Claims
- 1. A process for preparing a compound of the formula I
17wherein R1 is aryl, heteroaryl, substituted aryl or substituted heteroaryl and R2 is hydrogen, alkyl or aralkyl, or a salt thereof, comprising reacting a compound of the formula II
18wherein R1 is as described above and R2′ is alkyl or aralkyl, with a compound of the formula III
19wherein R5 is hydrogen or alkoxy, under conditions of reduced pressure, such that the reaction solution boils at temperatures of between about 40° and about 65°C., in an inert solvent, which solvent under reduced pressure is capable of azeotropic removal of water, to form the compound of formula IV,
20reacting the compound of formula IV with hydrogen gas in the presence of a palladium catalyst to form the compound of formula V
21and reacting the compound of formula V to form the compound of formula I.
- 2. A process of claim 1 wherein the compounds of formula I and III are present in an enantiomeric excess of one enantiomer.
- 3. A process of claim 2 wherein the compounds of formula I and III are present in an enantiomeric excess of one enantiomer of at least 90% ee.
- 4. A process of claim 3 wherein the compounds of formula I and III are present in an enantiomeric excess of one of the enantiomers of at least 98% ee.
- 5. A process of claim 1, wherein R1 is aryl, heteroaryl, mono or di substituted aryl or mono or di substituted heteroaryl, wherein the substituents on the aryl or heteroaryl are independently selected from the group consisting of halogen, hydroxy, lower alkyl, lower alkoxy, lower aralkyl, —NR32, wherein R3 is a lower alkyl; R4—CONH, wherein R4 is phenyl or a lower alkyl; and —OC(O)R6,wherein R6 is hydrogen, alkyl or aralkyl
- 6. A process of claim 5, wherein R1 is phenyl, pyrimidyl, unsubstituted or substituted pyridyl, napthyl or 3,5-dichlorophenyl.
- 7. A process of claim 6, wherein R1 is 2-pyridyl, 3-pyridyl or 4-pyridyl.
- 8. A process of claim 7, wherein R1 is 3-pyridyl.
- 9. A process of claim 1, wherein R2 is a lower alkyl.
- 10. A process of claim 9, wherein R2 is methyl.
- 11. A process of claim 1, wherein R1 is 3-pyridyl and R2 is methyl.
- 12. A process of claim 11 wherein the compounds of formula I and III are present in an enantiomeric excess of one enantiomer of at least 90% ee.
- 13. A process of claim 11, wherein the inert solvent capable of azeotropic removal of water is xylene, heptane or toluene.
- 14. A process of claim 13, further comprising reacting the compound of formula II with the compound of formula III to form the compound of formula IV in the presence of at least two equivalents of a carboxylic acid.
- 15. A process of claim 14, wherein the carboxylic acid is acetic acid.
- 16. A process of claim 15, further comprising washing the compound of formula IV with an aqueous base to remove excess acid.
- 17. A process of claim 15, wherein the palladium catalyst is present in an amount of at least 10 weight percent of 20 percent palladium hydroxide on carbon.
- 18. A process of claim 1, further comprising separating and isolating the compound of formula V into a desired diastereomer.
- 19. A process of claim 15, further comprising separating and isolating the compound of formula V into a desired diastereomer.
- 20. A process of claim 15, further comprising reacting the compound of formula V in formic acid, in the presence of a hydrosilane, to form the compound of formula I.
- 21. A compound of formula IV
22wherein R1 is aryl, heteroaryl, substituted aryl or substituted heteroaryl; R2 is alkyl or aralkyl; R5 is hydrogen or hydroxy; or a salt thereof.
- 22. A compound of formula V
23wherein R1 is aryl, heteroaryl, substituted aryl or substituted heteroaryl; R2 is alkyl or aralkyl; R5 is hydrogen or hydroxy; or a salt thereof.
- 23. A process for preparing a compound of formula I
24wherein R1 is aryl, heteroaryl, substituted aryl or substituted heteroaryl and R2 is hydrogen, alkyl or aralkyl, or a salt thereof, comprising reacting the compound of formula IV
25wherein R1 is as described above, R2′ is alkyl or aralkyl and R5 is hydrogen or alkoxy, with hydrogen gas in the presence of a palladium catalyst to form the compound of formula V
26and reacting the compound of formula V to form the compound of formula I.
CROSS REFERENCE TO OTHER APPLICATIONS
[0001] This application claims the benefit of U. S. Provisional Application No. 60/125,669, filed on Mar. 22, 1999.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60125669 |
Mar 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09532799 |
Mar 2000 |
US |
Child |
09858078 |
May 2001 |
US |