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(11) | EP 1 437 349 B9 |
| (12) | CORRECTED EUROPEAN PATENT SPECIFICATION |
| Note: Bibliography reflects the latest situation |
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SUBSTITUTED ISOXAZOLES AND THE USE THEREOF AS ANTIBIOTICS SUBSTITUIERTE ISOXAZOLE UND DEREN VERWENDUNG ALS ANTIBIOTIKA ISOXAZOLES SUBSTITUES ET UTILISATION COMME ANTIBIOTIQUES |
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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). |
BACKGROUND OF THE ART
SUMMARY OF THE INVENTION
X is a biradical selected from the group consisting of O, S, NH, OCO, NH-CO, NH-COO, NH-CS, NH-CO-NH and NH-CS-NH;
R4 is a radical selected from the group consisting of hydrogen, a straight or branched (C1-C3)-alkyl, optionally substituted in any of their carbon atoms by 1, 2 or 3 atoms of F, Cl or Br; and a C-linked heterocyclic radical HET1 that is:
either a C-linked radical of a 5-membered heterocycle of 1, 2, 3 or 4 heteroatoms selected from the group consisting of N, O and S, optionally substituted by a radical selected from the group consisting of (C1-C4)-alkyl, amino, (C1-C4)-alkylamino, (C1-C4)-alkoxyl, (C1-C4)-alkoxycarbonyl, (C1-C4-alkylcarbonyl, (C1-C4)-amido, amido, CN, NO2, F, Cl, and Br; or
a C-linked radical of a 6-membered heterocycle with 1, 2 or 3 atoms of nitrogen, optionally substituted by 1, 2 or 3 substituents independently selected from the group consisting of (C1-C4)-alkyl, amino, (C1-C4)-alkylamino, (C1-C4)-alkoxyl, (C1-C4)-alkoxycarbonyl, (C1-C4)-alkylcarbonyl, (C1-C4)-amido, amido, CN, NO2, F, Cl and Br;
R1 and R3 each independently represent H or F;
R2 is an N-linked or C-linked radical selected from the following group:
wherein:
R5 is a non cyclic radical selected from the group consisting of:
-(CH2)n-CO-R7,
and SO2-R7
wherein:
R7 is (C1-C4)-alkyl, (C1-C3)-alkenyl (straight or branched), -(CH2)p-R2. -(CH2)m-Y-(CH2)n -R8 or HET2;
n, p, q and m are integers from 0 to 8;
Y is O, S or NH;
R2 is as defined above, excluding Q20, Q21, Q22, Q23 and Q24;
R8 is H or a C-linked radical selected from (C1-C3)-alkyl, vinyl, allyl, ethynyl, propargyl, phenyl phenyl substituted by CHO, CN, NO2, CH3 or F and a C-linked radical of an aromatic system constituted by a 5- or 6-membered ring, or by two 5- or 6-membered fused rings; containing the aforementioned aromatic system from one to three heteroatoms independently selected from O, N and S; and being the aforementioned aromatic system optionally mono-, di- or trisubstituted by radicals independently selected from the group consisting of H, (C1-C4)-alkyl (straight or branched), (C1-C4)-alkoxyl, (C1-C4)-alkylsulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2 CH=N-R10, F, Cl and Br or said aromatic system being selected from the group consisting of 2-, 3- and 4-pyridyl all of which may optionally be substituted by CHO, CN, NO2, CH3 or F
R9 is H, (C1-C3)-alkyl or N(R11)(R12), whereinR1 and R12 are independently selected from the group consisting of H and (C1-C2)-alkyl;
R10 is H, (C1-C3)-alkyl, phenyl, benzyl, OH or (C1-C3)-alkyloxy: HET2 is a C-linked heterocyclic radical selected from the group consisting
of:
wherein R13, R14 and R15 are radicals independently selected from the group consisting
of H, (C1-C4)-alkyl (straight or branched), (C1-C4)-alkoxyl, (C1-C4)-alkylsulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl and Br, wherein R9 and R10 are as defined above;
alternatively, R5 is C-linked heterocyclic radical selected from the group consisting
of:
wherein R16, R17 and R18 are independently selected from the group consisting of CO-R9,
COO-R9, CN, NO, NO2, and CH=N-R10;
R6 is selected from the group consisting of H, F, Cl, Br, trifluoromethyl, CN, NO2, CHO, CH2OH, (C1-C3)alkyl, (C1-C3)-alkoxyl, (C1-C3)-alkoxycarbonyl, (C1-C3)-alkoxy-(C1-C3)-alkyl, benzyloxy-(C1-C3)-alkyl, (C1-C3)-yalkylcarbonyl, CO-NR19R20, NR19R20, (C1-C3)-alkylamino, (C1-C3)-alkyl-CH=N-O-R21, CH=N-O-R21, CH=CR22R23, (CH2)sNHR19, and CH=NR19; wherein R19 and R20, are independently selected from the group consisting of H, (C1-C3)-alkyl, CO-R24 and an aromatic system constituted by a 5- or 6-membered ring, or by two 5- or 6-membered fused rings; optional containing the aforementioned aromatic system from one to three heteroatoms independently selected from O, N and S; and being the aforementioned aromatic system optionally mono-, di- or trisubstituted by radicals independently selected from the group consisting of H, (C1-C4)-alkyl (straight or branched), (C1-C4)-alkoxyl, (C1-C4)-alkylsulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl and Br; R21 is H or (C1-C3)-alkyl; R22 and R23, are independently selected from the group consisting of H, CN, NO2, (C1-C3)-alkylcarbonyl, (C1-C3)-alkoxycarbonyl, CHO, CONR19R20 and CH2OH; and R24 is H, (C1-C3)-alkyl, (C1-C3)-alkoxyl or HET2, wherein HET2 is as defined above; s is a integer comprised from 0 to 4.
X is NH or NH-CS;
R4 is methyl or a C-linked isoxazole or isothiazole radical optionally substituted by a methyl moiety in any of their substitutable positions;
R1 is H and R3 is F;
R2 is a radical selected from the following group:
R5 is CO-R7;
R7 is selected from (CH2)m-Y-R8 and HET2, wherein m =1;
Y is O or NH;
R8 is selected from the group consisting of H, phenyl and 2-, 3-, 4-pyridyl, being the last four optionally substituted by CHO, CN, NO2, CH3 or F;
HET2 is selected from the group consisting of:
wherein R13, R14 and R15 are independently selected from the group consisting of CN,
NO2 and CHO;
and R6 is selected from the group consisting of H, CH3, CN, CHO, CH2OH, CH=N-OH, CH=CHCN, CO-CH3 and CH2NH-phenyl, said phenyl being substituted by a radical selected from the group consisting of F, CN, CHO and NO2.
Examples of antimicrobial activity
| COMPOUND | BCM- 010 MIC (µg/mL) | BCM- 012 MIC (µg/mL) | BCM-015 MIC (µg/mL) |
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4 | 2 | 4 |
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4 | 2 | 8 |
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4 | 2 | 8 |
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4 | 2 | |
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4 | 2 | |
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1 | 1 | 8 |
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4 | 2 | >16 |
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4 | 2 | |
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4 | 2 | |
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4 | 2 | >16 |
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4 | 2 | |
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2 | 2 | |
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2 | 1 | |
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2 | 1 | |
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4 | 2 | |
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4 | 2 | |
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2 | 2 | |
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4 | 2 | |
|
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0.5 | 1 | |
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1 | 0.5 | 4 |
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1 | 0.5 | 4 |
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0.5 | 0.5 | 16 |
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0.5 | 0.5 | 16 |
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1 | 0.5 | 4 |
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2 | 0.5 | 4 |
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1 | 0.5 | 4 |
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1 | 0.5 | 4 |
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1 | 0.5 | 16 |
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1 | 1 | - |
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2 | 0.5 | 4 |
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1 | 1 | 4 |
Antitumoral activity examples
| COMPOUND | Cell viability percentage at 100 µM | |
| HT-29 | HCT-116 | |
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38.1 | 44.1 |
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66.1 | 57.1 |
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71.2 | 64.7 |
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14.3 | 77.1 |
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<5 | 18.9 |
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53.3 | 48.6 |
Intermediate 1. Preparation of 3,4-difluorobenzaldoxime
Intermediate 2. Preparation of 3,4-difluoro-N-hydroxybenzenecarboxiimidoyl chloride
Intermediate 3. Preparation of [3-(3,4-difluoropheny)isoxazol-5-yl]methanol
Intermediate 4. Preparation of 3-(3,4-difluorophenyl)isoxazol-5-methyl methylsulfonate
Intermediate 5. Preparation of isoxazol-3-ylcarbamic acid, tert-butyl ester
Intermediate 6. Preparation of isoxazol-3-yl[3-(3,4-difluorophenyl)isoxazol-5-ylmethyl]carbamic acid, tert-butyl ester
Intermediate 7. Preparation of isoxazol-3-yl[3-(3,4-difluorophenyl)isoxazol-5-ylmethyl]amine
Intermediate 8. Preparation of (3-(3,4-difluorophenyl)isoxazol-yl]-methylamine
Intermediate 9. Preparation of N-[3-(3,4-difluorophenyl)isoxazol-5-ylmethyl]-acetamide
Intermediate 10. Preparation of [3-(3-fluoro-4-piperazin-1-ylphenyl)isoxazol-5-ylmethy]isoxazol-3-ylamine
Intermediate 11. Preparation of 2-chloro-1-(4-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl)isoxazol-3-yl]phenyl}piperazin-1-yl)ethanone
Intermediate 12. Preparation of 3,4,5-trifluorobenzaldoxime
Intermediate 13. Preparation of 3,4,5-difluoro-N-hydroxybenzenecarboxiimidoyl chloride
Intermediate 14. Preparation of [3-(3,4,5-trifluorophenyl)isoxazol-5-yl]methanol
Intermediate 15. Preparation of 3-(3,4,5-trifluorophenyl)isoxazol-5-methyl methylsulfonate
Intermediate 16. Preparation of isoxazol-3-yl[3-(3,4,5-trifluorophenyl)isoxazol-5-ylmethyl]carbamic acid, tert-butyl ester
Intermediate 17. Preparation of isoxazol-3-yl[3-(3,4,5-trifluorophenyl)isoxazol-5-ylmethyl]amine
Intermediate 18. Preparation of [3-(3,5-difluoro-4-piperazin-1-ylphenyl)-isoxazol-5-ylmethyl]isoxazol-3-ylamine
Intermediate 19. Preparation of 3-methylisothiazol-5-ylcarbamic acid, tert-butyl ester
Intermediate 20. Preparation of [3-(3,4-difluorophenyl)isoxazol-5-ylmethyl]-(3-methylisotiazol-5yl)carbamic acid, tert-butyl ester
Intermediate 21. Preparation of [3-(3,4-difluorophenyl)isoxazol-5-ylmethyl]-(3-methylisotiazol-5-yl)amine
Intermediate 22. Preparation of isoxazol-3-ylmethanol
Intermediate 23. Preparation of 3-(3,4-difluorophenyl)-5-(isoxazol-3-yloximethyl)isoxazole
Example 1. Preparation of 3-[3-fluoro-4-(hydroxyacetyl)piperazin-1-ylpheny]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 2. Preparation of 3-(3-fluoro-4-imidazol-1-ylphenyl)-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 4: Preparation of 3-[3-fluoro-(4-hydroxymethylimidazol-1-yl)pheny)]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 5: Preparation of (1-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl)isoxazol-3-yl]phenyl}-1H-pyrrol-3-carboxaldehyde
Example 6. Preparation of 3-[3-fluoro-4-(4-(1-pyrazolyl)acetyl)piperazin-1-yl)-phenyl]5-(isoxazol-3-ylaminomethyl)isoxazole
Example 7. Preparation of 1-(4-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl) isoxazo-3-yl]-phenyl}piperazin-1-yl)-2-phenoxyethanone
Example 8. Preparation of 3-[3-fluoro-4-(4-(1,2,4-triazol-1-yl)acetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 10. Preparation of 3-[3-fluoro-4-(1-pyrrolyl)acetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 11. Preparation of 3-[3-fluoro-4-(3-pyridyloxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 12. Preparation of 3-[13-fluoro-4-(2-pyridyloxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 13. Preparation of 3-[3-fluoro-4-(3-nitrophenyloxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 14. Preparation of 3-[3-fluoro-4-(4-nitrophenyloxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 15. Preparation of 3-[3-fluoro-4-(2-furylmethoxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 16. Preparation of 3-[3-fluoro-4-(2-pyridylmethoxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 17. Preparation of 3-[3-fluoro-4-(4-cyanophenoxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 18. Preparation of 3-[3-fluoro-4-(3-propyn-1-yloxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 19. Preparation of 3-[3-fluoro-4-(4-fomylphenyloxyacetyl)piperazin-1-ylphenyl]-5-(isoxazol-3-ylaminomethyl)isoxazole
Example 20: Preparation of 3-(3-fluoro-4-imidazol-1-ylphenyl)-5-(N-acetylaminomethyl)isoxazole
Example 21. Preparation of 3-(3-fluoro-4-imidazol-1-ylphenyl)-5-(N-thioacetylaminomethyl)isoxazole
Example 22. Preparation of 1-(4-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl)-isoxazol-3-yl]-phenyl}piperazin-1-yl)-2-(quinolin-6-yloxy)ethanone
Example 23. Preparation of (1-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl)-isoxazol-3-yl]phenyl}-1H-pyrrol-3-yl)methanol
Example 24. Preparation of (1-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl)-isoxazol-3-yl]phenyl}-1H-pyrrol-3-carboxaldehyde oxime
Example 25. Preparation of (1-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl)isoxazol-3-yl]phenyl}1H-pyrrol-3-nitrile
Example 26. Preparation of 4-[2-(4-{2,6-difluoro-4-[5-(isoxazol-3-ylaminomethyl)isoxazol-3-yl]phenyl}piperazin-1-yl)-2-oxoethoxy]benzaldehyde
Example 27. Preparation of 1-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl)isoxazol-3-yl]phenyl}-1H-imidazol-4-carboxaldehyde
Example 28. Preparation of 3-(1-{2-fluoro-4-[5-(isoxazol-3-ylaminomethyl)isoxazol-5-yl]phenyl}-1H-imidazol-4-yl)acrylonitrile
Example 29. Preparation of [3-(3-fluoro-4-[(2-methoxiphenylamino)-methyl]imidazol-1-yl}phenyl)isoxazol-5-ylmethyl]isoxazol-3-ylamine
Example 30. Preparation of (3-{3-fluoro-4-[3-(o-tolylaminomethyl)pyrrol-1-yl]-phenyl]isoxazol-5-ylmethyl)isoxazol-3-ylamine
Example 32. Preparation of [3-(3-fluoro-4-imidazol-1-ylphenyl)isoxazol-5-ylmethyl]-(3-methylisotiazol-5-yl)amine
Example 33. Preparation de 1-(2-fluoro-4-{5-[(3-methylisotiazol-5-ylamino)-methyl]isoxazol-3-yl]}phenyl)-1H-imidazol-4-carboxaldehyde
Example 34, Preparation de {3-[3-fluoro-4-(4-methylimidazol-yl)phenyl]isoxazol-5-ylmethyl}-(3-methyl-isothiazol-5-yl)amine
Example 35. Preparation of 1-{2-fluoro-4-[5-(isoxazol-3-yloxymethyl)isoxazol-3-yl]phenyl}-1-H-imidazol-4-carboxaldehyde
X is a biradical selected from the group consisting of O, S, NH, OCO, NH-CO, NH-COO, NH-CS, NH-CO-NH and NH-CS-NH;
R4 is a radical selected from the group consisting of:
- hydrogen,
- (C1-C3)-alkyl, optionally substituted by 1, 2 or 3 halogen radicals selected from F, Cl or Br; and
- a C-linked heterocyclic radical HET1 that is:
either a C-linked radical of a 5-membered heterocycle of 1, 2, 3 or 4 heteroatoms selected from the group consisting of N, O and S, optionally substituted by a radical selected from the group consisting of (C1-C4)-alkyl, amino, (C1-C4)-alkylamino, (C1-C4)-alkoxyl, (C1-C4)-alkoxycarbonyl, (C1-C4)-alkylcarbonyl, (C1-C4)-amido, amido, CN, NO2, F, CI, and Br;
or a C-linked radical of a 6-membered heterocycle with 1, 2 or 3 atoms of nitrogen, optionally substituted by 1, 2 or 3 substituents independently selected from the group consisting of (C1-C4)-alkyl, amino, (C1-C4)-alkylamino, (C1-C4)-alkoxyl, (C1-C4)-alkoxycarbonyl, (C1-C4)-alkylcarbonyl, (C1-C4)-amido, amido, CN, NO2, F, CI and Br;
R1 and R3 each independently represent H or F;
R2 is an N-linked or C-linked radical selected from the group consisting of:
wherein:
R5 is a non cyclic radical selected from the group consisting of:
-(CH2)n-CO-R7,
and SO2-R7
wherein:R7 is (C1-C4)-alkyl, (C1-C3)-alkenyl (straight or branched), -(CH2)p-R2, -(CH2)m-Y-(CH2)q -R8 or HET2;
n, p, q and m are integers from 0 to 8;
Y is O, S or NH;
R2 is as defined above, excluding Q20, Q21, Q22, Q23 and Q24.
R8 is H or a C-linked radical selected from the group consisting of (C1-C3)-alkyl, vinyl, allyl, ethinyl, propargyl, phenyl, phenyl substituted by CHO, CN, NO2, CH3 or F and a C-linked radical of an aromatic system constituted by a 5- or 6-membered ring, or by two 5- or 6-membered fused rings; containing the aforementioned aromatic system from one to three heteroatoms independently selected from O, N and S; and being the aforementioned aromatic system optionally mono-, di- or trisubstituted by radicals independently selected from the group consisting of H, (C1-C4)-alkyl (straight or branched), (C1-C4)-alkoxyl, (C1-C4)-alkylsulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl and Br or said aromatic system being selected from the group consisting of 2-, 3- and 4-pyridyl all of which may optionally be substituted by CHO, CN, NO2, CH3 or F ;
R9 is H, (C1-C3)-alkyl or N(R11)(R12), wherein R11 and R12 are independently selected from the group consisting of H and (C1-C3)-alkyl;
R10 is H, (C1-C3)-alkyl, phenyl, benzyl, OH or (C1-C3)-alkyloxy;
HET2 is a C-linked heterocyclic radical selected from the group consisting of:
wherein R13, R14 and R15 are radicals independently selected from the group consisting
of (C1-C4)-alkyl (straight or branched), (C1-C4)-alkoxyl, (C1-C4)-alkylsulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl and Br, wherein R9 and R10 are as defined above;
alternatively, R5 is C-linked heterocyclic radical selected from the group consisting
of:
wherein R16, R17 and R18 are independently selected from the group consisting of CO-R9,
COO-R9, CN, NO, NO2, and CH=N-R10;
R6 is selected from the group consisting of H, F, Cl, Br, trifluoromethyl, CN, NO2, CHO, CH2OH, (C1-C3)-alkyl, (C1-C3)-alkoxyl, (C1-C3)-alkoxycarbonyl, (C1-C3)-alkoxy-(C1-C3)-alkyl, benzyloxy-(C1-C3)-alkyl, (C1-C3)-alkylcarbonyl, CO-NR19R20, NR19R20, (C1-C3)-alkylamino, (C1-C3)-alkyl-CH=N-O-R21 , CH=N-O-R21, CH=CR22R23, (CH2)sNHR19, and CH=NR19; wherein R19 and R20, are independently selected from the group consisting of H, (C1-C3)-alkyl, CO-R24 and an aromatic system constituted by a 5- or 6-membered ring, or by two 5- or 6-membered fused rings; optional containing the aforementioned aromatic system from one to three heteroatoms independently selected from the group consisting of O, N and S; and being the aforementioned aromatic system optionally mono-, di- or trisubstituted by radicals independently selected from the group consisting of H, (C1-C4)-alkyl (straight or branched), (C1-C4)-alkoxyl, (C1-C4)-alkylsulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, CI and Br; R21 is H or (C1-C3)-alkyl; R22 and R23, are independently selected from the group consisting of H, CN, NO2, (C1-C3)-alkylcarbonyl, (C1-C3)-alkoxycarbonyl, CHO, CONR19R20 and CH2OH; and R24 is H, (C1-C3)-alkyl, (C1-C3)-alkoxyl or HET2, wherein HET2 is as defined above; s is a integer comprised from 0 to 4.
X is NH or NH-CS;
R4 is methyl or a C-linked isoxazole or isothiazole radical optionally substituted by a methyl moiety in any of their substitutable positions;
R1 is H and R3 is F;
R2 is a radical selected from the group consisting of:
R5 is CO-R7;
R7 is selected from (CH2)m-Y-R8 and HET2, wherein m =1;
Y is O or NH;
R8 is selected from the group consisting of H, phenyl and 2-, 3-, 4-pyridyl, being the last four optionally substituted by CHO, CN, NO2, CH3 or F;
HET2 is selected from the group consisting of:
wherein R13, R14 and R15 are independently selected from the group consisting of CN,
NO2 and CHO;
and R6 is selected from the group consisting of H, CH3, CN, CHO, CH2OH, CH=N-OH, CH=CHCN, CO-CH3 and CH2NH-phenyl, said phenyl being substituted by a radical selected from the group consisting of F, CN, CHO and NO2.
X ein Biradikal ist, ausgewählt aus der Gruppe bestehend aus O, S, NH, OCO, NH-CO, NH-COO, NH-CS, NH-CO-NH und NH-CS-NH;
R4 ein Rest ist, ausgewählt aus der Gruppe bestehend aus:
- Wasserstoff,
- (C1-C3)-Alkyl, wahlweise substituiert mit 1, 2 oder 3 Halogenresten, ausgewählt unter F, Cl oder Br; und
- einem C-gebundenen heterocyclischen Rest HET1, welcher ist:
entweder ein C-gebundener Rest eines 5-gliedrigen Heterocyclus mit 1, 2, 3 oder 4 Heteroatomen, ausgewählt aus der Gruppe bestehend aus N, O und S, wahlweise substituiert mit einem Rest, ausgewählt aus der Gruppe bestehend aus (C1-C4)-Alkyl, Amino, (C1-C4) -Alkylamino, (C1-C4) -Alkoxyl, (C1-C4) - Alkoxycarbonyl, (C1-C4)-Alkylcarbonyl, (C1-C4)-Amido, Amido, CN, NO2, F, Cl und Br;
oder ein C-gebundener Rest eines 6-gliedrigen Heterocyclus mit 1, 2 oder 3 stickstoffatomen, wahlweise substituiert mit 1, 2 oder 3 Substituenten, unabhängig ausgewählt aus der Gruppe bestehend aus (C1-C4)-Alkyl, Amino, (C1-C4)-Alkylamino, (C1-C4)-Alkoxyl, (C1-C4)-Alkoxycarbonyl, (C1-C4) -Alkylcarbonyl, (C1-C4)-Amido, Amido, CN, NO2, F, Cl und Br;
R1 und R3 jeweils unabhängig H oder F repräsentieren;
R2 ein N-gebundener oder C-gebundener Rest ist, ausgewählt aus der Gruppe bestehend
aus:
worin:
R5 ein nichtcyclischer Rest ist, ausgewählt aus der Gruppe bestehend aus:
- (CH2)n-CO-R7
und SO2-R7
worin:R7 (C1-C4) -Alkyl, (C1-C3) -Alkenyl (gerade oder verzweigt), - (CH2)p-R2, - -(CH2)m-Y-(CH2)q-R8 oder HET2 ist;
n, p, q und m ganze Zahlen zwischen 0 und 8 sind;
Y O S oder NH ist;
R2 wie oben definiert ist, ausgenommen Q20, Q21, Q22, Q23 und Q24;
R8 H oder ein C-gebundener Rest ist, ausgewählt aus der Gruppe bestehend aus (C1-C3)-Alkyl, vinyl, Allyl, Ethinyl, Propargyl, Phenyl, Phenyl substituiert mit CHO, CN, NO2, CH3 oder F und einem C-gebundenen Rest eines aromatischen Systems, das von einem 5- oder 6-gliedrigen Ring oder von zwei 5- oder 6- gliedrigen kondensierten Ringen gebildet wird; wobei das vorgenannte aromatische System ein bis drei Heteroatome enthält, die unabhängig unter O, N und S ausgewählt sind; und wobei das vorgenannte aromatische System wahlweise mit Resten mono-, di- oder trisubstituiert ist, die unabhängig aus der Gruppe bestehend aus H, (C1-C4)-Alkyl (gerade oder verzweigt), (C1-C4)-Alkoxyl, (C1-C4)-Alkyloulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl und Br oder das vorgenannte aromatische System aus der Gruppe bestehend aus 2-, 3- und 4-Pyridyl ausgewählt ist, wobei sie wahlweise mit CHO, CN, NO2, CH3 oder F substituiert sind;
R9 H, (C1-C3) -Alkyl oder N(R11) (R12) ist, worin R11 und R12 unabhängig aus der Gruppe bestehend aus H und (C1-C3)-Alkyl ausgewählt sind;
R10 H, (C1-C3)-Alkyl, Phenyl, Benzyl, OH oder (C1-C3)-Alkyloxy ist;
HET2 ein C-gebundener heterocyclischer Rest ist, ausgewählt aus der Gruppe bestehend
aus:
worin R13, R14 und R15 Reste sind, die unabhängig aus der Gruppe bestehend aus (C1-C4)-Alkyl (gerade oder verzweigt), (C1-C4)-Alkoxyl, (C1-C4)-Alkylsulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl und Br ausgewählt sind, worin R9 und R10 wie oben definiert sind;
R5 alternativ ein C-gebundener heterocyclischer Rest ist, ausgewählt aus der Gruppe
bestehend aus:
worin R16, R17 und R18 unabhängig aus der Gruppe bestehend aus CO-R9, COO-R9, CN,
NO, NO2 und CH=N-R10 ausgewählt sind;
R6 aus der Gruppe bestehend aus H, F, Cl, Br, Trifluormethyl, CN, NO2, CHO, CH2OH, (C1-C3)-Alkyl, (C1-C3)-Alkoxyl, (C1-C3)-Alkoxycarbonyl, (C1-C3)-Alkoxy-(C1-C3)-alkyl, Benzyloxy-(C1-C3)-alkyl, (C1-C3)-Alkylcarbonyl, CO-NR19R20, NR19R20, (C1-C3)-Alkylamino, (C1-C3)-Alkyl-CH=N-O-R21, CH=N-O-R21, CH=CR22R23, (CH2)8NHR19 und CH=NR19 ausgewählt ist; worin R19 und R20 unabhängig aus der Gruppe bestehend aus H, (C1-C3) -Alkyl, CO-R24 und einem aromatischen System, das von einem 5- oder 6- gliedrigen Ring oder von zwei 5- oder 6-gliedrigen kondensierten Ringen gebildet wird, ausgewählt sind; wobei das vorgenannte aromatische System ein bis drei Heteroatome enthält, die unabhängig aus der Gruppe bestehend aus O, N und S ausgewählt sind; und wobei das vorgenannte aromatische System wahlweise mit Resten mono-, di- oder trisubstituiert ist, die unabhängig aus der Gruppe bestehend aus H, (C1-C4) -Alkyl (gerade oder verzweigt), (C1-C4)-Alkoxyl, (C1-C4)-Alkylsulfanyl, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl und Br ausgewählt sind; R21 H oder (C1-C3)-Alkyl ist; R22 und R23 unabhängig aus der Gruppe bestehend aus H, CN, NO2, (C1-C3)-Alkyloarbonyl, (C1-C3) -Alkoxycarbonyl, CHO, CONR19R20 und CH2OH ausgewählt sind; und R24 H, (C1-C3)-Alkyl, (C1-C3)-Alkoxyl oder HET2 ist, worin HUT2 wie oben definiert ist; s eine ganze Zahl zwischen 0 und 4 ist.
X NH oder NH-CS ist;
R4 Methyl oder ein C-gebundener Isoxazol- oder Isothiazolrest ist, der wahlweise an irgendeiner seiner substituierbaren Positionen mit einem Methylanteil substituiert ist;
R1 H und R3 F ist;
R2 ein Rest ist, ausgewählt aus der Gruppe bestehend aus:
R5 CO-R7 ist;
R7 unter (CH2)m-Y-R8 und HET2 ausgewählt ist, worin m = 1;
Y O oder NH ist;
R8 aus der Gruppe bestehend aus H, Phenyl und 2-, 3-, 4-Pyridyl ausgewählt ist, wobei die letzten Vier wahlweise mit CHO, CN,
NO2, CH3 oder F substituiert sind;
HET2 aus der Gruppe bestehend aus:
ausgewählt ist, worin R13, R14 und R15 unabhängig aus der Gruppe bestehend aus CN,
NO2 und CHO ausgewählt sind;
und R6 aus der Gruppe bestehend aus H, CH3, CN, CHO, CH2OH, CH=N-OH, CH=CHCN, CO-CH3 und CH2NH-Phenyl ausgewählt ist, wobei dieses Phenyl mit einem Rest, ausgewählt aus der Gruppe bestehend aus F, CN, CHO und NO2, substituiert ist.
X représente un radical divalent choisi parmi O, S, NH, OCO, NH-CO, NH-COO, NH-CS, NH-CO-NH et NH-CS-NH,
R4 est un radical choisi parmi un atome d'hydrogène,
un groupe alkyle en C1 à C3, éventuellement substitué par 1, 2 ou 3 atomes d'halogène pris parmi les atomes de fluor, de chlore et de brome, et
un radical hétérocyclique HET1, relié par un atome de carbone, qui est soit un radical, relié par un atome de carbone, d'un hétérocycle à 5 chaînons ayant 1, 2, 3 ou 4 hétéroatomes pris parmi N, O et S, et éventuellement substitué par un radical pris parmi les groupes alkyle en C1 à C4, le groupe amino, les groupes alkyl(C1 à C4)amino, les groupes alcoxy en C1 à C4, les groupes alcoxy(C1 à C4)carbonyle, les groupes alkyl(C1 à C4)carbonyle, les groupes amido en C1 à C4, le groupe amido, CN, NO2, F, Cl et Br,
soit un radical, relié par un atome de carbone, d'un hétérocycle à 6 chaînons ayant 1, 2 ou 3 atomes d'azote et éventuellement substitué par 1, 2 ou 3 substituants pris indépendamment parmi les groupes alkyle en C1 à C4, le groupe amino, les groupes alkyl(C1 à C4)amino, les groupes alcoxy en C1 à C4, les groupes alcoxy(C1 à C4)carbonyle, les groupes alkyl(C1 à C4)carbonyle, les groupes amido en C1 à C4, le groupe amido, CN, NO2, F, Cl et Br,
R1 et R3 représentent chacun indépendamment H ou F,
R2 représente un radical relié par un atome d'azote ou un atome de carbone, choisi
parmi les radicaux suivants :
dans lesquels
R5 représente un radical non-cyclique, pris parmi les groupes -(CH2)n-CO-R7 et -SO2-R7, où
R7 représente un groupe alkyle en C1 à C4, un groupe alcényle en C1 à C3, à chaîne droite ou ramifiée, un groupe -(CH2)p-R2, un groupe - (CH2)m-Y-(CH2)q-R8 ou un radical HET2,
n, p, q et m représentent des nombres entiers de 0 à 8,
Y représente O, S ou NH,
R2 a les significations indiquées précédemment, à l'exclusion de Q20, Q21, Q22, Q23 et Q24,
R8 représente un atome d'hydrogène ou un radical, relié par un atome de carbone, choisi parmi les groupes alkyle en C1 à C3, vinyle, allyle, éthinyle, propargyle, phényle, phényle substitué par CHO, CN, NO2, CH3 ou F et les radicaux, reliés par un atome de carbone, des systèmes aromatiques formés par un cycle à 5 ou 6 chaînons ou par deux cycles condensés à 5 ou 6 chaînons, lesdits systèmes aromatiques contenant 1 à 3 hétéroatomes choisis indépendamment parmi O, N et S, et ledit système aromatique ou phényle étant éventuellement substitués par 1, 2 ou 3 radicaux choisis indépendamment parmi H, les groupes alkyle en C1 à C4, à chaîne droite ou ramifiée, les groupes alcoxy en C1 à C4, les groupes alkylsulfonyle en C1 à C4, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl et Br ou ledit système aromatique étant choisi parmi les groupes 2-, 3- et 4-pyridyle, tous pouvant etre éventuellement substitués par CHO, CN, NO2, CH3 ou F ;
R9 désignant un atome d'hydrogène, un groupe alkyle en C1 à C3 ou un groupe N(R11)(R12) où R11 et R12 représentent chacun indépendamment un atome d'hydrogène ou un groupe alkyle en C1 à C3, et
R10 représentant un atome d'hydrogène ou un groupe alkyle en C1 à C3, phényle, benzyle, OH ou alcoxy en C1 à C3,
HET2 représente un radical hétérocyclique, relié par un atome de carbone, pris parmi
les radicaux suivants :
dans lesquels R13, R14 et R15 représentent des radicaux choisis indépendamment parmi
H, les groupes alkyle en C1 à C4, à chaîne droite
ou ramifiée, les groupes alcoxy en C1 à C4, les groupes alkylsulfonyle en C1 à C4, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl et Br, R9 et R10 étant tels que définis précédemment,
ou bien R5 représente un radical hétérocyclique relié par un atome de carbone, choisi
parmi les radicaux :
dans lesquels R16, R17 et R18 représentent chacun indépendamment COR9, COO-R9, CN,
NO, NO2 ou CH=N-R10,
R6 représente H, F, Cl, Br, un groupe trifluorométhyle, CN, NO2, CHO, CH2OH, un groupe alkyle en C1 à C3, un groupe alcoxy en C1 à C3, un groupe alcoxy(C1 à C3)carbonyle, un groupe alcoxy(C1 à C3)alkyle(C1 à C3), un groupe benzyloxyalkyle(C1 à C3), un groupe alkyl(C1 à C3)carbonyle, CO-NR19R20, NR19R20, un groupe alkyl(C1 à C3)amino, un groupe alkyl(C1 à C3)-CH=N-O-R21, CH=N.O-R21, CH=CR22R23, (CH2)8NHR19 ou CH=NR19, R19 et R20 étant choisis indépendamment parmi H, les groupes alkyle en C1 à C3, CO-R24 et les systèmes aromatiques formés par un cycle à 5 ou 6 chaînons ou par deux cycles condensés à 5 ou 6 chaînons, ledit système aromatique contenant éventuellement 1 à 3 hétéroatomes pris indépendamment parmi O, N et S, et ledit système aromatique étant éventuellement substitué par 1, 2 ou 3 radicaux choisis indépendamment parmi H, les groupes alkyle en C1 à C4, à chaîne droite ou ramifiée, les groupes alcoxy en C1 à C4, les groupes alkylsulfonyle en C1 à C4, NHCO-R9, NHCOO-R9, CO-R9, COO-R9, CN, NO, NO2, CH=N-R10, F, Cl et Br, R21 représentant H ou un groupe alkyle en C1 à C3, R22 et R23 représentant chacun indépendamment H, CN, NO2, un groupe alkyl(C1 à C3)carbonyle, un groupe alcoxy(C1 à C3)carbonyle, CHO, CONR19R20 ou CH2OH, R24 désignant H, un groupe alkyle en C1 à C3, un groupe alcoxy en C1 à C3 ou un radical HET2, HET2 étant tel que défini précédemment, et s désignant un nombre entier ayant une valeur de 0 à 4.
X représente NH ou NH-CS,
R4 représente un groupe méthyle ou un radical isoxazolyle ou isothiazolyle, relié par un atome de carbone, éventuellement substitué par un groupe méthyle à l'une quelconque des positions substituables,
R1 représente H et R3 représente F,
R2 représente un radical pris parmi les radicaux suivants :
R5 représente CO-R7,
R7 représente (CH2)m-Y-R8 ou HET2, où m est égal à 1,
Y représente O ou NH,
R8 représente H, un groupe phényle ou un groupe 2-, 3- ou 4-pyridyle, ces quatre derniers groupes étant éventuellement substitués par CHO, CN, NO2, CH3 ou F, et
HET2 est un radical choisi parmi les radicaux suivants :
où R13, R14 et R15 représentent chacun indépendamment CN, NO2 ou CHO,
et R6 représente H, CH3, CN, CHO, CH2OH, CH=N-OH, CH=CHCN, CO-CH3 ou CH2NH-phényl, ledit groupe phényle étant substitué par un radical pris parmi F, CN, CHO et NO2.
REFERENCES CITED IN THE DESCRIPTION
Patent documents cited in the description
Non-patent literature cited in the description