Claims
- 1. A microcapsule consisting of:
a core containing cellular material consisting of cells and cell aggregates; and a conformal, semi-permeable coating of angiogenic material over the core, the angiogenic material consisting of a biocompatible polymer and a vascularizing compound consisting of polymerizable compounds capable of forming anions, wherein, when implanted in animal tissue, said microcapsule promotes generation of blood vessels in its immediate vicinity and induces minimal or no fibrous capsule formation.
- 2. The microcapsule of claim 1, wherein said core additionally consists of a bioactive compound consisting of growth factors, attachment matrices and immobilization matrices.
- 3. The microcapsule of claim 1, wherein said cellular material comprises mammalian cells which produce a bioactive cellular product.
- 4. The microcapsule of claim 1, wherein said biocompatible polymer consists of polyacrylates.
- 5. The microcapsule of claim 1, wherein said vascularization compound consists of a polymerizable compound containing an ionizable group consisting of sulfates, sulfonic acid groups or carboxyl groups.
- 6. The microcapsule of claim 1, wherein said vascularization compound consists of acrylic acid, methacrylic acid, crotonic acid, itaconic acid, vinylsulfonic acid or vinylacetic acid.
- 7. The microcapsule of claim 6, wherein said vascularization compound consists of methacrylic acid which is incorporated into the biocompatible polymer at the time of polymerization.
- 8. The microcapsule of claim 1, wherein the microcapsule has a diameter of no more than about 500 μm.
- 9. An angiogenic material consisting of a biocompatible polymer and a vascularizing compound consisting of polymerizable compounds capable of forming anions; wherein, when implanted in animal tissue, said angiogenic material promotes generation of blood vessels in its immediate vicinity and induces minimal or no fibrous capsule formation.
- 10. The angiogenic material of claim 9, wherein said angiogenic material is in the form of a microsphere having a diameter of less than about 200 μm.
- 11. The angiogenic material of claim 9, wherein said biocompatible polymer consists of polyacrylates.
- 12. The angiogenic material of claim 9, wherein said vascularization compound consists of a polymerizable compound containing an ionizable group consisting of sulfates, sulfonic acid groups or carboxyl groups.
- 13. The angiogenic material of claim 9, wherein said vascularization compound consists of acrylic acid, methacrylic acid, crotonic acid, itaconic acid, vinylsulfonic acid or vinylacetic acid.
- 14. The angiogenic material of claim 9, wherein said vascularization compound consists of methacrylic acid which is incorporated into the biocompatible polymer at the time of polymerization.
- 15. A method for increasing blood flow in the vicinity of a wound consisting of bed sores, venous ulcers, diabetic ulcers or bum wounds, wherein,
microspheres consisting of an angiogenic material are applied to the surface of the wound or are incorporated into a wound care product applied to the surface of the wound, said wound care product consisting of wet dressings, dry dressings, occulusive dressings, non-occlusive dressings or wound pastes, said angiogenic material consisting of a biocompatible polymer and a vascularizing compound consisting of polymerizable compounds capable of forming anions and which promote the growth of blood vessels, which, when implanted in animal tissue, said angiogenic material promotes generation of blood vessels in its immediate vicinity and induces minimal or no fibrous capsule formation.
- 16. A method for increasing blood flow to transplanted cadaverous gum tissue, wherein:
microspheres consisting of an angiogenic material are positioned between the transplanted tissue and a host tissue along a suture line, said angiogenic material consists of a biocompatible polymer and a vascularizing compound consisting of polymerizable compounds capable of forming anions and which promote the growth of blood vessels, which, when implanted in animal tissue, said angiogenic material promotes generation of blood vessels in its immediate vicinity and induces minimal or no fibrous capsule formation.
- 17. A microsphere consisting of an angiogenic material consisting of a biocompatible polymer and a vascularizing compound consisting of polymerizable compounds capable of forming anions,
wherein, when implanted in animal tissue, said microsphere promotes generation of blood vessels in its immediate vicinity and induces minimal or no fibrous capsule formation.
- 18. The microsphere of claim 17, wherein said biocompatible polymer consists of polyacrylates.
- 19. The microsphere of claim 17, wherein said vascularization compound consists of a polymerizable compound containing an ionizable group consisting of sulfates, sulfonic acid groups or carboxyl groups.
- 20. The microsphere of claim 17, wherein said vascularization compound consists of acrylic acid, methacrylic acid, crotonic acid, itaconic acid, vinylsulfonic acid or vinylacetic acid.
- 21. The microsphere of claim 17, wherein said vascularization compound consists of methacrylic acid which is incorporated into the biocompatible polymer at the time of polymerization.
- 22. A method of increasing blood flow in the vicinity of a wound consisting of bed sores, venous ulcers, diabetic ulcers or burn wounds, wherein
an angiogenic material is applied to the surface of the wound or is incorporated into a wound care product applied to the surface of the wound, said wound care product consisting of wet dressings, dry dressings, occulusive dressings, non-occlusive dressings or wound pastes, said angiogenic material consisting of a biocompatible polymer and a vascularizing compound consisting of polymerizable compounds capable of forming anions and which promote the growth of blood vessels, which, when implanted in animal tissue, said angiogenic material promotes generation of blood vessels in its immediate vicinity and induces minimal or no fibrous capsule formation.
- 23. A method for increasing blood flow to transplanted cadaverous gum tissue, wherein:
an angiogenic material is positioned between the transplanted tissue and a host tissue along a suture line, said angiogenic material consists of a biocompatible polymer and a vascularizing compound consisting of polymerizable compounds capable of forming anions and which promote the growth of blood vessels, which, when implanted in animal tissue, said angiogenic material promotes generation of blood vessels in its immediate vicinity and induces minimal or no fibrous capsule formations.
- 24. A method as claimed in claim 22, wherein said vascularization compound consists of a polymerizable compound containing an ionizable group consisting of surfaces, sulfonic acid groups or carboxyl groups.
- 25. A method as claimed in claim 22, wherein said vascularization compound consists of acrylic acid, methacrylic acid, crotonic acid, itaconic acid, vinylsulfonic acid or vinylacetic acid.
- 26. A method as claimed in claim 22, wherein said biocompatible polymer consists of polyacrylates.
- 27. A method as claimed in claim 22, wherein said vascularization compound consists of methacrylic acid which is incorporated into the biocamptible polymer at the time of polymerization.
- 28. A method as claimed in claim 23, wherein said vascularization compound consists of a polymerizable compound containing an ionizable group consisting of sulfaces, sulfonic acid groups or carboxyl groups.
- 29. A method as claimed in claim 23, wherein said vascularization compound consists of acrylic acid, methacrylic acid, crotonic acid, itaconic acid, vinylsulfonic acid or vinylacetic acid.
- 30. A method as claimed in claim 23, wherein said biocompatible polymer consists of polyacrylates.
- 31. A method as claimed in claim 33, wherein said vascularization compound consists of methacrylic acid which is incorporated into the biocamptible polymer at the time of polymerization
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 2,161,863 |
Oct 1995 |
CA |
|
RELATED APPLICATIONS
[0001] This application is a divisional application of applicants' pending United States patent application Ser. No. 09/069,544 filed on Apr. 30, 1998 as a continuation application of PCT International patent application Ser. No. PCT/CA96/00725 designating the United States, filed on Oct. 31, 1996.
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09069544 |
Apr 1998 |
US |
| Child |
09739662 |
Dec 2000 |
US |