CA2020477C

Sustained release formulations of water soluble peptides

Abstract

A sustained release formulation of a peptide drug compound,preferably a somatostatin like octreotide, e.g. as a pamoatesalt. The drug compound is present in a polymeric carrier,preferably a polylactide-co-glycolide, especially apoly(lactide-co-glycolide)glucose. The formulation ispreferably a depot formulation in the form of a monolithicmicroparticle.

CA2020477C, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 5 July 2010, 16.2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

18 claims: 8 independent, 10 dependent

  1. 1
    - 33 - 600-7110 WHAT WE CLAIM IS:1. A process for the production of a microparticle comprising a drug in a biodegradable, biocompatible polymeric carrier, which comprises the steps of:a) dissolving the polymeric carrier material in a solvent in which the drug compound is not soluble, b) adding and dispersing a solution of the drug compound in a solvent which is a non-solvent for the polymer in the solution of step a), c) adding a phase inducing agent to the dispersion of step b), co induce microparticle formation, d) adding an oil-in-water emulsion to the mixture of step c) to harden the microparticle, and e) recovering the microparticle.
  2. 3
    A process for producing microparticles comprising a drug in a biodegradable, biocompatible carrier, which comprises (i) intensively mixing a water-in-oil emulsion formed from an aqueous medium and a water-immiscible organic solvent containing in one phase the drug and in the other a biodegradable, biocompatible polymer with an excess of aqueous medium, containing an emulsifying substance or a protective colloid, to form a water-in-oil-in-water emulsion without adding any drug Λ 20204 77- 34 600-7110 retaining substance to the vater-in-oil emulsion or applying any intermediate viscosity increasing step, ii) desorbing the organic solvent therefrom, iii) isolating and drying the resultant microparticles.
  3. 4
    A process for producing microparticles comprising a drug compound in a biodegradable, biocompatible polymer, vhich comprises i) intensively mixing a drug compound suspension formed from a drug compound and a vater-immiscible organic solvent containing a biodegradable, biocompatible polymer with an excess of aqueous medium, containing an emulsifying substance or a protective colloid, to form an oil in water emulsion, the drug compound being dispersed in the oil component, without adding any drug retaining substance or applying any intermediate viscosity increasing step, ii) desorbing the organic solvent therefrom, iii) isolating and drying the resultant microparticles.
  4. 5
    A process for the production of microparticles vhich comprises intensively mixing:a) a solution of a drug in an aqueous medium and b) a solution of a polymer in an organic solvent, not miscible with the aqueous medium, intensively mixing the water-in-oil-emulsion of a) and b) together with c) an excess of an aqueous medium containing a protective colloid, without adding any drug retaining substance to A - 35 - 600-7110 the vater-in-oil emulsion or applying any intermediate viscosity increasing step, hardening the embryonic microparticles in the formed water-in-oil-in-water-emulsion by desorption, and isolating the generated microparticles.
  5. 13
    A process for the production of microparticles which comprises intensively mixing:a) a solution of a somatostatin in water or a buffer in a veight/volume ratio of 0.8 to 4.0g / 1 to 120 ml and b) a solution of a polylactide-co-glycolide in an organic solvent, not miscible with the aqueous medium, in a veight/volume ratio of 40g/90 to 400ml in such a manner that the veight/veight ratio of the drug to the polymer - 36 - 600-7110 is from 1/10 to 50 and the volume/volume ratio of the aqueous medium/organic solvent is 1/1.5 to 30, intensively mixing the w / o -emulsion of a) in b) together with c) an excess of water or a buffer containing a protective colloid at a volume/volume mixing speed ratio of ab) / c) of from 1/10 to 100, without adding any drug retaining substance to the water-in-oil emulsion or applying any intermediate viscosity increasing step, hardening the embryonic microparticles in the formed w / o / w -emulsion by evaporation of the organic solvent and isolating the generated microparticles.
  6. 15
    A process for the production of microparticles which comprises intensively mixing:a) a solution of a somatostatin in an aqueous medium in a weight/volume ratio of 2.5g/10ml and b) a solution of a polylactide-co-glycolide in an organic solvent, not miscible with the aqueous medium in a weight/volume ratio of 40g/ 100 ml in such a manner that the weight/weight ratio of the drug to the polymer is 1/16 and the volume/volume ratio of the aqueous medium/organic solvent is 1/10, intensively mixing the w / 0 ~emulsion of a) in b) together with c) an excess of an aqueous medium containing a protective colloid in a concentration of 0.01 to 15.0£ at a volume/volume mixing speed ratio of ab) / c) of 1/40, without adding any drug retaining substance to the water-in-oil emulsion or applying any intermediate viscosity increasing step, hardening the embryonic microparticles in the formed '//'-emulsion by evaporation of the organic solvent and isolating the generated microparticles.
  7. 16
    A process for the production of microparticles which comprises intensively mixing:a) a solution of octreotide in a weight/volume ratio of 2.5g/10ml in a buffer of pH 3-8 and b) a solution of a polylactide-co-glycolide in methylene chloride in a weight/volume ratio of 40g/100ml in such a manner that the weight/weight ratio of the drug to the polymer is 1/16 and the volume/volume ratio of the aqueous medium/organic solvent is 1/10, intensively mixing the w / 0 -emulsion of a) in b) together with c) an excess of a buffer of a pH 3-8, containing gelatine in a concentration of 0.5% of weight at a volume/volume mixing speed ratio of ab) I c) of 1/40, without adding any drug retaining substance to the water-in-oil emulsion or applying any intermediate viscosity increasing step, hardening the embryonic microparticles in the formed /^-emulsion by evaporation of the methylene chloride and by isolating, washing and drying the generated microparticles.
  8. 18
    A process for producing microparticles comprising octreotide or a salt or a derivative thereof in a biodegradable, biocompatible polymeric carrier, which comprises mixing the octreotide or a solution of it in methanol or water or a buffer of pH 3-8 and a solution of a polylactide co-glycolide in methylene chloride and spraying the formed suspension solution or emulsion of drug compound in the polymer solution in a stream of warm air, collecting microspheres and washing them in a buffer solution of pH 3.0 to 8.0 or distilled water and drying them in a vacuum at a temperature of from 20 to