IP Library Granted Patent US 8,343,513
Granted Patent B2
US 8,343,513 · App. 10/894,956 · Granted Jan 1, 2013

Prevention of molecular weight reduction of the polymer, impurity formation and gelling in polymer compositions

Assignee: Oakwood Laboratories, LLC
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Quick Facts
Patent No.
US 8,343,513
App. No.
10/894,956
Granted
Jan 1, 2013
Kind
B2
Abstract

Polymer and drug containing compositions and method of preparing such compositions are disclosed. The dispersed phase formulation has a polymer, a pharmaceutically or biologically active agent and a small fraction of low pKa acid additive. Stable, filter sterilizable, non-gelling solutions containing GnRH analogues at least at levels typically used in sustained release formulations and a method of increasing solubility of a high level of a GnRH analogue or a freeze-dried antagonist of GnRH in a polymer containing solution are also disclosed. The amount of the acid additive in the polymer solution is such that it is sufficient to increase the solubility of the high level of the GnRH analogue in the polymer solution without affecting the release characteristics of the microspheres prepared therefrom.

Claims (34)

1. A polymer solution for sustained release formulation comprising:

a biocompatible and biodegradable polymer,

at least one nucleophilic substance capable of catalyzing ester bond cleavage and causing molecular weight reduction of the polymer,

at least one organic solvent, and

an amount of an acid additive consisting of one or more low pKa acids such that the polymer in the polymer solution is less susceptible to molecular weight reduction as compared to the polymer solution without the acid additive, wherein the amount of the acid additive is less than 100% relative to the amount of said polymer in the polymer solution.

2. The polymer solution of claim 1 , wherein the polymer is poly(d,l-lactic acid), poly(l-lactic acid) or poly(glycolic acid), or a copolymer of poly(d,l-lactic acid) or poly(l-lactic acid) and poly(glycolic acid).

3. The polymer solution of claim 1 , wherein the nucleophilic substance is a polypeptide, or a drug having a nucleophilic group.

4. The polymer solution of claim 3 , wherein the nucleophilic substance is selected from the group consisting of: a polypeptide, ketotifen, thioridazine, risperidone, oxybutynin, olanzapine, naloxone and naltrexone, or pharmaceutically acceptable salts thereof.

5. The polymer solution of claim 4 , wherein the polypeptide is a somatostatin analog or LHRH analog.

6. The polymer solution of claim 5 , wherein the polypeptide is selected from the group consisting of octreotide, leuprolide, orntide and Woc4D.

7. The polymer solution of claim 5 , wherein the polypeptide is a somatostatin analog.

8. The polymer solution of claim 7 , wherein the somatostatin analog is octreotide.

9. The polymer solution of claim 5 , wherein the polypeptide is an LHRH analog.

10. The polymer solution of claim 9 , wherein the LHRH analog is leuprolide.

11. The polymer solution of claim 1 , wherein the at least one organic solvent is dichloromethane (DCM).

12. The polymer solution of claim 1 , wherein the acid additive is one low pKa acid.

13. The polymer solution of claim 12 , wherein the acid additive is lactic acid, glycolic acid, acetic acid, glyceric acid, benzoic acid, propanoic acid, or a combination of these acids.

14. The polymer solution of claim 12 , wherein the amount of acid additive present in the polymer solution is about 0.1% to 5%.

15. The polymer solution of claim 12 , wherein the amount of acid additive is about 2% to about 50% by weight of the polymer.

16. The polymer solution of claim 12 , wherein the amount of acid additive in the polymer solution is about 1.0% to about 10%.

17. The polymer solution of claim 1 , wherein the solution is stored at temperatures greater than 25° C.

18. The polymer solution of claim 1 , wherein the solution is stored at temperatures greater than 40° C.

19. The polymer solution of claim 1 , wherein the solution contains a solvent that enhances the molecular weight reduction of the polymer.

20. The polymer solution of claim 19 , wherein the solvents are methanol, dimethylacetamide, ethanol, dimethylsulfoxide, dimethylformamide, dichloromethane (DCM) or N-methylpyrrolidone or a combination thereof.

21. A polymer solution for controlled release formulation, which comprises a biocompatible and biodegradable polymer, and at least one organic solvent, and a sufficient amount of a nucleophilic compound that is a polypeptide or a pharmaceutically acceptable salt thereof, capable of catalyzing ester bond cleavage and causing molecular weight reduction of the polymer, wherein the biodegradable polymer comprises 100% poly(lactide) or a glycolide containing copolymer comprising at least 75% w/w poly(lactide) wherein the polymer or the copolymer has an acid number of at least 13 but not greater than 40 wherein the polymer solution further comprises an amount of an acid additive consisting of one or more low pKa acids such that the polymer in the polymer solution is less susceptible to molecular weight reduction as compared to the polymer solution without the acid additive, wherein the amount of the acid additive is less than 100% relative to the amount of said polymer in the polymer solution.

22. The polymer solution for controlled release formulation according to claim 21 , wherein the biodegradable polymer is poly-D,L-lactide.

23. The polymer solution for controlled release formulation according to claim 21 , wherein the biodegradable polymer is a blend of poly-D,L-lactide and poly-D,L-lactide-co-glycolide.

24. The polymer solution for controlled release formulation according to claim 21 , wherein the polymer has an acid number from about 14 to about 19.

25. The polymer solution for controlled release formulation according to claim 24 , wherein the polypeptide is selected from the group consisting of octreotide, leuprolide, orntide and Woc4D.

26. The polymer solution for controlled release formulation according to claim 21 , wherein the polymer has an acid number of about 19.

27. The polymer solution for controlled release formulation according to claim 26 , wherein the acid additive content is about 0.5% to about 5% by weight.

28. A polymer solution for controlled release formulation, which comprises a biocompatible and biodegradable polymer, and at least one organic solvent, and a sufficient amount of a nucleophilic compound that is a polypeptide or a pharmaceutically acceptable salt thereof, capable of catalyzing ester bond cleavage and causing molecular weight reduction of the polymer, wherein the biodegradable polymer comprises 100% poly(lactide) having an acid number of at least 5, or a glycolide containing copolymer comprising at least 50% w/w poly(lactide) and having an acid number of at least 13, and an amount of an acid additive consisting of one or more low pKa acids such that the polymer in the polymer solution is less susceptible to molecular weight reduction as compared to the polymer solution without the acid additive, wherein the amount of the acid additive is less than 100% relative to the amount of said polymer in the polymer solution.

29. The polymer solution for controlled release formulation according to claim 28 , wherein the acid additive is glacial acetic acid, lactic acid, glycolic acid or stearic acid or a combination thereof.

30. The polymer solution for controlled release formulation according to claim 28 , wherein the polymer solution is either free of hydrophobic polypeptide related substances or has less than 2% hydrophobic polypeptide related substances.

Assignments (2)
SECURITY INTEREST Recorded May 30, 2014
From: OAKWOOD LABORATORIES, L.L.C.
To: ALFERA PHARMACEUTICALS, LLC
Reel/Frame 033070/0329 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2004
From: THANOO, BAGAVATHIKANUN C.; MURTAGH, JAMES; JOHNS, GONTO
To: OAKWOOD LABORATORIES
Reel/Frame 015324/0816 →
Continuity (2)
Provisional Application 60488573 · Jul 18, 2003
Related Publication 20050042294A1 · Feb 24, 2005