IL198804A

Intraocular drug delivery systems including microspheres comprising a therapeutic agent and polylactic acid and use thereof in the preparation of medicaments

Abstract

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IL198804A, drawing sheet 1
Sheet 1 of 7

Term

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2 claims: 2 independent, 0 dependent

  1. 1
    We claim:1. A biocompatible, injectable intraocular drug delivery system comprising: (a) a plurality of microspheres with an average diameter between about 2 microns and about 6 microns, and (b) an aqueous vehicle for the microspheres, wherein the microspheres consist essentially of: (1) a therapeutic agent which is an estradiol, and (2) one or more biodegradable polymers, all of which biodegradable polymers are polylactic acid (PLA) polymers, and wherein the drug delivery system has a viscosity which permits the drug delivery system to be injected into an intraocular location through a 20 to 30 gauge syringe needle. 2. The drug delivery system of claim 1, wherein the estradiol is a 2methoxyestradiol. 3. The drug delivery system of claim 1, wherein the estradiol comprises from about 20 wt % to about 50 wt % of the weight of the microspheres and the PLA polymer comprises from about 50 wt % to about 80 wt % of the weight of the microspheres. 4. The drug delivery system of claim 1, wherein the PLA polymer is a poly(D,L) lactide polymer. 5. The drug delivery system of claim 1, wherein the PLA polymer has an inherent viscosity of between about 1 dL/gm and about 1.4 dL/gm. 6. The drug delivery system of claim 1, wherein the microspheres have an average diameter of about 4 microns. 7. The drug delivery system of claim 1, wherein the microspheres consist essentially of: (1) a 2-methoxyestradiol, wherein the 2-methoxyestradiol comprises from about 20 wt % to about 50 wt % of the weight of the microspheres, and;
  2. 2
    (2) one or more biodegradable polymers, all of which biodegradable polymers are poly(D,L) lactide polymers with an inherent viscosity of between about 1 dL/gm and about 1.4 dL/gm, wherein the PLA polymer comprises from about 50 wt % to about 80 wt % of the weight of the microspheres, and; wherein the drug delivery system can be injected into an intraocular location through a 20 to 26 gauge syringe needle. 8. Use of a biocompatible drug delivery system comprising a plurality of microspheres with an average diameter between about 2 microns and about 6 microns and an aqueous vehicle for the microspheres, wherein the microspheres consist essentially of a therapeutic agent which is an estradiol and one or more biodegradable polymers, all of which biodegradable polymers are polylactic acid (PLA) polymers, in the preparation of a medicament which is suitable to be injected into an intraocular location through a 20 to 26 gauge syringe needle, thereby treating an ocular condition, wherein the treatment does not result in significant ocular surface hyperemia. 9. The use of claim 1, wherein the intraocular location is a sub-Tenon, subconjunctival or retrobulbar intraocular location. 10. A biocompatible, injectable intraocular drug delivery system comprising:(a) a plurality of microspheres with an average diameter between about 8 microns and about 14 microns, and (b) an aqueous vehicle for the microspheres, wherein the microspheres consist essentially of: (1) a therapeutic agent which is an alpha 2 adrenergic agonist, and (2) one or more biodegradable polymers, all of which biodegradable polymers are polylactic acid (PLA) polymers, and wherein the drug delivery system has a viscosity at 20°C. of between about 15,000 cps and about 100,000 cps which permits the drug delivery system to be injected into an intraocular location through a 24 to 30 gauge syringe needle. 11. The drug delivery system of claim 10, wherein the alpha 2 adrenergic agonist is a brimonidine. 12. The drug delivery system of claim 10, wherein the alpha 2 adrenergic agonist comprises from about 0.5 wt % to about 15 wt % of the microspheres and the PLA polymer comprises from about 85 wt % to about 99.5 wt % of the microspheres. 13. The drug delivery system of claim 10, wherein the PLA polymer is a poly(D, L) lactide polymer. 14. The drug delivery system of claim 10, wherein the PLA polymer has an inherent viscosity of between about 0.4 dL/gm and about 0.8 dL/gm. 15. The drug delivery system of claim 10, wherein the microspheres have an average diameter of about 11 microns. 16. The drug delivery system of claim 10, wherein the microspheres can release between about 0.5 pg/day to about 20 pg/day of the alpha 2 adrenergic agonist over a period of time of between about 10 days and about 100 days. 17. The drug delivery system of claim 10, wherein the microspheres consist essentially of: (1) a brimonidine, wherein the brimonidine comprises from about 0.5 wt % to about 15 wt % of the microspheres, and;(2) one or more biodegradable polymers, all of which biodegradable polymers are poly(D,L) lactide polymers with an inherent viscosity of between about 0.4 dL/gm and about 0.8 dL/gm, wherein the PLA polymer comprises from about 85 wt % to about 99.5 wt % of the microspheres, and;wherein the drug delivery system can be injected into an intraocular location through a 20 to 26 gauge syringe needle and the microspheres can release between about 0.5 pg/day to about 20 pg/day of the brimonidine a period of time of between about 10 days and about 100 days. 18. Use of a biocompatible drug delivery system comprising a plurality of microspheres with an average diameter between about 8 microns and about 14 microns and an aqueous vehicle for the microspheres, wherein the microspheres consist essentially of a therapeutic agent which is an alpha 2 adrenergic agonist and one or more biodegradable polymers, all of which biodegradable polymers are polylactic acid (PLA) polymers or polyortho esters in the preparation of a medicament which is suitable to be injected into an intraocular location through a 20 to 26 gauge syringe needle, thereby treating an ocular condition, wherein the treatment does not result in significant ocular surface hyperemia. 19. The use of claim 18, wherein the therapeutic agent is a brimonidine. 20. Use of claim 19, wherein the brimonidine is brimonidine tartrate. 21. The use of claim 18, wherein the intraocular location is a sub-Tenon, subconjunctival, suprachoroidal, intrascleral, intravitreal or retrobulbar intraocular location. 22. Use of any one of claims 18 - 21, wherein all of the biodegradable polymers are polylactic acid polymers. 23. Use of claim 18, wherein: the therapeutic agent is brimonidine tartrate, all of the biodegradable polymers are polylactic acid polymers, the ocular location is an anterior sub Tenon's space, and the ocular condition is ocular hypertension. St^tMtarahi, Ph.D. ^miford T. Colb & Co. C: 64867 ALLERGAN, INC.