Claims
- 1. A method of making a bisphosphonic acid comprising the step of combining a carboxylic acid, phosphorous acid, and a halophosporous compound selected from PCl3, PCl5, POCl3, PBr3, POBr3, and PBr5 in the presence of a diluent that is an aromatic hydrocarbon or a silicone fluid, with the proviso that, when the diluent is an aromatic hydrocarbon, a polyalkylene glycol is not present as a codiluent in the reaction mixture.
- 2. The method of claim 1 wherein ortho-phosphoric acid is used as a codiluent.
- 3. The method of claim 1 wherein the phosphoric acid and the halophosphorous compound are combined in at least first and second portions.
- 4. The method of claim 1 wherein the diluent is an aromatic hydrocarbon and the reaction is conducted in the presence of a heterogeneous solid support.
- 5. The method of claim 4 wherein the heterogeneous solid support is diatomite silica.
- 6. The method of claim 4 wherein the diluent is toluene.
- 7. The method of claim 1 wherein the silicone fluid is a poly(dimethysiloxane).
- 8. The method of claim 1 wherein the halophosphorous compound is POCl3.
- 9. The method of claim 1 wherein the carboxylic acid is selected from the group consisting of 4-aminobutanoic acid, (3-pyridyl)ethanoic acid, (1-imidazoyl)ethanoic acid, N-(n-pentyl)-N-methyl-3-aminopropanoic acid, 2(imidazo[1,2-a]pyridin-3-yl)ethanoic acid, and 6-aminohexanoic acid, and the hydrochlorides thereof.
- 10. The method of claim 1 further comprising the steps of:
combining the reaction mixture with water or a water solution of a non-oxidizing acid, whereby at least aqueous and non-aqueous phases are formed, separating the aqueous phase, combining the aqueous phase with ethanol, whereby a precipitate is formed, and isolating the bisphosphonic acid.
- 11. The method of claim 10 wherein the carboxylic acid is 4-aminobutanoic acid or its hydrochloride and the isolated bisphosphonic acid is alendronic acid monohydrate.
- 12. The method of claim 10 wherein the carboxylic acid is (3-pyridyl)ethanoic acid or its hydrochloride and the isolated bisphosphonic acid is risedronic acid monohydrate.
- 13. The method of claim 10 wherein the carboxylic acid is (1-imidazoyl)ethanoic acid or its hydrochloride and the isolated bisphosphonic acid is zoledronic acid monohydrate.
- 14. The method of claim 10 wherein the carboxylic acid is N-(n-pentyl)-N-methyl-3-aminopropanoic acid or its hydrochloride and the isolated bisphosphonic acid is ibandronic acid.
- 15. The method of claim 10 wherein the carboxylic acid is 2-(imidazo[1,2-a]pyridin-3-yl)ethanoic acid and the isolated bishosphonic acid is minodronic acid hemihydrate.
- 16. The method of claim 10 wherein the carboxylic acid is 6-aminohexanoic acid and the isolated bisphosphonic acid is neridronic acid.
- 17. A method of making alendronic acid monohydrate comprising the steps of:
a) combining 4-aminobutanoic acid, phosphorous acid, and a halophosporous compound selected from PCl3, PCl5, POCl3, PBr3, POBr3, and PBr5 at a temperature of about 80° C. to about 100° C. in the presence of a diluent that is an aromatic hydrocarbon or a silicone fluid to form a reaction mixture, with the proviso that, when the diluent is an aromatic hydrocarbon, a polyalkylene glycol is not present as a codiluent in the reaction mixture, b) combining the reaction mixture with water, whereby an aqueous and a non-aqueous phase are formed, c) separating the aqueous phase, d) combining the aqueous phase with ethanol whereby a suspension comprising alendronic acid is formed, and e) isolating alendronic acid monohydrate from the suspension.
- 18. The method of claim 17 wherein, when the diluent is an aromatic hydrocarbon, ortho-phosphoric acid codiluent is combined in the reaction mixture.
- 19. The method of claim 17 wherein the diluent is an aromatic hydrocarbon and a heterogeneous solid support is combined in the reaction mixture and wherein the method further comprises the step of filtering the aqueous and non-aqueous phases before the aqueous phase is separated.
- 20. A method of making risedronic acid monohydrate comprising the steps of:
a) combining (3-pyridyl)ethanoic acid or its hydrochloride salt, phosphorous acid, and a halophosporous compound selected from PCl3, PCl5, POCl3, PBr3, POBr3, and PBr5 at a temperature of about 80° C. to about 100° C. in the presence of a diluent that is an aromatic hydrocarbon or a silicone fluid to form a reaction mixture, with the proviso that, when the diluent is an aromatic hydrocarbon, a polyalkylene glycol is not present as a codiluent in the reaction mixture, b) combining the reaction mixture with water, whereby an aqueous and a non-aqueous phase are formed, c) separating the aqueous phase, d) combining the aqueous phase with ethanol whereby a suspension comprising risedronic acid is formed, and e) isolating risedronic acid monohydrate from the suspension.
- 21. The method of claim 20 wherein, when the diluent is an aromatic hydrocarbon, ortho-phosphoric acid codiluent is combined in the reaction mixture.
- 22. The method of claim 20 wherein the diluent is an aromatic hydrocarbon and a heterogeneous solid support is combined in the reaction mixture and wherein the method further comprises the step of filtering the aqueous and non-aqueous phases before the aqueous phase is separated.
- 23. A method of making zoledronic acid monohydrate comprising the steps of:
a) combining (1-imidazoyl)ethanoic acid or its hydrochloride, phosphorous acid, and a halophosporous compound selected from PCl3, PCl5, POCl3, PBr3, POBr3, and PBr5 at a temperature of about 80° C. to about 100° C. in the presence of a diluent that is an aromatic hydrocarbon or a silicone fluid to form a reaction mixture, with the proviso that, when the diluent is an aromatic hydrocarbon, a polyalkylene glycol is not present as a codiluent in the reaction mixture, b) combining the reaction mixture with water, whereby an aqueous and a non-aqueous phase are formed, c) separating the aqueous phase, d) combining the aqueous phase with ethanol whereby a suspension comprising zoledronic acid is formed, and e) isolating zoledronic acid monohydrate from the suspension.
- 24. The method of claim 23 wherein, when the diluent is an aromatic hydrocarbon, ortho-phosphoric acid codiluent is combined in the reaction mixture.
- 25. The method of claim 23 wherein the diluent is an aromatic hydrocarbon and a heterogeneous solid support is combined in the reaction mixture and wherein the method further comprises the step of filtering the aqueous and non-aqueous phases before the aqueous phase is separated.
- 26. A method of making ibandronic acid comprising the steps of:
a) combining N-methyl-N-(n-pentyl)-3-aminopropanoic acid, phosphorous acid, and a halophosporous compound selected from PCl3, PCl5, POCl3, PBr3, POBr3, and PBr5 at a temperature of about 80° C. to about 100° C. in the presence of a diluent that is an aromatic hydrocarbon or a silicone fluid to form a reaction mixture, with the proviso that, when the diluent is an aromatic hydrocarbon, a polyalkylene glycol is not present as a codiluent in the reaction mixture, b) combining the reaction mixture with water, whereby an aqueous and a non-aqueous phase are formed, c) separating the aqueous phase, d) combining the aqueous phase with ethanol whereby a suspension comprising ibandronic acid is formed, and e) isolating ibandronic acid from the suspension.
- 27. The method of claim 26 wherein, when the diluent is an aromatic hydrocarbon, ortho-phosphoric acid codiluent is combined in the reaction mixture.
- 28. The method of claim 26 wherein the diluent is an aromatic hydrocarbon and a heterogeneous solid support is combined in the reaction mixture and wherein the method further comprises the step of filtering the aqueous and non-aqueous phases before the aqueous phase is separated.
- 29. A method of making minodronic acid hemihydrate comprising the steps of:
a) combining 2-(imidazo[1,2-a]pyridin-3-yl)ethanoic acid, phosphorous acid, and a halophosporous compound selected from PCl3, PCl5, POCl3, PBr3, POBr3, and PBr5 at a temperature of about 80° C. to about 100° C. in the presence of a diluent that is an aromatic hydrocarbon or a silicone fluid to form a reaction mixture, with the proviso that, when the diluent is an aromatic hydrocarbon, a polyalkylene glycol is not present as a codiluent in the reaction mixture, b) combining the reaction mixture with water, whereby an aqueous and a non-aqueous phase are formed, c) separating the aqueous phase, d) combining the aqueous phase with ethanol whereby a suspension comprising minodronic acid is formed, and e) isolating minodronic acid hemihydrate from the suspension.
- 30. The method of claim 29 wherein, when the diluent is an aromatic hydrocarbon, ortho-phosphoric acid codiluent is combined in the reaction mixture.
- 31. The method of claim 29 wherein the diluent is an aromatic hydrocarbon and a heterogeneous solid support is combined in the reaction mixture and wherein the method further comprises the step of filtering the aqueous and non-aqueous phases before the aqueous phase is separated.
- 32. A method of making neridronic acid comprising the steps of:
a) combining 6-aminohexanoic acid, phosphorous acid, and a halophosporous compound selected from PCl3, PCl5, POCl3, PBr3, POBr3, and PBr5 at a temperature of about 80° C. to about 100° C. in the presence of a diluent that is an aromatic hydrocarbon or a silicone fluid to form a reaction mixture, with the proviso that, when the diluent is an aromatic hydrocarbon, a polyalkylene glycol is not present as a codiluent in the reaction mixture, b) combining the reaction mixture with water, whereby an aqueous and a non-aqueous phase are formed, c) separating the aqueous phase, d) combining the aqueous phase with ethanol whereby a suspension comprising neridronic acid is formed, and e) isolating minodronic acid from the suspension.
- 33. The method of claim 32 wherein, when the diluent is an aromatic hydrocarbon, ortho-phosphoric acid codiluent is combined in the reaction mixture.
- 34. The method of claim 32 wherein the diluent is an aromatic hydrocarbon and a heterogeneous solid support is combined in the reaction mixture and wherein the method further comprises the step of filtering the aqueous and non-aqueous phases before the aqueous phase is separated.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Applications Serial No. 60/381,284, filed May 17, 2002; Serial No. 60/401,313, filed Aug. 6, 2002; Serial No. 60/423,337, filed Nov. 1, 2002, Serial No. 60/431,838, filed Dec. 9, 2002 and Serial No. 60/450,193, filed Feb. 25, 2003.
Provisional Applications (5)
|
Number |
Date |
Country |
|
60381284 |
May 2002 |
US |
|
60401313 |
Aug 2002 |
US |
|
60423337 |
Nov 2002 |
US |
|
60431838 |
Dec 2002 |
US |
|
60450193 |
Feb 2003 |
US |