Claims
- 1. A continuous process for the preparation of a compound of formula (I)
- 2. The process as in claim 1, wherein the organic or inorganic base is an organic base.
- 3. The process as in claim 2, wherein the organic base is pyridine.
- 4. The process as in claim 1, wherein the first organic solvent comprises at least one solvent selected the group consisting of a cyclic ether, a straight or branched chain dialkyl ether, an aromatic hydrocarbon solvent and a mixture of a cyclic, straight or branched chain dialkyl ether and an aromatic hydrocarbon solvent.
- 5. The process as in claim 4, wherein the first organic solvent comprises a cyclic ether or a straight or branched chain dialkyl ether.
- 6. The process as in claim 5, wherein the first organic solvent is glyme.
- 7. The process as in claim 1, wherein the sulfuryl chloride is present in an amount greater than about 0.9 moles per mole of the compound of formula (IV).
- 8. The process as in claim 1, wherein the base is present in an amount greater than about 1 molar equivalent of the compound of formula (IV).
- 9. The process as in claim 8, wherein the molar ratio of the compound of formula (IV) to the base is at least about 1:1.05.
- 10. The process as in claim 1, wherein the temperature of the reaction in Step (A) is less than about 50° C.
- 11. The process as in claim 1, wherein the second organic solvent is glyme.
- 12. The process as in claim 1, wherein the compound of formula (VI) is present in an amount greater than about 1 molar equivalent of the compound of formula (V).
- 13. The process as in claim 12, wherein the molar ratio of the compound of formula (VI) to the compound of formula (V) is at least about 2:1.
- 14. The process as in claim 1, wherein the compound of formula (VI) is ammonia and the ammonia is fed into the reactor at a pressure of about 19 psia.
- 15. The process as in claim 1, wherein the temperature of the reaction in Step (B) is in the range of from about −30 to about 50° C.
- 16. The process as in claim 1, wherein the compound of formula (V) is formed in a solution comprising the compound of formula (V) and the first organic solvent.
- 17. The process as in claim 16, wherein the sulfuryl chloride is reacted in amount equal to about 1 equivalent relative to the compound of formula (IV), further comprising concentrating the solution comprising the compound of formula (V) and the first organic solvent to remove at least about 20% of the solvent mass.
- 18. The process as in claim 16, wherein the sulfuryl chloride is reacted in amount greater than about 1 equivalent relative to the compound of formula (IV), further comprising concentrating the solution comprising the compound of formula (V) and the first organic solvent to remove at least 70% of the solvent mass.
- 19. The process as in claim 16, further comprising concentrating the solution comprising the compound of formula (V) and the first organic solvent to an oil.
- 20. The process as in claim 16, further comprising treating the solution comprising the compound of formula (V) and the first organic solvent to remove volatiles.
- 21. The process as in claim 1, wherein step (A) and step (B) are each run in a continuous stirred tank reactor.
- 22. A compound prepared according to the process of claim 1.
- 23. A pharmaceutical composition comprising a pharmaceutically acceptable carrier and the compound of claim 22.
- 24. A pharmaceutical composition made by mixing a pharmaceutically acceptable carrier and the compound of claim 22.
- 25. A process for making a pharmaceutical composition comprising mixing a pharmaceutically acceptable carrier and the compound of claim 22.
- 26. A continuous process for the preparation of a compound of formula (III)
- 27. The process as in claim 26, wherein the organic or inorganic base is an organic base.
- 28. The process as in claim 27, wherein the organic base is pyridine.
- 29. The process as in claim 26, wherein the first organic solvent comprises at least one solvent selected from the group consisting of a cyclic ether, a straight or branched chain dialkyl ether, an aromatic hydrocarbon solvent and a mixture of a cyclic, straight or branched chain dialkyl ether and an aromatic hydrocarbon solvent.
- 30. The process as in claim 29, wherein the first organic solvent comprises a cyclic ether or a straight or branched chain dialkyl ether.
- 31. The process as in claim 30, wherein the first organic solvent is glyme.
- 32. The process as in claim 26 wherein the sulfuryl chloride is present in an amount greater than about 0.9 moles per mole of the compound of formula (IVa).
- 33. The process as in claim 26, wherein the base is present in an amount greater than about 1 molar equivalent of the compound of formula (IVa).
- 34. The process as in claim 33, wherein the molar ratio of the compound of formula (Iva) to the base is at least about 1:1.05.
- 35. The process as in claim 26, wherein the temperature of the reaction in Step (Aa) is less than about 50° C.
- 36. The process as in claim 26, wherein the second organic solvent is glyme.
- 37. The process as in claim 26, wherein the ammonia is present in an amount greater than about 1 molar equivalent of the compound of formula (Va).
- 38. The process as in claim 37, wherein the molar ratio of the ammonia to the compound of formula (Va) is at least about 2:1.
- 39. The process as in claim 26, wherein ammonia is fed into the reactor at a pressure of about 19 psia.
- 40. The process as in claim 26, wherein the temperature of the reaction in Step (Ba) is in the range of from about −30 to about 50° C.
- 41. The process as in claim 26, wherein the compound of formula (Va) is formed in a solution comprising the compound of formula (Va) and the first organic solvent.
- 42. The process as in claim 41, wherein the sulfuryl chloride is reacted in amount equal to about 1 equivalent relative to the compound of formula (IVa), further comprising concentrating the solution comprising the compound of formula (Va) and the first organic solvent to remove at least about 20% of the solvent mass.
- 43. The process as in claim 41, wherein the sulfuryl chloride is reacted in amount greater than about 1 equivalent relative to the compound of formula (IVa), further comprising concentrating the solution comprising the compound of formula (Va) and the first organic solvent to remove at least 70% of the solvent mass.
- 44. The process as in claim 41, further comprising concentrating the solution comprising the compound of formula (Va) and the first organic solvent to an oil.
- 45. The process as in claim 41, further comprising treating the solution comprising the compound of formula (Va) and the first organic solvent to remove volatiles.
- 46. The process as in claim 26, wherein step (Bb) is run in a continuous stirred tank reactor.
- 47. The process as in claim 26, wherein step (Aa) and step (Ba) are each run in a continuous stirred tank reactor.
- 48. A compound prepared according to the process of claim 26.
- 49. A pharmaceutical composition comprising a pharmaceutically acceptable carrier and the compound of claim 48.
- 50. A pharmaceutical composition made by mixing a pharmaceutically acceptable carrier and the compound of claim 48.
- 51. A process for making a pharmaceutical composition comprising mixing a pharmaceutically acceptable carrier and the compound of claim 48.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application 60/422,558, filed on Oct. 31, 2002, which is incorporated by reference herein in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60422558 |
Oct 2002 |
US |