Sustained release ionic conjugate

6911218
Add to folder: View Folders  
Keywords to Highlight:

full-text

print

pdf

permalink

Inventors

Ignatious, Francis Xavier
Loughman, Thomas Ciaran
Shalaby, Shalaby Wahba
Touraud, Franck Jean-Claude

Application #

171740

Filed

Apr-22-1997

Published

Jun-28-2005

Current US Class

264/4.1
264/4.6
424/501
424/502
427/213.3
427/213.36

International Classes

A61K 009//50; B01J 013//02; B05D 007//00; B32B 015//02

Field of Search

424/501 424/502 424/426 424/489 424/497 424/499 264/41 264/46 427/213.3 427/213.36 428/402.21 514/772.3 514/2 514/800 514/806

Assignee

Ipsen Manufacturing Ireland Limited (Dublin, IE)

Examiners

Azpuru; Carlos A.

Attorney, Agent or Firm

Morrill; Brian R., Feeney; Alan F., Fish & Richardson

US Patent References

4767628   Continuous release...
5084553   Copolymers of lacti...
5480656   Prolonged release...
5643607   Prolonged release...
5814342   Prolonged release...

Referenced by:

View Backward References

Citation

Cite This Patent

More From Subclass 4.1

5009819   Taste moderating c...
6740335   Liposomal camptot...
4687661   Method for produci...
5019394   Liposome compositi...
6007838   Process for making...
6500447   pH-sensitive microc...
5165994   Spontaneous equil...
6045824   Sustained-release li...
5837282   Ionophore-mediate...
5558820   Process for prepari...
4963367   Drug delivery com...
6322809   Liposomes containi...
5576017   Heterovesicular lip...
5747066   Mixed micelles
5000959   Liposome compositi...
5662931   Process for prepari...
4756910   Adriamycin-entrap...
6309569   Encapsulation of bi...
5030442   Non-crystalline mi...
5589189   Liposome dispersion
5500224   Pharmaceutical co...
4921644   Mucin directed lips...
4925661   Target-specific cytot...
5112688   Microcapsules cont...
5288499   Sterodial liposomes
5496728   Encapsulation of li...
5785987   Method for loading...
5540936   Method of producin...
4954298   Method for produci...
6616948   Starch
5891714   Cationic phospholi...
6835394   Polymersomes and...
6518413   Utrophin gene expr...
6656497   Liposomal vector fo...
6270700   Encapsulation of w...
4762720   Process for prepari...
6224793   Encapsulated activ...
5364633   Silicone vesicles an...
4536324   Nonionic surfactant...
5104661   Reverse loading of...
4277364   Encapsulation by e...
5824345   Fragrances and fla...
5853755   Biphasic multilame...
6352716   Steroidal liposomes
6488870   Encapsulation proc...
4921633   Method of heteroge...
5284663   Salt film encapsula...
4250098   Chromogenic com...
5053277   Microcapsules and...
5364632   Medicinal emulsions
6849269   Proliposomal drug...
5470512   Process for produci...
6586107   Microcapsules havi...
5716640   Method of producin...
6565777   Encapsulation of bi...
4148875   Visible action gel to...
5405558   Method of manufac...
5648095   Preparation of micr...
5252348   Artificial viral enve...
4933121   Process for forming...
5169635   Photoresponsive lip...
6767637   Microencapsulatio...
 

More From Class 264

5141690   Method for manufa...
6309569   Encapsulation of bi...
4726707   Composite article
4199348   Mineral ore pellets
4311661   Resin impregnatio...
4066568   Method of producin...
4680214   Reinforced foam c...
5599606   Sheet-like sandwic...
6607685   Method of producin...
4379108   Strengthening phos...
5023086   Encapsulated iono...
5296187   Methods for manuf...
 
Abstract
A method of spherifying a sustained release ionic conjugate which contains a free carboxyl group-containing biodegradable polymer and a free amino group-containing drug which are ionically bonded to each other.
 
Claims
1. A method of making microparticles of a sustained release ionic conjugate containing a free carboxyl group-containing biodegradable polymer and a free amino group-containing drug which are ionically bonded to each other, the method comprising:

obtaining a first solution in which said conjugate is dissolved, wherein said solution comprises at least one part acetone, acetonitrile, ethyl acetate, tetrahydrofuran, glyme or any combination thereof;

adding said first solution through an atomizing nozzle to a ethanol or isopropyl alcohol to form a dispersion, wherein said conjugate precipitates out of said dispersion; and

isolating said conjugate from said dispersion.

2. A method according to claim 1, wherein said drug is a peptide.



Description
TECHNICAL FIELD

This invention relates to sustained release drug delivery systems and, in particular, to a method of making microparticles of a sustained release ionic conjugate.

BACKGROUND ART

Biodegradable polymeric drug delivery formulations have been developed and utilized for the controlled in vivo release of drugs. See e.g., U.S. Pat. Nos. 3,773,919 and 4,767,628. Such biodegradable polymeric formulations are designed to allow an entrapped drug to slowly diffuse through a polymer matrix or coating when the biodegradable polymer is depolymerized.

International Publication No. WO 94/15587 describes sustained release ionic molecular conjugates of polyesters and drugs. Since polyester degradation is a key step in the release process, the surface area of the conjugate particles can control the release profile of the drug from the conjugate. Thus, the conjugate particles should be of similar size and shape to insure both the minimum and reproducible surface area, e.g., microspheres.
 
  Methods and compositions are described for the preparation of bioactive agents entrapped in lipid vesicles the bilayers of which comprise a salt form of...  The present invention relates to a sustained-release injection, which comprises a suspension of a powder comprising an active ingredient and a pharmaceutically...