|
|
F | F | 5.6 | 370.1 |
| 1054 | CH3 |
|
|
Cl | H | 5.2 | 382.1 |
| 1055 | CH3 |
|
|
Br | H | 4.9 | 447.9 |
| 1056 | CH3 |
|
|
Cl | H | 5.2 | 386.0 |
| 1057 | CH3 |
|
|
Cl | H | 5.2 | 398.1 |
| 1058 | CH3 |
|
|
Cl | H | 4.9 | 384.1 |
| 1059 | CH3 |
|
|
Cl | H | 4.5 | 400.1 |
| 1060 | CH3 |
|
|
Cl | H | 4.2 | 386.0 |
| 1061 | CH3 |
|
|
Cl | H | 5.0 | 384.1 |
| 1062 | CH3 |
|
|
Cl | H | 5.2 | 398.1 |
| 1063 | CH3 |
|
|
Cl | H | 5.6 | 388 |
| 1064 | CH3 |
|
|
Cl | H | 5.7; 5.9 mixture of diastereomers |
406 |
| 1065 | CH3 |
|
|
Cl | H | 5.5; 5.6 mixture of diastereomers |
388 |
| 1066 | CH3 |
|
|
Cl | H | 4.9; 5.0 mixture of diastereomers |
384.1 |
| 1067 | CH3 |
|
|
Cl | H | 6.3 | 394.1 |
| 1068 | CH3 |
|
|
Cl | H | 6.3 | 394 |
| 1069 | CH3 |
|
|
Cl | H | 6.0 | 402 |
| 1070 | CH3 |
|
|
Cl | H | 5.1 | 398.1 |
| 1071 | CH3 |
|
|
Cl | H | 5.0 | 407.1 |
| 1072 | CH3 |
|
|
Cl | H | 5.9; 6.0 mixture of diastereomers |
402 |
| 1073 | CH3 |
|
|
Cl | H | 4.2 | 386.0 |
| 1074 | CH3 |
|
|
Cl | H | 4.5 | 400.1 |
| 1075 | CH3 |
|
|
Cl | H | 5.4 | 400 |
| 1076 | CH3 |
|
|
Cl | H | 5.2 | 360 |
| 1077 | CH3 |
|
|
Cl | H | 5.4; 5.5 mixture of diastereomers |
390 |
| 1078 | CH3 |
|
|
Cl | H | 5.5 | 412.2 |
| 1079 | CH3 |
|
|
Br | H | 5.1 | 462.0 |
| 1080 | CH3 |
|
|
Cl | H | 4.7 | 390.0 |
| 1081 | CH3 |
|
|
Cl | H | 4.0 | 412.0 |
| 1082 | CH3 |
|
|
H | H | 4.0 | 370.0 |
| 1083 | CH3 |
|
|
Cl | H | 6.3 | 506.0 |
| 1084 | CH3 |
|
|
Cl | H | 5.8 | 432.1 |
| 1085 | CH3 |
|
|
Cl | H | 5.8 | 426.2 |
| 1086 | CH3 |
|
|
Cl | H | 5.9 | 438.2 |
| 1087 | CH3 |
|
|
Cl | H | 4.2 | 413.2 |
| 1088 | CH3 |
|
|
Cl | H | 3.1 | 421.2 |
| 1089 | CH3 |
|
|
Cl | H | 5.4 | 412.1 |
| 1090 | CH3 |
|
|
Cl | H | 6.2 | 452.2 |
| 1091 | CH3 |
|
|
Cl | H | 5.4 | 410.2 |
| 1092 | CH3 |
|
|
Cl | H | 5.7 | 424.2 |
| 1093 | CH3 |
|
|
Cl | H | 4.8 | 434.1 |
| 1094 | CH3 |
|
|
Cl | H | 5.6 | 424.2 |
| 1095 | CH3 |
|
|
Cl | H | 5.6 | 424.2 |
| 1096 | CH3 |
|
|
Cl | H | 5.2 | 410.2 |
| 1097 | CH3 |
|
|
Cl | H | 5.6 | 426.2 |
| 1098 | CH3 |
|
|
Cl | H | 5.2 | 414.2 |
| 1099 | CH3 |
|
|
Cl | H | 5.3 | 412.2 |
| 1100 | CH3 |
|
|
Cl | H | 4.5; 4.7 mixture of diastereomers |
414.1 |
| 1101 | -CH2CH3 |
|
|
Cl | H | 5.4 | 402.1 |
| 1102 | CH3 |
|
|
Cl | H | 5.3 | 412.2 |
| 1103 | CH3 |
|
|
Cl | H | 5.8 | 466.1 |
| 1104 | CH3 |
|
|
Cl | H | 5.2 | 448.2 |
| 1105 | CH3 |
|
|
Cl | H | 5.9 | 438.2 |
| 1106 | CH3 |
|
|
Br | H | 5.1 | 462.0 |
| 1107 | CH3 |
|
|
Cl | H | 5.5 | 446.1 |
| 1108 | CH3 |
|
|
Cl | H | 6.1 | 440.2 |
| 1109 | CH3 |
|
|
Cl | H | 4.8 | 370.1 |
| 1110 | CH3 |
|
|
Cl | H | 5.7 | 448.0 |
| 1111 | CH3 |
|
|
Cl | H | 5.5 | 420.2 |
| 1112 | CH3 |
|
|
Cl | H | 5.6 | 404.1 |
| 1113 | CH3 |
|
|
Cl | H | 5.2 | 384.2 |
| 1114 | CH3 |
|
|
Cl | H | 5.2 | 384.2 |
| 1115 | CH3 |
|
|
Cl | H | 5.3 | 416.1 |
| 1116 | CH3 |
|
|
Cl | H | 5.1 | 384.2 |
| 1117 | CH3 |
|
|
Cl | H | 5.0 | 376.1 |
| 1118 | CH3 |
|
|
Cl | H | 4.6; 4.6 mixture of diastereomers |
376.1 |
| 1119 | CH3 |
|
|
Cl | H | 6.0 | 438.1 |
| 1120 | CH3 |
|
|
Cl | H | 5.1; 5.1 mixture of diastereomers |
388.1 |
| 1121 | CH3 |
|
|
Cl | H | 5.2; 5.4 mixture of diastereomers |
390.1 |
| 1122 | CH3 |
|
|
Cl | H | 5.4 | 396.2 |
| 1123 | CH3 |
|
|
Cl | H | 3.1 | 371.1 |
| 1124 | CH3 |
|
|
Cl | H | 3.6 | 400.2 |
| 1125 | CH3 |
|
|
Cl | H | 4.8; 5.0 mixture of diastereomers |
418.1 |
| 1126 | CH3 |
|
|
Cl | H | 6.1 | 412.2 |
| 1127 | CH3 |
|
|
Cl | H | 5.5; 5.5 mixture of diastereomers |
398.2 |
| 1128 | CH3 |
|
|
Cl | H | 4.5; 4.7 mixture of diastereomers |
428.2 |
| 1129 | CH3 |
|
|
Cl | H | 6.3 | 426.2 |
| 1130 | CH3 |
|
|
Cl | H | 4.2; 4.4 mixture of diastereomers |
430.2 |
| 1131 | CH3 |
|
|
Cl | H | 6.0 | 412.2 |
| 1132 | CH3 |
|
|
Cl | H | 3.7 | 386.1 |
| 1133 | CH3 |
|
|
Cl | H | 6.3 | 426.1 |
| 1134 | CH3 |
|
|
Cl | H | 5.6 | 426.1 |
| 1135 | CH3 |
|
|
Cl | H | 4.4 | 401.2 |
| 1136 | CH3 |
|
|
Cl | H | 5.1; 5.3 mixture of diastereomers |
414.2 |
| 1137 | CH3 |
|
|
Cl | H | 4.4 | 421.2 |
| 1138 | CH3 |
|
|
Cl | H | 5.6 | 398.2 |
| 1139 | CH3 |
|
|
Cl | H | 5.9 | 418.1 |
| 1140 | CH3 |
|
|
Cl | H | 5.9 | 418.1 |
| 1141 | CH3 |
|
|
Cl | H | 3.6 | 372.1 |
| 1142 | CH3 |
|
|
Cl | H | 4.0 | 402.2 |
| 1143 | CH3 |
|
|
Cl | H | 4.8 | 405.1 |
| 1144 | CH3 |
|
|
Cl | H | 4.3; 5.0 mixture of diastereomers |
409.2 |
| 1145 | CH3 |
|
|
Cl | H | 5.1; 5.2 mixture of diastereomers |
418.2 |
| 1146 | CH3 |
|
|
Cl | H | 5.0; 5.1 mixture of diastereomers |
390.1 |
| 1147 | CH3 |
|
|
Cl | H | 5.3; 5.4 mixture of diastereomers |
432.2 |
| 1148 | CH3 |
|
|
Cl | H | 5.2; 5.6 mixture of diastereomers |
410.1 |
| 1149 | CH3 |
|
|
Cl | H | 3.0 | 385.2 |
| 1150 | CH3 |
|
|
Cl | H | 5.6; 5.8 mixture of diastereomers |
428.2 |
| 1151 | CH3 |
|
|
Cl | H | 4.2 | 386.1 |
| 1152 | CH3 |
|
|
H | H | 3.6 | 352.1 |
| 1153 | CH3 |
|
|
Cl | H | 3.6; 4.2 mixture of diastereomers |
386.1 |
| 1154 | CH3 |
|
|
H | H | 2.8; 3.4 mixture of diastereomers |
352.1 |
| 1155 | CH3 |
|
|
Cl | H | 4.6 | 430.2 |
| 1156 | CH3 |
|
|
Cl | H | 4.6 | 430.1 |
| 1157 | CH3 |
|
|
H | H | 4.8 | 378.2 |
| 1158 | CH3 |
|
|
H | H | 4.4 | 384.1 |
| 1159 | CH3 |
|
|
H | H | 4.8 | 378.2 |
| 1160 | CH3 |
|
|
H | H | 4.4 | 384.1 |
| 1161 | CH3 |
|
|
H | H | 4.0 | 350.1 |
| 1162 | CH3 |
|
|
Cl | H | 4.4 | 416.1 |
| 1163 | CH3 |
|
|
H | H | 3.8 | 382.1 |
| 1164 | CH3 |
|
|
Br | H | 6.3 | 474 |
| 1165 | CH3 |
|
|
Cl | H | 5.6 | 388 |
| 1166 | CH3 |
|
|
Cl | H | 4.5 | 393.1 |
|
|
| Cpd | R1 | R3 | R4 | R6 | tR (min) |
MS (M+H)+ |
| 2001 | H |
|
|
Cl | 6.2 | 390.1 |
| 2002 |
|
|
|
Cl | 5.2 | 433.1 |
| 2003 |
|
|
|
Cl | 7.1 | 555.1 (M+Na)+ |
| 2004 | H |
|
|
Br | 5.9 | 434.0 |
| 2005 | H |
|
|
H | 5.5 | 356.1 |
| 2006 | H |
|
|
Br | 6.1 | 434.0 |
| 2007 |
|
|
|
Cl | 6.9 | 444.0 |
| 2008 |
|
|
|
Cl | 6.4 | 448.0 |
| 2009 | CH3 |
|
|
Cl | 6.5 | 404.1 |
| 2010 |
|
|
|
Cl | 6.7 | 418.1 |
| 2011 |
|
|
|
Cl | 5.4 | 480.9 |
|
|
| Cpd | R3 | R4 | R6 | tR (min) |
MS (M+H)+ |
| 3001 |
|
|
Br | 8.1 | 435.0 |
| 3002 |
|
|
Br | 7.8 | 433.0 |
| 3003 |
|
|
Br | 6.4 | 446.9 |
| 3004 |
|
|
Br | 6.5 | 448.0 |
bond a is a double bond and bond b is a single bond or
bond a is a single bond and bond b is a double bond;
X is O or NR1 when bond a is a single bond;
or X is N when bond a is a double bond;
R1 is H, (C1-6)alkyl, (C1-6)haloalkyl, (C3-7)cycloalkyl-(C1-6)alkyl-, aryl-(C1-6)alkyl- or Het-(C1-6)alkyl-;
wherein each of the (C1-6)alkyl, (C3-7)cycloalkyl-(C1-6)alkyl-, aryl-(C1-6)alkyl- and Het-(C1-6)alkyl- is optionally substituted with -OH, -O(C1-6)alkyl, -SH, -S(C1-6)alkyl, -NH2, -NH(C1-6)alkyl or -N((C1-6)alkyl)2;
R2 is H, (C1-6)alkyl or -O(C1-6)alkyl when bond b is a single bond; or R2 is O when bond b is a double bond;
R3 is (C1-6)alkyl, (C1-6)haloalkyl, (C2-6)alkenyl, (C2-6)alkynyl, (C3-7)cycloalkyl-(C1-6)alkyl-, aryl-(C1-6)alkyl-, Het-(C1-6)alkyl- or -Y-R31, and bond c is a single bond; or
R3 is (C1-6)alkylidene and bond c is a double bond;
wherein Y is O or S and R31 is (C1-6)alkyl, (C1-6)haloalkyl, (C2-6)alkenyl, (C2-6)alkynyl, (C3-7)cycloalkyl, aryl, (C3-7)cycloalkyl-(C1-6)alkyl-, aryl-(C1-6)alkyl- or Het-(C1-6)alkyl-;
wherein each of the (C1-6)alkylidene, (C1-6)alkyl, (C1-6)haloalkyl, (C2-6)alkenyl, (C2-6 )alkynyl, (C3-7)cydoalkyl-(C1-6)alkyl-, aryl-(C1-6)alkyl-, Het-(C1-6)alkyl- and -Y-R31 is optionally substituted with 1 to 3 substituents each independently selected from
(C1-6 )alkyl, halo, cyano, oxo and -O(C1-6)alkyl;
R4 is aryl or Het, wherein each of the aryl and Het is optionally substituted with 1 to 5 substituents each independently selected from halo, (C1-6)alkyl, (C2-6)alkenyl, (C1-6)haloalkyl, (C3-7)cycloalkyl, -OH, -O(C1-6)alkyl, -SH, -S(C1-6)alkyl, -NH2, -NH(C1-6 )alkyl and -N((C1-6)alkyl)2; wherein the (C1-6)alkyl is optionally substituted with hydroxy, cyano or oxo;
R6 and R7 are each independently selected from H, halo, (C1-6)alkyl and (C1-6)haloalkyl;
with the proviso that whenbond a is a single bond and bond b is a double bond; and
X is NR1; R1 is H; and R2 is O; and
R4 is unsubstituted phenyl; R6 is Cl; R7 is H; and
bond c is a double bond; then
R3 is not =CH-CH(CH3)2; and
wherein Het is a 4- to 7-membered saturated, unsaturated or aromatic heterocycle having 1 to 4 heteroatoms each independently selected from O, N and S, or a 7- to 14-membered saturated, unsaturated or aromatic heteropolycycle having wherever possible 1 to 5 heteroatoms, each independently selected from O, N and S;
or a salt or an ester thereof.
X is O or NR1;
R1 is H, (C1-6)alkyl, (C3-7)cycloalkyl-(C1-6)alkyl-, or Het-(C1-6)alkyl-;
wherein Het is a 4- to 7-membered heterocycle having 1 to 3 heteroatoms each independently selected from N, O and S;
and wherein each of the (C1-6)alkyl, (C3-7)cycloalkyl-(C1-6)alkyl-, and Het-(C1-6)alkyl- is optionally substituted with -OH, -O(C1-3)alkyl, -NH2, -NH(C1-3)alkyl or -N((C1-3)alkyl)2;
R2 is O;
R3 is (C1-6)alkyl or (C2-6)alkenyl; and
bond c is a single bond;
R4 is naphthyl or phenyl, wherein the phenyl is optionally substituted with 1 to 3 substituents each independently selected from halo, (C1-4)alkyl, (C2-4)alkenyl, (C1-4)haloalkyl, (C3-7)cycloalkyl, -OH, -O(C1-4)alkyl, -SH, -S(C1-4)alkyl, -NH2, -NH(C1-4 )alkyl and -N((C1-4)alkyl)2; wherein the (C1-4)alkyl is optionally substituted with hydroxy, cyano or oxo;
R6 is H, halo, (C1-3)alkyl or (C1-3)haloalkyl;
R7 is H or F;
or a salt or ester thereof.
R2 is (C1-6)alkyl or -O(C1-6)alkyl;
R3 is (C1-6)alkyl, (C2-6)alkenyl, -O-(C1-6)alkyl, -O-(C1-6)haloalkyl, -O-(C2-6)alkenyl, -O-(C2-6)alkynyl, -O-(C3-7)cycloalkyl, -O-aryl, (C3-7)cydoalkyl-(C1-6)alkyl-O-, aryl-(C1-6)alkyl-O- or Het-(C1-6)alkyl-O-;
wherein each of the -O-(C1-6)alkyl, -O-(C2-6)alkenyl, -O-(C2-6)alkynyl, -O-(C3-7)cycloalkyl, -O-aryl, (C3-7)cycloalkyl-(C1-6)alkyl-O-, aryl-(C1-6)alkyl-O- and Het-(C1-6)alkyl-O- is optionally substituted with 1 to 3 substituents each independently selected
from (C1-6)alkyl, halo, cyano, oxo and -O(C1-6)alkyl; and
bond c is a single bond; or
R3 is (C1-6)alkylidene and bond c is a double bond;
R4 is naphthyl or phenyl, wherein the phenyl is optionally substituted with 1 to 3 substituents each independently selected from halo, (C1-4)alkyl, (C2-4)alkenyl, (C1-4)haloalkyl, (C3-7)cycloalkyl, -OH, -O(C1-4)alkyl, -SH, -S(C1-4)alkyl, -NH2, -NH(C1-4)alkyl and -N((C1-4 )alkyl)2; wherein the (C1-4)alkyl is optionally substituted with hydroxy, cyano or oxo; or
R4 is Het optionally substituted with 1 to 5 substituents each independently selected from halo, (C1-6)alkyl, (C2-6)alkenyl, (C1-6)haloalkyl, (C3-7)cycloalkyl, -OH, -O(C1-6)alkyl, -SH, -S(C1-6 )alkyl, -NH2, -NH(C1-6)alkyl and -N((C1-6)alkyl)2; wherein the (C1-6)alkyl is optionally substituted with hydroxy, cyano or oxo;
R6 is H, halo, (C1-3)alkyl or (C1-3)haloalkyl; and
R7 is H or F;
or a salt or ester thereof.
| Cpd | R2 | R3 | R4 | R6 | R7 |
| 1001 | CH3 |
|
|
Br | H |
| 1002 | CH3 |
|
|
Br | H |
| 1003 | CH3 |
|
|
Br | H |
| 1004 | CH3 |
|
|
Br | H |
| 1005 | CH3 |
|
|
Cl | H |
| 1006 | CH3 |
|
|
Br | H |
| 1007 | CH3 |
|
|
Br | H |
| 1008 | CH3 |
|
|
Cl | H |
| 1009 | -OCH3 |
|
|
Br | H |
| 1010 | -CH(CH3)2 |
|
|
Br | H |
| 1011 | CH3 |
|
|
H | H |
| 1012 | CH3 |
|
|
Cl | H |
| 1013 | CH3 |
|
|
Cl | H |
| 1014 | CH3 |
|
|
Cl | H |
| 1015 | CH3 |
|
|
Cl | H |
| 1016 | CH3 |
|
|
Cl | H |
| 1017 | CH3 |
|
|
Cl | H |
| 1018 | CH3 |
|
|
Cl | H |
| 1019 | CH3 |
|
|
Cl | H |
| 1020 | CH3 |
|
|
Br | H |
| 1021 | CH3 |
|
|
Cl | H |
| 1022 | CH3 |
|
|
Br | H |
| 1023 | CH3 |
|
|
Br | H |
| 1024 | CH3 |
|
|
Cl | H |
| 1025 | CH3 |
|
|
Br | H |
| 1026 | CH3 |
|
|
Br | H |
| 1027 | CH3 |
|
|
Br | H |
| 1028 | CH3 |
|
|
Br | H |
| 1029 | CH3 |
|
|
Cl | H |
| 1030 | CH3 |
|
|
Cl | H |
| 1031 | CH3 |
|
|
Cl | H |
| 1032 | CH3 |
|
|
Br | H |
| 1033 | CH3 |
|
|
H | H |
| 1034 | CH3 |
|
|
Cl | H |
| 1035 | CH3 |
|
|
Br | H |
| 1036 | CH3 |
|
|
Cl | H |
| 1037 | CH3 |
|
|
Cl | H |
| 1038 | CH3 |
|
|
Br | H |
| 1039 | CH3 |
|
|
Br | H |
| 1040 | CH3 |
|
|
Br | H |
| 1041 | CH3 |
|
|
Br | H |
| 1042 | CH3 |
|
|
Br | H |
| 1043 | CH3 |
|
|
Br | H |
| 1044 | CH3 |
|
|
Br | H |
| 1045 | CH3 |
|
|
Br | H |
| 1046 | CH3 |
|
|
Br | H |
| 1047 | CH3 |
|
|
Br | H |
| 1048 | CH3 |
|
|
Br | H |
| 1049 | CH3 |
|
|
Br | H |
| 1050 | CH3 |
|
|
Br | H |
| 1051 | CH3 |
|
|
Br | H |
| 1052 | CH3 |
|
|
Br | H |
| 1053 | CH3 |
|
|
F | F |
| 1054 | CH3 |
|
|
Cl | H |
| 1055 | CH3 |
|
|
Br | H |
| 1056 | CH3 |
|
|
Cl | H |
| 1057 | CH3 |
|
|
Cl | H |
| 1058 | CH3 |
|
|
Cl | H |
| 1059 | CH3 |
|
|
Cl | H |
| 1060 | CH3 |
|
|
Cl | H |
| 1061 | CH3 |
|
|
Cl | H |
| 1062 | CH3 |
|
|
Cl | H |
| 1063 | CH3 |
|
|
Cl | H |
| 1064 | CH3 |
|
|
Cl | H |
| 1065 | CH3 |
|
|
Cl | H |
| 1066 | CH3 |
|
|
Cl | H |
| 1067 | CH3 |
|
|
Cl | H |
| 1068 | CH3 |
|
|
Cl | H |
| 1069 | CH3 |
|
|
Cl | H |
| 1070 | CH3 |
|
|
Cl | H |
| 1071 | CH3 |
|
|
Cl | H |
| 1072 | CH3 |
|
|
Cl | H |
| 1073 | CH3 |
|
|
Cl | H |
| 1074 | CH3 |
|
|
Cl | H |
| 1075 | CH3 |
|
|
Cl | H |
| 1076 | CH3 |
|
|
Cl | H |
| 1077 | CH3 |
|
|
Cl | H |
| 1078 | CH3 |
|
|
Cl | H |
| 1079 | CH3 |
|
|
Br | H |
| 1080 | CH3 |
|
|
Cl | H |
| 1081 | CH3 |
|
|
Cl | H |
| 1082 | CH3 |
|
|
H | H |
| 1083 | CH3 |
|
|
Cl | H |
| 1084 | CH3 |
|
|
Cl | H |
| 1085 | CH3 |
|
|
Cl | H |
| 1086 | CH3 |
|
|
Cl | H |
| 1087 | CH3 |
|
|
Cl | H |
| 1088 | CH3 |
|
|
Cl | H |
| 1089 | CH3 |
|
|
Cl | H |
| 1090 | CH3 |
|
|
Cl | H |
| 1091 | CH3 |
|
|
Cl | H |
| 1092 | CH3 |
|
|
Cl | H |
| 1093 | CH3 |
|
|
Cl | H |
| 1094 | CH3 |
|
|
Cl | H |
| 1095 | CH3 |
|
|
Cl | H |
| 1096 | CH3 |
|
|
Cl | H |
| 1097 | CH3 |
|
|
Cl | H |
| 1098 | CH3 |
|
|
Cl | H |
| 1099 | CH3 |
|
|
Cl | H |
| 1100 | CH3 |
|
|
Cl | H |
| 1101 | -CH2CH3 |
|
|
Cl | H |
| 1102 | CH3 |
|
|
Cl | H |
| 1103 | CH3 |
|
|
Cl | H |
| 1104 | CH3 |
|
|
Cl | H |
| 1105 | CH3 |
|
|
Cl | H |
| 1106 | CH3 |
|
|
Br | H |
| 1107 | CH3 |
|
|
Cl | H |
| 1108 | CH3 |
|
|
Cl | H |
| 1109 | CH3 |
|
|
Cl | H |
| 1110 | CH3 |
|
|
Cl | H |
| 1111 | CH3 |
|
|
Cl | H |
| 1112 | CH3 |
|
|
Cl | H |
| 1113 | CH3 |
|
|
Cl | H |
| 1114 | CH3 |
|
|
Cl | H |
| 1115 | CH3 |
|
|
Cl | H |
| 1116 | CH3 |
|
|
Cl | H |
| 1117 | CH3 |
|
|
Cl | H |
| 1118 | CH3 |
|
|
Cl | H |
| 1119 | CH3 |
|
|
Cl | H |
| 1120 | CH3 |
|
|
Cl | H |
| 1121 | CH3 |
|
|
Cl | H |
| 1122 | CH3 |
|
|
Cl | H |
| 1123 | CH3 |
|
|
Cl | H |
| 1124 | CH3 |
|
|
Cl | H |
| 1125 | CH3 |
|
|
Cl | H |
| 1126 | CH3 |
|
|
Cl | H |
| 1127 | CH3 |
|
|
Cl | H |
| 1128 | CH3 |
|
|
Cl | H |
| 1129 | CH3 |
|
|
Cl | H |
| 1130 | CH3 |
|
|
Cl | H |
| 1131 | CH3 |
|
|
Cl | H |
| 1132 | CH3 |
|
|
Cl | H |
| 1133 | CH3 |
|
|
Cl | H |
| 1134 | CH3 |
|
|
Cl | H |
| 1135 | CH3 |
|
|
Cl | H |
| 1136 | CH3 |
|
|
Cl | H |
| 1137 | CH3 |
|
|
Cl | H |
| 1138 | CH3 |
|
|
Cl | H |
| 1139 | CH3 |
|
|
Cl | H |
| 1140 | CH3 |
|
|
Cl | H |
| 1141 | CH3 |
|
|
Cl | H |
| 1142 | CH3 |
|
|
Cl | H |
| 1143 | CH3 |
|
|
Cl | H |
| 1144 | CH3 |
|
|
Cl | H |
| 1145 | CH3 |
|
|
Cl | H |
| 1146 | CH3 |
|
|
Cl | H |
| 1147 | CH3 |
|
|
Cl | H |
| 1148 | CH3 |
|
|
Cl | H |
| 1149 | CH3 |
|
|
Cl | H |
| 1150 | CH3 |
|
|
Cl | H |
| 1151 | CH3 |
|
|
Cl | H |
| 1152 | CH3 |
|
|
H | H |
| 1153 | CH3 |
|
|
Cl | H |
| 1154 | CH3 |
|
|
H | H |
| 1155 | CH3 |
|
|
Cl | H |
| 1156 | CH3 |
|
|
Cl | H |
| 1157 | CH3 |
|
|
H | H |
| 1158 | CH3 |
|
|
H | H |
| 1159 | CH3 |
|
|
H | H |
| 1160 | CH3 |
|
|
H | H |
| 1161 | CH3 |
|
|
H | H |
| 1162 | CH3 |
|
|
Cl | H |
| 1163 | CH3 |
|
|
H | H |
| 1164 | CH3 |
|
|
Br | H |
| 1165 | CH3 |
|
|
Cl | H |
| 1166 | CH3 |
|
|
Cl | H |
| Cpd | R1 | R3 | R4 | R6 |
| 2001 | H |
|
|
Cl |
| 2002 |
|
|
|
Cl |
| 2003 |
|
|
|
Cl |
| 2004 | H |
|
|
Br |
| 2005 | H |
|
|
H |
| 2006 | H |
|
|
Br |
| 2007 |
|
|
|
Cl |
| 2008 |
|
|
|
Cl |
| 2009 | CH3 |
|
|
Cl |
| 2010 |
|
|
|
Cl |
| 2011 |
|
|
|
Cl |
| Cpd | R3 | R4 | R6 |
| 3001 |
|
|
Br |
| 3002 |
|
|
Br |
| 3003 |
|
|
Br |
| 3004 |
|
|
Br |
Bindung a eine Doppelbindung darstellt und Bindung b eine Einfachbindung darstellt oder
Bindung a ist eine Einfachbindung und Bindung b ist eine Doppelbindung;
X ist O oder NR1, wenn Bindung a eine Einfachbindung ist;
oder X ist N, wenn Bindung a eine Doppelbindung ist;
R1 ist H, (C1-6)-Alkyl, (C1-6)-Haloalkyl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl-, Aryl-(C1-6)-Alkyl- oder Het- (C1-6)-Alkyl;
worin jedes der (C1-6)-Alkyl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl-, Aryl-(C1-6)-Alkyl- oder Het-(C1-6 )-Alkyl gegebenenfalls substituiert ist mit -OH, -O(C1-6)-Alkyl, -SH, -S(C1-6)-Alkyl, -NH2, -NH(C1-6)-Alkyl oder -N((C1-6)-Alkyl)2;
R2 ist H, (C1-6)-Alkyl oder -O-(C1-6)-Alkyl, wenn Bindung b eine Einfachbindung darstellt; oder R2 ist O, wenn Bindung b eine Doppelbindung darstellt;
R3 ist (C1-6)-Alkyl, (C1-6)-Haloalkyl, (C2-6)-Alkenyl, (C2-6)-Alkinyl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl-, Aryl-(C1-6)-Alkyl-, Het-(C1-6)-Alkyl oder -Y-R31, und Bindung c ist eine Einfachbindung; oder;
R3 ist (C1-6)-Alkyliden und Bindung c ist eine Doppelbindung;
worin Y O oder S darstellt und R31 ist (C1-6)-Alkyl, (C1-6)-Haloalkyl, (C2-6)-Alkenyl, (C2-6)- Alkinyl, (C3-7)-Cycloalkyl, Aryl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl-, Aryl-(C1-6)-Alkyl- oder Het- (C1-6)-Alkyl-;
worin jedes (C1-6)-Alkyliden, (C1-6)-Alkyl, (C1-6)-Haloalkyl, (C2-6)-Alkenyl, (C2-6)-Alkinyl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl-, Aryl-(C1-6)-Alkyl-, Het-(C1-6)-Alkyl oder -Y-R31 gegebenen- falls substituiert ist mit 1 bis 3 Substituenten, jeweils unabhängig ausgewählt
aus (C1-6)- Alkyl, Halo, Cyano, Oxo und -O(C1-6)-Alkyl;
R4 ist Aryl oder Het, worin jedes Aryl und Het gegebenenfalls substituiert ist mit 1 bis 5 Substituenten, jeweils unabhängig ausgewählt aus Halo, (C1-6)-Alkyl, (C2-6)-Alkenyl, (C1-6)-Haloalkyl, (C3-7)-Cycloalkyl, -OH, -O(C1-6)-Alkyl, -SH, -S(C1-6)-Alkyl, -NH2, -NH(C1-6 )-Alkyl und -N((C1-6)-Alkyl)2; wobei das (C1-6)-Alkyl gegebenenfalls substituiert ist mit Hydroxy, Cyano oder Oxo;
R6 und R7 sind jeweils unabhängig ausgewählt aus H, Halo, (C1-6)-Alkyl und (C1-6)-Haloalkyl;
mit der Maßgabe, dass, wenn
Bindung a eine Einfachbindung darstellt und Bindung b eine Doppelbindung darstellt;
und
X NR1 ist; R1 H ist; und R2 O ist; und
R4 unsubstituiertes Phenyl darstellt; R6 CI ist; R7 H ist; und
Bindung c eine Doppelbindung darstellt; dann
ist R3 nicht =CH-CH(CH3)2; und
wobei Het ein 4- bis 7-gliedriger gesättigter, ungesättigter oder aromatischer Heterocyclus ist mit 1 bis 4 Heteroatomen, jeweils unabhängig ausgewählt aus O, N und S, oder ein 7- bis 14-gliedriger gesättigter, ungesättigter oder aromatischer Heteropolycyclus ist, mit, wo immer möglich, 1 bis 5 Heteroatomen, jeweils unabhängig ausgewählt aus O, N und S;
oder ein Salz oder ein Ester hiervon.X O oder NR1 darstellt;
R1 ist H, (C1-6)-Alkyl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl- oder Het-(C1-6)-Alkyl-;
worin Het ein 4- bis 7-gliedriger Heterocyclus ist mit 1 bis 3 Heteroatomen, unabhängig ausgewählt aus N, O und S;
und worin jedes der (C1-6)-Alkyl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl- und Het-(C1-6)-Alkyl-gegebenenfalls substituiert ist mit -OH, -O(C1-3)-Alkyl, -NH2, -NH(C1-3)-Alkyl oder -N((C1-3)-Alkyl)2;
R2 ist O;
R3 ist (C1-6)-Alkyl oder (C2-6)-Alkenyl; und
Bindung c ist eine Einfachbindung;
R4 ist Naphthyl oder Phenyl, wobei das Phenyl gegebenenfalls substituiert ist mit 1 bis 3 Substituenten, jeweils unabhängig ausgewählt aus Halo, (C1-4)-Alkyl, (C2-4)-Alkenyl, (C1-4)-Haloalkyl, (C3-7)-Cycloalkyl, -OH, -O(C1-4)-Alkyl, -SH, -S(C1-4)-Alkyl, -NH2, -NH(C1-4)-Alkyl und -N((C1-4)-Alkyl)2; wobei das (C1-4)-Alkyl gegebenenfalls substituiert ist mit Hydroxy, Cyano oder Oxo;
R6 ist H, Halo, (C1-3)-Alkyl und (C1-3)-Haloalkyl;
R7 ist H oder F;
oder ein Salz oder ein Ester hiervon.
R2 (C1-6)-Alkyl oder -O(C1-6)-Alkyl ist;
R3 ist (C1-6)-Alkyl, (C2-6)-Alkenyl, -O-(C1-6)-Alkyl, -O-(C1-6)-Haloalkyl, -O-(C2-6)-Alkenyl, -O-(C2-6)-Alkinyl, -O-(C3-7)-Cycloalkyl, -O-Aryl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl-O-, Aryl-(C1-6)-Alkyl-O-oder Het-(C1-6)-Alkyl-O-;
wobei jedes -O-(C1-6)-Alkyl, -O-(C2-6)-Alkenyl, -O-(C2-6)-Alkinyl, -O-(C3-7)-Cycloalkyl, -O-Aryl, (C3-7)-Cycloalkyl-(C1-6)-Alkyl-O-, Aryl-(C1-6)-Alkyl-O- und Het-(C1-6)-Alkyl-O-gegebenenfalls substituiert ist mit 1 bis 3 Substituenten, jeweils unabhängig
ausgewählt aus (C1-6)-Alkyl, Halo, Cyano, Oxo und -O(C1-6)-Alkyl; und
Bindung c ist eine Einfachbindung; oder
R3 ist (C1-6)-Alkyliden und Bindung c ist eine Doppelbindung;
R4 ist Naphthyl oder Phenyl, worin das Phenyl gegebenenfalls substituiert ist mit 1 bis 3 Substituenten, jeweils unabhängig ausgewählt aus Halo, (C1-4)-Alkyl, (C2-4)-Alkenyl, (C1-4)-Haloalkyl, (C3-7)-Cycloalkyl, -OH, -O(C1-4)-Alkyl, -SH, -S(C1-4)-Alkyl, -NH2, -NH(C1-4)-Alkyl und -N((C1-4)-Alkyl)2; wobei das (C1-4)-Alkyl gegebenenfalls substituiert ist mit Hydroxy, Cyano oder Oxo; oder
R4 ist Het, gegebenenfalls substituiert mit 1 bis 5 Substituenten, jeweils unabhängig ausgewählt aus Halo, (C1-6)-Alkyl, (C2-6)-Alkenyl, (C1-6)-Haloalkyl, (C3-7)-Cycloalkyl, -OH, -O(C1-6)-Alkyl, -SH, -S(C1-6)-Alkyl, -NH2, -NH(C1-6)-Alkyl und -N((C1-6)-Alkyl)2; wobei das (C1-6)-Alkyl gegebenenfalls substituiert ist mit Hydroxy, Cyano oder Oxo;
R6 ist H, Halo, (C1-3)-Alkyl oder (C1-3)-Haloalkyl; und
R7 ist H oder F;
oder ein Salz oder ein Ester hiervon.
| Verb. | R2 | R3 | R4 | R6 | R7 |
| 1001 | CH3 |
|
|
Br | H |
| 1002 | CH3 |
|
|
Br | H |
| 1003 | CH3 |
|
|
Br | H |
| 1004 | CH3 |
|
|
Br | H |
| 1005 | CH3 |
|
|
Cl | H |
| 1006 | CH3 |
|
|
Br | H |
| 1007 | CH3 |
|
|
Br | H |
| 1008 | CH3 |
|
|
Cl | H |
| 1009 | -OCH3 |
|
|
Br | H |
| 1010 | -CH(CH3)2 |
|
|
Br | H |
| 1011 | CH3 |
|
|
H | H |
| 1012 | CH3 |
|
|
Cl | H |
| 1013 | CH3 |
|
|
Cl | H |
| 1014 | CH3 |
|
|
Cl | H |
| 1015 | CH3 |
|
|
Cl | H |
| 1016 | CH3 |
|
|
Cl | H |
| 1017 | CH3 |
|
|
Cl | H |
| 1018 | CH3 |
|
|
Cl | H |
| 1019 | CH3 |
|
|
Cl | H |
| 1020 | CH3 |
|
|
Br | H |
| 1021 | CH3 |
|
|
Cl | H |
| 1022 | CH3 |
|
|
Br | H |
| 1023 | CH3 |
|
|
Br | H |
| 1024 | CH3 |
|
|
Cl | H |
| 1025 | CH3 |
|
|
Br | H |
| 1026 | CH3 |
|
|
Br | H |
| 1027 | CH3 |
|
|
Br | H |
| 1028 | CH3 |
|
|
Br | H |
| 1029 | CH3 |
|
|
Cl | H |
| 1030 | CH3 |
|
|
Cl | H |
| 1031 | CH3 |
|
|
Cl | H |
| 1032 | CH3 |
|
|
Br | H |
| 1033 | CH3 |
|
|
H | H |
| 1034 | CH3 |
|
|
Cl | H |
| 1035 | CH3 |
|
|
Br | H |
| 1036 | CH3 |
|
|
Cl | H |
| 1037 | CH3 |
|
|
Cl | H |
| 1038 | CH3 |
|
|
Br | H |
| 1039 | CH3 |
|
|
Br | H |
| 1040 | CH3 |
|
|
Br | H |
| 1041 | CH3 |
|
|
Br | H |
| 1042 | CH3 |
|
|
Br | H |
| 1043 | CH3 |
|
|
Br | H |
| 1044 | CH3 |
|
|
Br | H |
| 1045 | CH3 |
|
|
Br | H |
| 1046 | CH3 |
|
|
Br | H |
| 1047 | CH3 |
|
|
Br | H |
| 1048 | CH3 |
|
|
Br | H |
| 1049 | CH3 |
|
|
Br | H |
| 1050 | CH3 |
|
|
Br | H |
| 1051 | CH3 |
|
|
Br | H |
| 1052 | CH3 |
|
|
Br | H |
| 1053 | CH3 |
|
|
F | F |
| 1054 | CH3 |
|
|
Cl | H |
| 1055 | CH3 |
|
|
Br | H |
| 1056 | CH3 |
|
|
Cl | H |
| 1057 | CH3 |
|
|
Cl | H |
| 1058 | CH3 |
|
|
Cl | H |
| 1059 | CH3 |
|
|
Cl | H |
| 1060 | CH3 |
|
|
Cl | H |
| 1061 | CH3 |
|
|
Cl | H |
| 1062 | CH3 |
|
|
Cl | H |
| 1063 | CH3 |
|
|
Cl | H |
| 1064 | CH3 |
|
|
Cl | H |
| 1065 | CH3 |
|
|
Cl | H |
| 1066 | CH3 |
|
|
Cl | H |
| 1067 | CH3 |
|
|
Cl | H |
| 1068 | CH3 |
|
|
Cl | H |
| 1069 | CH3 |
|
|
Cl | H |
| 1070 | CH3 |
|
|
Cl | H |
| 1071 | CH3 |
|
|
Cl | H |
| 1072 | CH3 |
|
|
Cl | H |
| 1073 | CH3 |
|
|
Cl | H |
| 1074 | CH3 |
|
|
Cl | H |
| 1075 | CH3 |
|
|
Cl | H |
| 1076 | CH3 |
|
|
Cl | H |
| 1077 | CH3 |
|
|
Cl | H |
| 1078 | CH3 |
|
|
Cl | H |
| 1079 | CH3 |
|
|
Br | H |
| 1080 | CH3 |
|
|
Cl | H |
| 1081 | CH3 |
|
|
Cl | H |
| 1082 | CH3 |
|
|
H | H |
| 1083 | CH3 |
|
|
Cl | H |
| 1084 | CH3 |
|
|
Cl | H |
| 1085 | CH3 |
|
|
Cl | H |
| 1086 | CH3 |
|
|
Cl | H |
| 1087 | CH3 |
|
|
Cl | H |
| 1088 | CH3 |
|
|
Cl | H |
| 1089 | CH3 |
|
|
Cl | H |
| 1090 | CH3 |
|
|
Cl | H |
| 1091 | CH3 |
|
|
Cl | H |
| 1092 | CH3 |
|
|
Cl | H |
| 1093 | CH3 |
|
|
Cl | H |
| 1094 | CH3 |
|
|
Cl | H |
| 1095 | CH3 |
|
|
Cl | H |
| 1096 | CH3 |
|
|
Cl | H |
| 1097 | CH3 |
|
|
Cl | H |
| 1098 | CH3 |
|
|
Cl | H |
| 1099 | CH3 |
|
|
Cl | H |
| 1100 | CH3 |
|
|
Cl | H |
| 1101 | -CH2CH3 |
|
|
Cl | H |
| 1102 | CH3 |
|
|
Cl | H |
| 1103 | CH3 |
|
|
Cl | H |
| 1104 | CH3 |
|
|
Cl | H |
| 1105 | CH3 |
|
|
Cl | H |
| 1106 | CH3 |
|
|
Br | H |
| 1107 | CH3 |
|
|
Cl | H |
| 1108 | CH3 |
|
|
Cl | H |
| 1109 | CH3 |
|
|
Cl | H |
| 1110 | CH3 |
|
|
Cl | H |
| 1111 | CH3 |
|
|
Cl | H |
| 1112 | CH3 |
|
|
Cl | H |
| 1113 | CH3 |
|
|
Cl | H |
| 1114 | CH3 |
|
|
Cl | H |
| 1115 | CH3 |
|
|
Cl | H |
| 1116 | CH3 |
|
|
Cl | H |
| 1117 | CH3 |
|
|
Cl | H |
| 1118 | CH3 |
|
|
Cl | H |
| 1119 | CH3 |
|
|
Cl | H |
| 1120 | CH3 |
|
|
Cl | H |
| 1121 | CH3 |
|
|
Cl | H |
| 1122 | CH3 |
|
|
Cl | H |
| 1123 | CH3 |
|
|
Cl | H |
| 1124 | CH3 |
|
|
Cl | H |
| 1125 | CH3 |
|
|
Cl | H |
| 1126 | CH3 |
|
|
Cl | H |
| 1127 | CH3 |
|
|
Cl | H |
| 1128 | CH3 |
|
|
Cl | H |
| 1129 | CH3 |
|
|
Cl | H |
| 1130 | CH3 |
|
|
Cl | H |
| 1131 | CH3 |
|
|
Cl | H |
| 1132 | CH3 |
|
|
Cl | H |
| 1133 | CH3 |
|
|
Cl | H |
| 1134 | CH3 |
|
|
Cl | H |
| 1135 | CH3 |
|
|
Cl | H |
| 1136 | CH3 |
|
|
Cl | H |
| 1137 | CH3 |
|
|
Cl | H |
| 1138 | CH3 |
|
|
Cl | H |
| 1139 | CH3 |
|
|
Cl | H |
| 1140 | CH3 |
|
|
Cl | H |
| 1141 | CH3 |
|
|
Cl | H |
| 1142 | CH3 |
|
|
Cl | H |
| 1143 | CH3 |
|
|
Cl | H |
| 1144 | CH3 |
|
|
Cl | H |
| 1145 | CH3 |
|
|
Cl | H |
| 1146 | CH3 |
|
|
Cl | H |
| 1147 | CH3 |
|
|
Cl | H |
| 1148 | CH3 |
|
|
Cl | H |
| 1149 | CH3 |
|
|
Cl | H |
| 1150 | CH3 |
|
|
Cl | H |
| 1151 | CH3 |
|
|
Cl | H |
| 1152 | CH3 |
|
|
H | H |
| 1153 | CH3 |
|
|
Cl | H |
| 1154 | CH3 |
|
|
H | H |
| 1155 | CH3 |
|
|
Cl | H |
| 1156 | CH3 |
|
|
Cl | H |
| 1157 | CH3 |
|
|
H | H |
| 1158 | CH3 |
|
|
H | H |
| 1159 | CH3 |
|
|
H | H |
| 1160 | CH3 |
|
|
H | H |
| 1161 | CH3 |
|
|
H | H |
| 1162 | CH3 |
|
|
Cl | H |
| 1163 | CH3 |
|
|
H | H |
| 1164 | CH3 |
|
|
Br | H |
| 1165 | CH3 |
|
|
Cl | H |
| 1166 | CH3 |
|
|
Cl | H |
| Verb. | R1 | R2 | R4 | R6 |
| 2001 | H |
|
|
Cl |
| 2002 |
|
|
|
Cl |
| 2003 |
|
|
|
Cl |
| 2004 | H |
|
|
Br |
| 2005 | H |
|
|
H |
| 2006 | H |
|
|
Br |
| 2007 |
|
|
|
Cl |
| 2008 |
|
|
|
Cl |
| 2009 | CH3 |
|
|
Cl |
| 2010 |
|
|
|
Cl |
| 2011 |
|
|
|
Cl |
| Verb. | R3 | R4 | R6 |
| 3001 |
|
|
Br |
| 3002 |
|
|
Br |
| 3003 |
|
|
Br |
| 3004 |
|
|
Br |
la liaison a est une double liaison et la liaison b est une simple liaison ou
la liaison a est une simple liaison et la liaison b est une double liaison ;
X est O ou NR1 quand la liaison a est une simple liaison ;
ou X est N quand la liaison a est une double liaison ;
R1 est H, (C1-6)alkyle, (C1-6)haloalkyle, (C3-7)cycloalkyl-(C1-6)alkyle, aryl-(C1-6)-alkyle ou Het-(C1-6)alkyle ;
où chacun des (C1-6)alkyle, (C3-7)cycloalkyl-(C1-6)alkyle, aryl-(C1-6)alkyle et Het-(C1-6)alkyleest éventuellement substitué avec -OH, -O(C1-6)alkyle, -SH, -S(C1-6)-alkyle, -NH2-, -NH(C1-6)alkyle ou -N((C1-6)alkyle)2 ;
R2 est H, (C1-6)alkyle ou -O(C1-6)alkyle quand la liaison b est une simple liaison ; ou R2 est O quand la liaison b est une double liaison ;
R3 est (C1-6)alkyle, (C1-6)haloalkyle, (C2-6)alcényle, (C2-6)alcynyle, (C3-7)-cycloalkyl-(C1-6)alkyle, aryl-(C1-6)alkyle, Het-(C1-6)alkyle ou -Y-R31, et la liaison c est une simple liaison ; ou
R3 est (C1-6)alkylidène et la liaison c est une double liaison ;
où Y est O ou S et R31 est (C1-6)alkyle, (C1-6)haloalkyle, (C2-6)alcényle, (C2-6)-alcynyle, (C3-7)cycloalkyle, aryle, (C3-7)cycloalkyl-(C1-6)alkyle, aryl-(C1-6)alkyle ou Het-(C1-6)alkyle ;
où chacun des (C1-6)alkylidène, (C1-6)alkyle, (C1-6)haloalkyle, (C2-6)alcényle, (C2-6)alcynyle, (C3-7)cycloalkyl-(C1-6)alkyle, aryl-(C1-6)alkyle, Het-(C1-6)alkyle et -Y-R31 est éventuellement substitué avec 1 à 3 substituants choisis chacun indépendamment parmi (C1-6)alkyle, halo, cyano, oxo et -O(C1-6)alkyle ;
R4 est aryle ou Het, où chacun des aryle et Het est éventuellement substitué avec 1 à 5 substituants choisis chacun indépendamment parmi halo, (C1-6)alkyle, (C2-6)-alcényle, (C1-6)haloalkyle, (C3-7)cycloalkyle, -OH, -O(C1-6)alkyle, -SH, -S(C1-6)-alkyle, -NH2, -NH(C1-6)alkyle et -N((C1-6)alkyleh; où le (C1-6)alkyle est éventuellement substitué avec hydroxy, cyano ou oxo ;
R6 et R7 so nt choisis chacun indépendamment parmi H, halo, (C1-6)alkyle et (C1-6)haloalkyle ;
avec la condition que quand
la liaison a est une simple liaison et la liaison b est une double liaison ; et
X est NR1 ; R1 est H ; et R2 est O ; et
R4 est phényle non substitué ; R6 est Cl ; R7 est H ; et
la liaison c est une double liaison ; alors
R3 n'est pas =CH-CH(CH3)2 ; et
où Het est un hétérocycle saturé, insaturé ou aromatique à 4 à 7 chaînons ayant 1 à 4 hétéroatomes choisis chacun indépendamment parmi O, N et S, ou un hétéropolycycle saturé, insaturé ou aromatique à 7 à 14 chaînons ayant quand cela est possible 1 à 5 hétéroatomes, choisis chacun indépendamment parmi O, N et S ; ou sel ou ester de celui-ci.
X est O ou NR1 ;
R1 est H, (C1-6)alkyle, (C3-7)cycloalkyl-(C1-6)alkyle ou Het-(C1-6)alkyle ;
où Het est un hétérocycle à 4 à 7 chaînons ayant 1 à 3 hétéroatomes choisis chacun indépendamment parmi N, O et S ;
et où chacun des (C1-6)alkyle, (C3-7)cycloalkyl-(C1-6)alkyle et Het-(C1-6)alkyle est éventuellement substitué avec -OH, -O(C1-3)alkyle, -NH2, -NH(C1-3)alkyle ou -N((C1-3)alkyle)2 ;
R2 est O ;
R3 est (C1-6)alkyle ou (C2-6)alcényle ; et
la liaison c est une simple liaison ;
R4 est naphtyle ou phényle, où le phényle est éventuellement substitué avec 1 à 3 substituants choisis chacun indépendamment parmi halo, (C1-4)alkyle, (C2-4)-alcényle, (C1-4)haloalkyle, (C3-7)cycloalkyle, -OH, -O(C1-4)alkyle, -SH, -S(C1-4)-alkyle, -NH2, -NH(C1-4)alkyle et -N((C1-4)alkyle)2; où le (C1-4)alkyle est éventuellement substitué avec hydroxy, cyano ou oxo ;
R6 est H, halo, (C1-3)alkyle ou (C1-3)haloalkyle ;
R7 est H ou F ;
ou sel ou ester de celui-ci.
R2 est (C1-6)alkyle ou -O(C1-6)alkyle ;
R3 est (C1-6)alkyle, (C2-6)alcényle, -O-(C1-6)alkyle, -O-(C1-6)haloalkyle, -O-(C2-6)-alcényle, -O-(C2-6)alcynyle, -O-(C3-7)cycloalkyle, -O-aryle, (C3-7)cycloalkyl-(C1-6)-alkyl-O-, aryl-(C1-6)alkyl-O- ou Het-(C1-6)alkyl-O- ;
où chacun des -O-(C1-6)alkyle, -O-(C2-6)alcényle, -O-(C2-6)alcynyle, -O-(C3-7)-cycloalkyle, -O-aryle, (C3-7)cycloalkyl-(C1-6)alkyl-O-, aryl-(C1-6)alkyl-O- et Het-(C1-6)alkyl-O- est éventuellement substitué avec 1 à 3 substituants choisis chacun indépendamment parmi (C1-6)alkyle, halo, cyano, oxo et -O(C1-6)alkyle ; et
la liaison c est une simple liaison ; ou
R3 est (C1-6)alkylidène et la liaison c est une double liaison ;
R4 est naphtyle ou phényle, où le phényle est éventuellement substitué avec 1 à 3 substituants choisis chacun indépendamment parmi halo, (C1-4)alkyle, (C2-4)-alcényle, (C1-4)haloalkyle, (C3-7)cycloalkyle, -OH, -O(C1-4)alkyle, -SH, -S(C1-4)-alkyle, -NH2, -NH(C1-4)alkyle et -N((C1-4)alkyle)2 ; où le (C1-4)alkyle est éventuellement substitué avec hydroxy, cyano ou oxo ; ou
R4 est Het éventuellement substitué avec 1 à 5 substituants choisis chacun indépendamment parmi halo, (C1-6)alkyle, (C2-6)alcényle, (C1-6)haloalkyle, (C3-7)-cycloalkyle, -OH, -O(C1-6)alkyle, -SH, -S(C1-6)alkyle, -NH2, -NH(C1-6)alkyle et -N((C1-6)alkyle)2 ; où le (C1-6)alkyle est éventuellement substitué avec hydroxy, cyano ou oxo ;
R6 est H, halo, (C1-3)alkyle et (C1-3)haloalkyle ; et
R7 est H ou F ;
ou sel ou ester de celui-ci.
| Comp. | R 2 | R3 | R4 | R6 | R7 |
| 1001 | CH3 |
|
|
Br | H |
| 1002 | CH3 |
|
|
Br | H |
| 1003 | CH3 |
|
|
Br | H |
| 1004 | CH3 |
|
|
Br | H |
| 1005 | CH3 |
|
|
Cl | H |
| 1006 | CH3 |
|
|
Br | H |
| 1007 | CH3 |
|
|
Br | H |
| 1008 | CH3 |
|
|
Cl | H |
| 1009 | -OCH3 |
|
|
Br | H |
| 1010 | -CH(CH3)2 |
|
|
Br | H |
| 1011 | CH3 |
|
|
H | H |
| 1012 | CH3 |
|
|
Cl | H |
| 1013 | CH3 |
|
|
Cl | H |
| 1014 | CH3 |
|
|
Cl | H |
| 1015 | CH3 |
|
|
Cl | H |
| 1016 | CH3 |
|
|
Cl | H |
| 1017 | CH3 |
|
|
Cl | H |
| 1018 | CH3 |
|
|
Cl | H |
| 1019 | CH3 |
|
|
Cl | H |
| 1020 | CH3 |
|
|
Br | H |
| 1021 | CH3 |
|
|
Cl | H |
| 1022 | CH3 |
|
|
Br | H |
| 1023 | CH3 |
|
|
Br | H |
| 1024 | CH3 |
|
|
Cl | H |
| 1025 | CH3 |
|
|
Br | H |
| 1026 | CH3 |
|
|
Br | H |
| 1027 | CH3 |
|
|
Br | H |
| 1028 | CH3 |
|
|
Br | H |
| 1029 | CH3 |
|
|
Cl | H |
| 1030 | CH3 |
|
|
Cl | H |
| 1031 | CH3 |
|
|
Cl | H |
| 1032 | CH3 |
|
|
Br | H |
| 1033 | CH3 |
|
|
H | H |
| 1034 | CH3 |
|
|
Cl | H |
| 1035 | CH3 |
|
|
Br | H |
| 1036 | CH3 |
|
|
Cl | H |
| 1037 | CH3 |
|
|
Cl | H |
| 1038 | CH3 |
|
|
Br | H |
| 1039 | CH3 |
|
|
Br | H |
| 1040 | CH3 |
|
|
Br | H |
| 1041 | CH3 |
|
|
Br | H |
| 1042 | CH3 |
|
|
Br | H |
| 1043 | CH3 |
|
|
Br | H |
| 1044 | CH3 |
|
|
Br | H |
| 1045 | CH3 |
|
|
Br | H |
| 1046 | CH3 |
|
|
Br | H |
| 1047 | CH3 |
|
|
Br | H |
| 1048 | CH3 |
|
|
Br | H |
| 1049 | CH3 |
|
|
Br | H |
| 1050 | CH3 |
|
|
Br | H |
| 1051 | CH3 |
|
|
Br | H |
| 1052 | CH3 |
|
|
Br | H |
| 1053 | CH3 |
|
|
F | F |
| 1054 | CH3 |
|
|
Cl | H |
| 1055 | CH3 |
|
|
Br | H |
| 1056 | CH3 |
|
|
Cl | H |
| 1037 | CH3 |
|
|
Cl | H |
| 1058 | CH3 |
|
|
Cl | H |
| 1059 | CH3 |
|
|
Cl | H |
| 1060 | CH3 |
|
|
Cl | H |
| 1061 | CH3 |
|
|
Cl | H |
| 1062 | CH3 |
|
|
Cl | H |
| 1063 | CH3 |
|
|
Cl | H |
| 1064 | CH3 |
|
|
Cl | H |
| 1065 | CH3 |
|
|
Cl | H |
| 1066 | CH3 |
|
|
Cl | H |
| 1067 | CH3 |
|
|
Cl | H |
| 1068 | CH3 |
|
|
Cl | H |
| 1069 | CH3 |
|
|
Cl | H |
| 1070 | CH3 |
|
|
Cl | H |
| 1071 | CH3 |
|
|
Cl | H |
| 1072 | CH3 |
|
|
Cl | H |
| 1073 | CH3 |
|
|
Cl | H |
| 1074 | CH3 |
|
|
Cl | H |
| 1075 | CH3 |
|
|
Cl | H |
| 1076 | CH3 |
|
|
Cl | H |
| 1077 | CH3 |
|
|
Cl | H |
| 1078 | CH3 |
|
|
Cl | H |
| 1079 | CH3 |
|
|
Br | H |
| 1080 | CH3 |
|
|
Cl | H |
| 1081 | CH3 |
|
|
Cl | H |
| 1082 | CH3 |
|
|
H | H |
| 1083 | CH3 |
|
|
Cl | H |
| 1084 | CH3 |
|
|
Cl | H |
| 1085 | CH3 |
|
|
Cl | H |
| 1086 | CH3 |
|
|
Cl | H |
| 1087 | CH3 |
|
|
Cl | H |
| 1088 | CH3 |
|
|
Cl | H |
| 1089 | CH3 |
|
|
Cl | H |
| 1090 | CH3 |
|
|
Cl | H |
| 1091 | CH3 |
|
|
Cl | H |
| 1092 | CH3 |
|
|
Cl | H |
| 1093 | CH3 |
|
|
Cl | H |
| 1094 | CH3 |
|
|
Cl | H |
| 1095 | CH3 |
|
|
Cl | H |
| 1096 | CH3 |
|
|
Cl | H |
| 1097 | CH3 |
|
|
Cl | H |
| 1098 | CH3 |
|
|
Cl | H |
| 1099 | CH3 |
|
|
Cl | H |
| 1100 | CH3 |
|
|
Cl | H |
| 1101 | -CH2CH3 |
|
|
Cl | H |
| 1102 | CH3 |
|
|
Cl | H |
| 1103 | CH3 |
|
|
Cl | H |
| 1104 | CH3 |
|
|
Cl | H |
| 1105 | CH3 |
|
|
Cl | H |
| 1106 | CH3 |
|
|
Br | H |
| 1107 | CH3 |
|
|
Cl | H |
| 1108 | CH3 |
|
|
Cl | H |
| 1109 | CH3 |
|
|
Cl | H |
| 1110 | CH3 |
|
|
Cl | H |
| 1111 | CH3 |
|
|
Cl | H |
| 1112 | CH3 |
|
|
Cl | H |
| 1113 | CH3 |
|
|
Cl | H |
| 1114 | CH3 |
|
|
Cl | H |
| 1115 | CH3 |
|
|
Cl | H |
| 1116 | CH3 |
|
|
Cl | H |
| 1117 | CH3 |
|
|
Cl | H |
| 1118 | CH3 |
|
|
Cl | H |
| 1119 | CH3 |
|
|
Cl | H |
| 1120 | CH3 |
|
|
Cl | H |
| 1121 | CH3 |
|
|
Cl | H |
| 1122 | CH3 |
|
|
Cl | H |
| 1123 | CH3 |
|
|
Cl | H |
| 1124 | CH3 |
|
|
Cl | H |
| 1125 | CH3 |
|
|
Cl | H |
| 1126 | CH3 |
|
|
Cl | H |
| 1127 | CH3 |
|
|
Cl | H |
| 1128 | CH3 |
|
|
Cl | H |
| 1129 | CH3 |
|
|
Cl | H |
| 1130 | CH3 |
|
|
Cl | H |
| 1131 | CH3 |
|
|
Cl | H |
| 1132 | CH3 |
|
|
Cl | H |
| 1133 | CH3 |
|
|
Cl | H |
| 1134 | CH3 |
|
|
Cl | H |
| 1135 | CH3 |
|
|
Cl | H |
| 1136 | CH3 |
|
|
Cl | H |
| 1137 | CH3 |
|
|
Cl | H |
| 1138 | CH3 |
|
|
Cl | H |
| 1139 | CH3 |
|
|
Cl | H |
| 1140 | CH3 |
|
|
Cl | H |
| 1141 | CH3 |
|
|
Cl | H |
| 1142 | CH3 |
|
|
Cl | H |
| 1143 | CH3 |
|
|
Cl | H |
| 1144 | CH3 |
|
|
Cl | H |
| 1145 | CH3 |
|
|
Cl | H |
| 1146 | CH3 |
|
|
Cl | H |
| 1147 | CH3 |
|
|
Cl | H |
| 1148 | CH3 |
|
|
Cl | H |
| 1149 | CH3 |
|
|
Cl | H |
| 1150 | CH3 |
|
|
Cl | H |
| 1151 | CH3 |
|
|
Cl | H |
| 1152 | CH3 |
|
|
H | H |
| 1153 | CH3 |
|
|
Cl | H |
| 1154 | CH3 |
|
|
H | H |
| 1155 | CH3 |
|
|
Cl | H |
| 1156 | CH3 |
|
|
Cl | H |
| 1157 | CH3 |
|
|
H | H |
| 1158 | CH3 |
|
|
H | H |
| 1159 | CH3 |
|
|
H | H |
| 1160 | CH3 |
|
|
H | H |
| 1161 | CH3 |
|
|
H | H |
| 1162 | CH3 |
|
|
Cl | H |
| 1163 | CH3 |
|
|
H | H |
| 1164 | CH3 |
|
|
Br | H |
| 1165 | CH3 |
|
|
Cl | H |
| 1166 | CH3 |
|
|
Cl | H |
| Comp. | R1 | R3 | R4 | R6 |
| 2001 | H |
|
|
Cl |
| 2002 |
|
|
|
Cl |
| 2003 |
|
|
|
Cl |
| 2004 | H |
|
|
Br |
| 2005 | H |
|
|
H |
| 2006 | H |
|
|
Br |
| 2007 |
|
|
|
Cl |
| 2008 |
|
|
|
Cl |
| 2009 | CH3 |
|
|
Cl |
| 2010 |
|
|
|
Cl |
| 2011 |
|
|
|
Cl |
| Comp. | R3 | R4 | R6 |
| 3001 |
|
|
Br |
| 3002 |
|
|
Br |
| 3003 |
|
|
Br |
| 3004 |
|
|
Br |
REFERENCES CITED IN THE DESCRIPTION
Patent documents cited in the description
Non-patent literature cited in the description