IP Library Granted Patent US 7,101,566
Granted Patent B2
US 7,101,566 · App. 10/183,260 · Granted Sep 5, 2006

Polymer coated microparticles for sustained release

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Quick Facts
Patent No.
US 7,101,566
App. No.
10/183,260
Granted
Sep 5, 2006
Kind
B2
Abstract

The present invention is directed to sustained release microparticle formulation for parenteral administration of biologically active substances, especially drugs. More specifically it relates to coated drug containing microparticles, wherein the coating is a synthetic, bioabsorbable, biocompatible polymeric wax that is the reaction product of a polybasic acid or derivative thereof, a polyol and a fatty acid, the polymeric wax having a melting point less than about 70° C., as determined by differential scanning calorimetry.

Claims (24)

1. Sustained release microparticles for parenteral administration of a therapeutic agent comprising: a core comprising a biodegradable polymer and therapeutically effective amount of said therapeutic agent, and a coating comprising a synthetic, bioabsorbable, biocompatible polymeric wax comprising the reaction product of a polybasic acid or derivative thereof and a monoglyceride, said monoglyceride is selected from the group consisting of monostearoyl glycerol, monopalmitoyl glycerol, monomyrisitoyl glycerol, monocaproyl glycerol, monodecanoyl glycerol, monolauroyl glycerol, monolinoleoyl glycerol and monooleoyl glycerol, said polymeric wax comprising an aliphatic polyester backbone with pendant fatty acid ester groups and having a melting point less than about 70° C., as determined by differential scanning calorimetry.

2. The microparticles of claim 1 wherein said polybasic acid or derivative thereof is selected from the group consisting of succinic acid, succinic anhydride, malic acid, tartaric acid, citric acid, diglycolic acid, diglycolic anhydride, glutaric acid, glutaric anhydride, adipic acid, pimelic acid, suberic acid, sebacic acid, fumaric acid, maleic acid, maleic anhydride, mixed anhydrides, esters, activated esters and acid halides.

3. The microparticles of claim 1 wherein said polybasic acid derivative is succinic anhydride.

4. The microparticles of claim 1 wherein said polybasic acid is succinic acid.

5. The microparticles of claim 1 wherein said polymeric wax has a number average molecular weight between about 1,000 g/mole and about 100,000 g/mole, as measured by gel permeation chromatography using polystyrene standards.

6. The microparticles of claim 1 wherein said polymeric wax is branched.

7. The microparticles of claim 1 wherein said polymeric wax comprises a copolymer.

8. The microparticles of claim 7 wherein said polymeric wax copolymer comprises the reaction product of said fatty acid, said polyol, and at least two of said polybasic acids or derivatives thereof selected from the group consisting of succinic acid, succinic anhydride, malic acid, tartaric acid, citric acid, diglycolic acid and diglycolic anhydride.

9. The microparticles of claim 7 wherein said polymeric wax copolymer comprises the reaction product of said polybasic acid or derivative thereof, and at least two monoglycerides selected from the group consisting of monostearoyl glycerol, monopalmitoyl glycerol, monomyrisitoyl glycerol, monocaproyl glycerol, monodecanoyl glycerol, monolauroyl glycerol, monolinoleoyl glycerol and monooleoyl glycerol.

10. The microparticles of claim 7 wherein said wax copolymer comprises the reaction product of said polybasic acid or derivative thereof, a monoglyceride selected from the group consisting of monostearoyl glycerol, monopalmitoyl glycerol, monomyrisitoyl glycerol, monocaproyl glycerol, monodecanoyl glycerol, monolauroyl glycerol, monolinoleoyl glycerol and monooleoyl glycerol, and at least one additional polyol selected from the group consisting of ethylene glycol, 1,2-propylene glycol, 1,3-propanediol, bis-2-hydroxyethyl ether, 1,4-butanediol, 1,5-pentanediol, 1,6- hexanediol, 1,8-octanediol, 1,10-decanediol, 1,12-dodecanediol, other diols, linear poly(ethylene glycol), branched poly(ethylene glycol), linear poly(propylene glycol), branched poly(propylene glycol), linear poly(ethylene-co-propylene glycol)s and branched poly(ethylene-co-propylene glycol)s.

11. The microparticles of claim 1 wherein said therapeutic agent is selected from the group consisting of antiinfectives, analgesics, anorexics, antihelmintics, antiarthritics, antiasthmatics, anticonvulsants, antidepressants, antidiuretics, antidiarrheals, antihistamines, antiinflammatory agents, antimigraine preparations, antinauseants, antineoplastics, antiparkinsonism drugs, antipruritics, antipsychotics, antipyretics, antispasmodics, anticholinergics, sympathomimetics, xanthine derivatives, calcium channel blockers, beta-blockers, antiarrhythmics, antihypertensives, diuretics, vasodilators, central nervous system stimulants,decongestants, hormones, steroids, hypnotics, immunosuppressives, muscle relaxants, parasympatholytics, psychostimulants, sedatives, tranquilizers, naturally derived or genetically engineered proteins, polysaccharides, glycoproteins, or lipoproteins, oligonucleotides, antibodies, antigens, cholinergics, chemotherapeutics, hemostatics, clot dissolving agents, radioactive agents and cystostatics.

12. The microparticles of claim 1 wherein said polymeric wax has a melting point between about 25° C. and about 70° C.

13. The microparticles of claim 1 wherein said biodegradable polymer of said core comprises a second synthetic, bioabsorbable, biocompatible polymeric wax comprising the reaction product of a polybasic acid or derivative thereof, a fatty acid; and a polyol, said polymeric wax having a melting point less than about 70° C., as determined by differential scanning calorimetry.

14. The microparticles of claim 13 wherein said second polymeric wax comprises the reaction product of said polybasic acid or derivative thereof and a monoglyceride, said monoglyceride comprising the reaction product of said fatty acid and said polyol.

15. The microparticles of claim 14 wherein said polybasic acid or derivative thereof is selected from the group consisting of succinic acid, succinic anhydride, malic acid, tartaric acid, citric acid, diglycolic acid, diglycolic anhydride, glutaric acid, glutaric anhydride, adipic acid, pimelic acid, suberic acid, sebacic acid, fumaric acid, maleic acid, maleic anhydride, mixed anhydrides, esters, activated esters and acid halides.

16. The microparticles of claim 14 wherein said monoglyceride is selected from the group consisting of monostearoyl glycerol, monopalmitoyl glycerol, monomyrisitoyl glycerol, monocaproyl glycerol, monodecanoyl glycerol, monolauroyl glycerol, monolinoleoyl glycerol and monooleoyl glycerol.

17. The microparticles of claim 16 wherein said polybasic acid derivative is succinic anhydride.

18. The microparticles of claim 16 wherein said polybasic acid is succinic acid.

19. The microparticles of claim 13 wherein said second polymeric wax has a number average molecular weight between about 1,000 g/mole and about 100,000 g/mole, as measured by gel permeation chromatography using polystyrene standards.

20. The microparticles of claim 13 wherein said second polymeric wax is branched.

21. The microparticles of claim 13 wherein said second polymeric wax comprises a copolymer.

22. The microparticles of claim 21 wherein said polymeric wax copolymer comprises the reaction product of said fatty acid, said polyol, and at least two of said polybasic acids or derivatives thereof selected from the group consisting of succinic acid, succinic anhydride, malic acid, tartaric acid, citric acid, diglycolic acid and diglycolic anhydride.

23. The microparticles of claim 21 wherein said polymeric wax copolymer comprises the reaction product of said polybasic acid or derivative thereof, and at least two monoglycerides selected from the group consisting of monostearoyl glycerol, monopalmitoyl glycerol, monomyrisitoyl glycerol, monocaproyl glycerol, monodecanoyl glycerol, monolauroyl glycerol, monolinoleoyl glycerol and monooleoyl glycerol.

24. The microparticles of claim 21 wherein said wax copolymer comprises the reaction product of said polybasic acid or derivative thereof, a monoglyceride selected from the group consisting of monostearoyl glycerol, monopalmitoyl glycerol, monomyrisitoyl glycerol, monocaproyl glycerol, monodecanoyl glycerol, monolauroyl glycerol, monolinoleoyl glycerol and monooleoyl glycerol, and at least one additional polyol selected from the group consisting of ethylene glycol, 1,2-propylene glycol, 1,3-propanediol, bis-2-hydroxyethyl ether, 1,4-butanediol, 1,5-pentanediol, 1,6- hexanediol, 1,8-octanediol, 1,10-decanediol, 1,12-dodecanediol, other diols, linear poly(ethylene glycol), branched poly(ethylene glycol), linear poly(propylene glycol), branched poly(propylene glycol), linear poly(ethylene-co-propylene glycol)s and branched poly(ethylene-co-propylene glycol)s.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2013
From: ADVANCED TECHNOLOGIES AND REGNERATIVE MEDICINE, LLC
To: ETHICON, INC.
Reel/Frame 029595/0417 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2012
From: ADVANCED TECHNOLOGIES AND REGENERATIVE MEDICINE, LLC
To: ETHICON, INC.
Reel/Frame 029496/0269 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2011
From: ETHICON, INC.
To: ADVANCED TECHNOLOGIES AND REGENERATIVE MEDICINE, LLC
Reel/Frame 026286/0530 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2002
From: ROSENBLATT, JOEL; CUI, HAN; KATARIA, RAM L.; WU, CHUANBIN
To: ETHICON, INC.
Reel/Frame 013060/0848 →