EP1900382A2

Bioabsorbable polymeric implants and a method of using the same to create occlusions

Abstract

A new embolic agent, bioabsorbable polymeric material (BPM) is incorporated to a Guglielmi detachable coil (GDC) to improve long-term anatomic results in the endovascular treatment of intracranial aneurysma. The embolic agent, comprised at least in part of at least one biocompatible and bioabsorbable polymer and growth factors, is carried by hybrid bioactive coils and is used to accelerate histopathologic transformation of unroganized clot into fibrous connective tissue in experimental aneurysms. An endovascular cellular manipulation and inflammatory response are elicited from implantation in a vascular compartment or any intra-luminal location. Thrombogenicity of the biocompatible and bioabsorbable polymer is controlled by the composition of the polymer. The coil further is comprised at least in part of a growth factor or more particularly a vascular endothelial growth factor, a basic fibroblast growth factor or other growth factors. The biocompatible and bioabsorbable polymer is in the illustrated embodiment at least one polymer selected from the group consisting of polyglycolic acid, poly-glycolic/poly-L-lactic acid copolymers, polycaprolactive, polyhydroxybutyrate/hydroxyvalerate copolymers, poly-L-lactide, polydioxanone polycarbonates, and polyanhydrides.

EP1900382A2, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 11 February 2022, 4.6 years ago.

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20 claims: 7 independent, 13 dependent

  1. 1
    An endovascular apparatus for developing an inflammatory response in a body cavity with cellular manipulation comprising:a separable implant comprised at least in part of at least one biocompatible and bioabsorbable polymer;and an endovascular placement device associated with said separable implant adapted to dispose said implant into said body cavity.
  2. 3
    An endovascular apparatus for developing an inflammatory response in a body cavity with cellular manipulation, which implant includes a separable implant comprised at least in part of at least one biocompatible and bioabsorbable polymer;and an endovascular placement device associated with the separable implant adapted to dispose the implant into the body cavity, characterised in that the biocompatible and bioabsorbable polymer is a polyglycolic/poly-L-lactic acid copolymer (PLGA).
  3. 16
    The apparatus of any one of claims 13 to 15 where the biocompatible and bioabsorbable polymer has a polymer composition defined as a mixture of polyglycolic/poly-L-lactic acid copolymers with a predetermined molar ratio of glycolic to L-lactic acid, which molar ratio is selected according to the optimization or control of the regeneration of tissue through interaction of immunologic cells, the degradation time of the bioabsorbable polymer, and/or the degree of tissue reaction desired.
  4. 17
    The apparatus of any one of the preceding claims wherein the biocompatible and bioabsorbable polymer is a polyglycolic/poly-L-lactic acid copolymer (PLGA) that, on disposing the implant into the body cavity, results, 14 days after disposal of the implant, in an inflammatory response and formation of connective tissue.
  5. 18
    The apparatus of any one of the preceding claims wherein the biocompatible and bioabsorbable polymer is a polyglycolic/poly-L-lactic acid copolymer (PLGA) that, on disposing the implant into the body cavity, results, 14 days after disposal of the implant, in an inflammatory response and formation of connective tissue wherein fibroblasts and macrophages are dominant cells.
  6. 19
    The apparatus of any one of the preceding claims wherein the biocompatible and bioabsorbable polymer is a polyglycolic/poly-L-lactic acid copolymer (PLGA) containing a 90/10 molar ratio of glycolic to L-lactic acid.
  7. 20
    A biocompatible and bioabsorbable polymer which is a polyglycolic/poly-L-lactic acid copolymer (PLGA) for use in developing an inflammatory response in a body cavity in which the PLGA is comprised in a separable implant for disposing into the body cavity.