Claims
- 1. A process for preparing 1H-imidazo[4,5-c]pyridin-4-amine compounds of the Formula I
- 2. The process of claim 1, further comprising the step of isolating the compound of Formula I or a pharmaceutically acceptable salt thereof.
- 3. The process according to claim 1, wherein R1 is selected from alkyl of one to four carbon atoms, alkenyl of two to four carbon atoms, hydroxyalkyl of one to four carbon atoms, alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms, and phenylethyl.
- 4. The process according to claim 3, wherein R1 is selected from 2-hydroxy-2-methylpropyl, 2-methylpropyl, and n-butyl.
- 5. The process according to claim 1, wherein R2 is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms.
- 6. The process according to claim 5, wherein R2 is selected from methyl, ethyl, propyl, butyl, hydroxymethyl, 2-methoxyethyl, and ethoxymethyl.
- 7. The process according to claim 1, wherein R3 is methyl, and R4 is hydrogen or methyl.
- 8. The process of claim 1, further comprising the steps of:
providing a compound of Formula V 53wherein R1, R3 and R4 are as defined in claim 1; and reacting a compound of the Formula V with a carboxylic acid of the formula R2CO2H; an equivalent thereof selected from the corresponding acyl halide, R2C(O-alkyl)3, and R2C(O-alkyl)2(O(O═)C-alkyl); or a mixture thereof, wherein R2 is as defined in claim 1, and each alkyl contains 1 to 8 carbon atoms, to provide a compound of the Formula VII.
- 9. The process of claim 8, further comprising the steps of:
providing a compound of Formula IV 54wherein R1, R3 and R4 are as described in claim 8; and reducing the compound of Formula IV to provide a compound of the Formula V.
- 10. The process of claim 9, further comprising the steps of:
providing a compound of Formula III 55wherein R1, R3 and R4 are as described in claim 9; and reacting the compound of Formula III with an alkali metal azide to provide a compound of the Formula IV.
- 11. The process according to claim 10, wherein the compound of Formula III is reacted with the alkali metal azide in the presence of cerium III chloride.
- 12. The process of claim 10, further comprising the steps of:
providing a compound of Formula II 56wherein R3 and R4 are as described in claim 10; and reacting the compound of Formula II with a compound of the formula R1NH2, wherein R1 is as defined in claim 10, to provide a compound of the Formula III.
- 13. The process of claim 10, further comprising the step of isolating the compound of Formula I or a pharmaceutically acceptable salt thereof.
- 14. The process according to claim 10, wherein R1, R2, R3, and R4 are independently selected as follows:
R1 is selected from alkyl of one to four carbon atoms, alkenyl of two to four carbon atoms, hydroxyalkyl of one to four carbon atoms, alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms, and phenylethyl; R2 is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms; R3 is selected from hydrogen and alkyl of one to four carbon atoms; and R4 is selected from hydrogen and alkyl of one to four carbon atoms.
- 15. The process according to claim 14, wherein R1, R2, R3, and R4 are independently selected as follows:
R1 is selected from 2-hydroxy-2-methylpropyl, 2-methylpropyl, and n-butyl; R2 is selected from methyl, ethyl, propyl, butyl, hydroxymethyl, 2-methoxyethyl, and ethoxymethyl; R3 is methyl; and R4 is selected from hydrogen and methyl.
- 16. The process of claim 1, further comprising the steps of:
providing a compound of Formula VI 57wherein R1, R2, R3 and R4 are as defined in claim 1; and subjecting the compound of Formula VI to cyclization conditions, to provide a compound of the Formula VII.
- 17. The process of claim 16, further comprising the steps of:
providing a compound of Formula V 58wherein R1, R3 and R4 are as defined in claim 16; and reacting a compound of the Formula V with a carboxylic acid of the formula R2CO2H or the corresponding acyl halide, wherein R2 is as defined in claim 16, to form a compound of the Formula VI.
- 18. The process of claim 17, further comprising the steps of:
providing a compound of Formula IV 59wherein R1, R3 and R4 are as described in claim 17; and reducing the compound of Formula IV to provide a compound of the Formula V.
- 19. The process of claim 18, further comprising the steps of:
providing a compound of Formula III 60wherein R1, R3 and R4 are as described in claim 18; and reacting the compound of Formula III with an alkali metal azide to provide a compound of the Formula IV.
- 20. The process according to claim 19, wherein the compound of Formula III is reacted with the alkali metal azide in the presence of cerium III chloride.
- 21. The process of claim 19, further comprising the steps of:
providing a compound of Formula II 61wherein R3 and R4 are as described in claim 19; and reacting the compound of Formula II with a compound of the formula R1NH2, wherein R1 is as defined in claim 19, to provide a compound of the Formula III.
- 22. The process of claim 19, further comprising the step of isolating the compound of Formula I or a pharmaceutically acceptable salt thereof.
- 23. The process according to claim 19, wherein R1, R2, R3, and R4 are independently selected as follows:
R1 is selected from alkyl of one to four carbon atoms, alkenyl of two to four carbon atoms, hydroxyalkyl of one to four carbon atoms, alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms, and phenylethyl; R2 is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms; R3 is selected from hydrogen and alkyl of one to four carbon atoms; and R4 is selected from hydrogen and alkyl of one to four carbon atoms.
- 24. The process according to claim 23, wherein R1, R2, R3, and R4 are independently selected as follows:
R1 is selected from 2-hydroxy-2-methylpropyl, 2-methylpropyl, and n-butyl; R2 is selected from methyl, ethyl, propyl, butyl, hydroxymethyl, 2-methoxyethyl, and ethoxymethyl; R3 is methyl; and R4 is selected from hydrogen and methyl.
- 25. A process for preparing 1H-imidazo[4,5-c]pyridin-4-amine compounds of the Formula Ia
- 26. The process according to claim 25, wherein the tetrazolo ring is reductively removed by reacting a compound of Formula VIIa with hydrogen in the presence of a catalyst and an acid.
- 27. The process of claim 25, further comprising the step of isolating the compound of Formula Ia or a pharmaceutically acceptable salt thereof.
- 28. The process according to claim 25, wherein R1a is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms.
- 29. The process according to claim 28, wherein R1a is selected from 2-hydroxy-2-methylpropyl, 2-methylpropyl, and n-butyl.
- 30. The process according to claim 25, wherein R2a is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms.
- 31. The process according to claim 30, wherein R2a is selected from methyl, ethyl, propyl, butyl, hydroxymethyl, 2-methoxyethyl, and ethoxymethyl.
- 32. The process according to claim 25, wherein R3 is methyl, and R4 is hydrogen or methyl.
- 33. The process of claim 25, further comprising the steps of:
providing a compound of Formula Va 64wherein R1a, R3 and R4 are as defined in claim 25; and reacting a compound of the Formula Va with a carboxylic acid of the formula R2aCO2H; an equivalent thereof selected from the corresponding acyl halide, R2aC(O-alkyl)3, and R2aC(O-alkyl)2(O(O═)C-alkyl); or a mixture thereof, wherein R2a is as defined in claim 25, and each alkyl contains 1 to 8 carbon atoms, to provide a compound of the Formula VIIa.
- 34. The process of claim 33, further comprising the steps of:
providing a compound of Formula IVa 65wherein R1a, R3 and R4 are as described in claim 33; and reducing the compound of Formula IVa to provide a compound of the Formula Va.
- 35. The process of claim 34, further comprising the steps of:
providing a compound of Formula IIIa 66wherein R1a, R3 and R4 are as described in claim 34; and reacting the compound of Formula IIIa with an alkali metal azide to provide a compound of the Formula IVa.
- 36. The process according to claim 35, wherein the compound of Formula IIIa is reacted with the alkali metal azide in the presence of cerium III chloride.
- 37. The process of claim 35, further comprising the steps of:
providing a compound of Formula II 67wherein R3 and R4 are as described in claim 35; and reacting the compound of Formula II with a compound of the formula R1aNH2, wherein R1a is as defined in claim 35, to provide a compound of the Formula IIIa.
- 38. The process of claim 35, further comprising the step of isolating the compound of Formula Ia or a pharmaceutically acceptable salt thereof.
- 39. The process according to claim 35, wherein R1a, R2a, R3, and R4 are independently selected as follows:
R1a is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms; R2a is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms; R3 is selected from hydrogen and alkyl of one to four carbon atoms; and R4 is selected from hydrogen and alkyl of one to four carbon atoms.
- 40. The process according to claim 39, wherein R1a, R2a, R3, and R4 are independently selected as follows:
R1a is selected from 2-hydroxy-2-methylpropyl, 2-methylpropyl, and n-butyl; R2a is selected from methyl, ethyl, propyl, butyl, hydroxymethyl, 2-methoxyethyl, and ethoxymethyl; R3 is methyl; and R4 is selected from hydrogen and methyl.
- 41. The process of claim 25, further comprising the steps of:
providing a compound of Formula VIa 68wherein R1a, R2a, R3 and R4 are as defined in claim 25; and subjecting the compound of Formula VIa to cyclization conditions, to provide a compound of the Formula VIIa.
- 42. The process of claim 41, further comprising the steps of:
providing a compound of Formula Va 69wherein R1a, R3 and R4 are as defined in claim 41; and reacting a compound of the Formula Va with a carboxylic acid of the formula R2aCO2H or the corresponding acyl halide, wherein R2a is as defined in claim 41, to form a compound of the Formula VIa.
- 43. The process of claim 42, further comprising the steps of:
providing a compound of Formula IVa 70wherein R1a, R3 and R4 are as described in claim 42; and reducing the compound of Formula IVa to provide a compound of the Formula Va.
- 44. The process of claim 43, further comprising the steps of:
providing a compound of Formula IIIa 71wherein R1a, R3 and R4 are as described in claim 43; and reacting the compound of Formula IIIa with an alkali metal azide to provide a compound of the Formula IVa.
- 45. The process according to claim 44, wherein the compound of Formula IIIa is reacted with the alkali metal azide in the presence of cerium III chloride.
- 46. The process of claim 44, further comprising the steps of:
providing a compound of Formula II 72wherein R3 and R4 are as described in claim 44; and reacting the compound of Formula II with a compound of the formula R1aNH2, wherein R1a is as defined in claim 44, to provide a compound of the Formula IIIa.
- 47. The process of claim 44, further comprising the step of isolating the compound of Formula Ia or a pharmaceutically acceptable salt thereof.
- 48. The process according to claim 44, wherein R1a, R2a, R3, and R4 are independently selected as follows:
R1a is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms; R2a is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, and alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms; R3 is selected from hydrogen and alkyl of one to four carbon atoms; and R4 is selected from hydrogen and alkyl of one to four carbon atoms.
- 49. The process according to claim 48, wherein R1a, R2a, R3, and R4 are independently selected as follows:
R1 is selected from 2-hydroxy-2-methylpropyl, 2-methylpropyl, and n-butyl; R2 is selected from methyl, ethyl, propyl, butyl, hydroxymethyl, 2-methoxyethyl, and ethoxymethyl; R3 is methyl; and R4 is selected from hydrogen and methyl.
- 50. A process for preparing a chemical compound comprising the steps of:
providing a compound of Formula III 73wherein R3 and R4 are independently selected from hydrogen and alkyl of one to five carbon atoms, and R1 is selected from hydrogen; CHRxRy wherein Rx is hydrogen and Ry is selected from alkyl or cyclic alkyl containing one to ten carbon atoms, alkenyl containing two to ten carbon atoms, hydroxyalkyl containing one to six carbon atoms, alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to six carbon atoms, benzyl, and phenylethyl; and —C═CRzRz wherein each Rz is independently alkyl or cyclic alkyl of one to six carbon atoms; and reacting the compound of Formula III with an alkali metal azide to provide a compound of Formula IV 74wherein R1, R3, and R4 are as defined above.
- 51. The process according to claim 50, wherein the compound of Formula III is reacted with the alkali metal azide in the presence of cerium III chloride.
- 52. The process according to claim 50, wherein R1, R3, and R4 are independently selected as follows:
R1 is selected from alkyl of one to four carbon atoms, hydroxyalkyl of one to four carbon atoms, alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to four carbon atoms, and phenylethyl; R3 is selected from hydrogen and alkyl of one to four carbon atoms; and R4 is selected from hydrogen and alkyl of one to four carbon atoms.
- 53. The process according to claim 52, wherein R1, R3, and R4 are independently selected as follows:
R1 is selected from 2-hydroxy-2-methylpropyl, 2-methylpropyl, and n-butyl; R3 is methyl; and R4 is selected from hydrogen and methyl.
- 54. The process of claim 50, further comprising the steps of:
providing a compound of Formula II 75wherein R3 and R4 are as defined in claim 50; and reacting the compound of Formula II with a compound of the formula R1NH2, wherein R1 is as defined in claim 50, to provide a compound of Formula III.
- 55. The process of claim 50, further comprising the step of reducing the compound of Formula IV to provide a compound of Formula V
- 56. The process of claim 55, further comprising the step of reacting a compound of Formula V with a carboxylic acid of the formula R2CO2H; an equivalent thereof selected from the corresponding acyl halide, R2C(O-alkyl)3, and R2C(O-alkyl)2(O(O═)C-alkyl); or a mixture thereof, wherein each alkyl contains 1 to 8 carbon atoms; and
R2 is selected from hydrogen; alkyl containing one to eight carbon atoms; hydroxyalkyl containing one to six carbon atoms; alkoxyalkyl wherein the alkoxy moiety contains one to four carbon atoms and the alkyl moiety contains one to six carbon atoms; benzyl; phenylethyl; phenyl; the benzyl, phenylethyl, or phenyl substituent being optionally substituted on the benzene ring by a moiety selected from methyl, methoxy, and halogen; and morpholinoalkyl wherein the alkyl moiety contains one to four carbon atoms, to provide a compound of the Formula VII 77wherein R2 is as defined above, and R1, R3, and R4 are as defined in claim 55.
- 57. The process of claim 56, further comprising the step of reacting the compound of Formula VII with triphenylphosphine to provide an N-triphenylphosphinyl intermediate of Formula VIII
- 58. The process of claim 55, further comprising the step of (a) reacting the compound of Formula V with a carboxylic acid of the formula R2CO2H or the corresponding acyl halide to form a compound of the Formula VI
- 59. The process of claim 58, further comprising the step of (b) subjecting the compound of Formula VI to cyclization conditions, during step (a) or subsequent to the completion of step (a), to provide a compound of the Formula VII
- 60. The process of claim 59, further comprising the step of reacting the compound of Formula VII with triphenylphosphine to provide an N-triphenylphosphinyl intermediate of Formula VIII
- 61. The process according to claim 8, wherein the reacting of the compound of Formula V with a carboxylic acid of the formula R2CO2H; an equivalent thereof selected from the corresponding acyl halide, R2C(O-alkyl)3, and R2C(O-alkyl)2(O(O═)C-alkyl); or a mixture thereof, wherein R2 is as defined in claim 8, is done in the presence of cyclization conditions to provide a compound of the Formula VII.
- 62. The process according to claim 33, wherein the reacting of the compound of Formula Va with a carboxylic acid of the formula R2aCO2H; an equivalent thereof selected from the corresponding acyl halide, R2aC(O-alkyl)3, and R2aC(O-alkyl)2(O(O═)C-alkyl); or a mixture thereof, wherein R2a is as defined in claim 33, is done in the presence of cyclization conditions to provide a compound of the Formula VIIa.
- 63. The process according to claim 56, wherein the reacting of the compound of Formula V with a carboxylic acid of the formula R2CO2H; an equivalent thereof selected from the corresponding acyl halide, R2C(O-alkyl)3, and R2C(O-alkyl)2(O(O═)C-alkyl); or a mixture thereof, wherein R2 is as defined in claim 56, is done in the presence of cyclization conditions to provide a compound of the Formula VII.
- 64. The process according to claim 10, wherein the alkali metal azide is sodium azide.
- 65. The process according to claim 19, wherein the alkali metal azide is sodium azide.
- 66. The process according to claim 35, wherein the alkali metal azide is sodium azide.
- 67. The process according to claim 44, wherein the alkali metal azide is sodium azide.
- 68. The process according to claim 50, wherein the alkali metal azide is sodium azide.
- 69. The process according to claim 9, wherein the compound of Formula IV is reduced with a heterogeneous hydrogenation catalyst.
- 70. The process according to claim 18, wherein the compound of Formula IV is reduced with a heterogeneous hydrogenation catalyst.
- 71. The process according to claim 34, wherein the compound of Formula IVa is reduced with a heterogeneous hydrogenation catalyst.
- 72. The process according to claim 43, wherein the compound of Formula IVa is reduced with a heterogeneous hydrogenation catalyst.
- 73. The process according to claim 55, wherein the compound of Formula IV is reduced with a heterogeneous hydrogenation catalyst.
- 74. The process according to claim 17, wherein in the compound of Formula V is reacted with the corresponding acyl halide to form the compound of Formula VI, and the compound of Formula VI is subjected to cyclization conditions which include an elevated temperature and the presence of pyridine hydrochloride.
- 75. The process according to claim 74, wherein the acyl halide is ethoxyacetyl chloride.
- 76. The process according to claim 42, wherein in the compound of Formula Va is reacted with the corresponding acyl halide to form the compound of Formula VIa, and the compound of Formula VIa is subjected to cyclization conditions which include an elevated temperature and the presence of pyridine hydrochloride.
- 77. The process according to claim 76, wherein the acyl halide is ethoxyacetyl chloride.
- 78. The process according to claim 59, wherein in the compound of Formula V is reacted with the corresponding acyl halide to form the compound of Formula VI, and the compound of Formula VI is subjected to cyclization conditions which include an elevated temperature and the presence of pyridine hydrochloride.
- 79. The process according to claim 78, wherein the acyl halide is ethoxyacetyl chloride.
- 80. The process according to claim 1 wherein the compound of Formula I is 2-(ethoxymethyl)-1-(2-methylpropyl)-6-methyl-1H-imidazo[4,5-c]pyridin-4-amine.
- 81. The process according to claim 25 wherein the compound of Formula Ia is 2-(ethoxymethyl)-1-(2-methylpropyl)-6-methyl-1H-imidazo[4,5-c]pyridin-4-amine.
- 82. A compound of the Formula IV
- 83. A compound of the Formula V
- 84. A compound of the Formula VI
- 85. A compound of the Formula VII
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/476,338, filed Jun. 6, 2003.
Provisional Applications (1)
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Number |
Date |
Country |
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60476338 |
Jun 2003 |
US |