Claims
- 1. A biocompatible and/or biodegradable implant for controlled release, by diffusion, of a therapeutic agent into an outside medium at a site of the implant which comprises a body consisting of:
- a core defining a solid mass having walls and being formed of a first biocompatible and/or biodegradable polymeric material, said core having embedded therein a plurality of granules of the therapeutic agent and said core allowing for diffusion of the therapeutic agent into the outside medium; and
- a coating of a second biocompatible and/or biodegradable polymeric material which prevents the diffusion of the therapeutic agent into the outside medium, said coating covering all but one of the walls of the solid mass;
- wherein the degradation half-lifes of the first and the second polymeric materials are longer than diffusion half-life of the therapeutic agent when biodegradable polymers are used; and
- further wherein the size of the granules increase from the one uncovered wall to an opposite wall thereof, thus providing, in the core, a concentration gradient allowing controlled diffusion of the therapeutic agent from the uncovered wall.
- 2. A device as defined in claim 1, wherein said polymeric material is poly(.epsilon.-caprolactone).
- 3. A device as defined i claim 1, wherein said mass is cylindrically shaped and wherein said uncovered wall is one of the two opposite end walls of the cylindrically shaped mass.
- 4. A method for the production of a biocompatible and/or biodegradable implant, according to claim 1, for controlled release, by diffusion, of a therapeutic agent into an outside medium at a sit of the implant, aid implant including a core defining a solid mass having walls and being formed of a first biocompatible and/or biodegradable polymeric material, said implant also including a coating of a second biocompatible and/or biodegradable polymeric material which prevents diffusion of the therapeutic agent into the outside medium, said method comprising the steps of:
- (a) heating a mixture of said therapeutic agent and said first polymeric material to obtain a liquid state or a semi-solid state;
- (b) removing air bubbles from the mixture under vacuum;
- (c) sedimenting the mixture freed of air bubbles by step (b) in a container to obtain a matrix;
- (d) cutting the container and removing the matrix obtained in step (c) to form the core; and
- (e) covering all but one of said walls of said core with said coating.
- 5. The method of claim 4, wherein the sedimenting in step (c) is accomplished by centrifuging the mixture freed of air bubbles.
RELATED APPLICATION
This application is a continuation-in-part of U.S. application Ser. No. 07/663,390, filed on Mar. 4, 1991.
US Referenced Citations (10)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0297650 |
Jan 1989 |
EPX |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
663390 |
Mar 1991 |
|