Claims
- 1. An embolic composition comprising macromers having a polymeric backbone comprising units with a 1,2-diol or 1,3-diol structure and at least two pendant chains bearing crosslinkable groups, wherein the macromers can be crosslinked to form a hydrogel.
- 2. The embolic composition of claim 1, wherein the polymer is a polyhydroxy polymer.
- 3. The embolic composition of claim 2, wherein the pendant chains bearing crosslinkable groups are attached to the backbone via the 1,2-diol or 1,3-diol groups.
- 4. The embolic composition of claim 3, wherein the pendant chains bearing crosslinkable groups are attached to the backbone via cyclic acetal linkages.
- 5. The embolic composition of claim 1, wherein the backbone polymer comprises poly(vinyl alcohol) (PVA) and copolymers thereof.
- 6. The embolic composition of claim 1, wherein the macromer comprises units having the formula:
- 7. The embolic composition of claim 1, wherein the macromer further comprises pendant modifier groups.
- 8. The embolic composition of claim 1, further comprising an active agent.
- 9. The embolic composition of claim 1, wherein the macromers form a hydrogel that is biodegradable.
- 10. The embolic composition of claim 1, further comprising a contrast agent.
- 11. The embolic composition of claim 1, further comprising a copolymerizable monomer.
- 12. The embolic composition of claim 1, wherein the crosslinkable groups are crosslinkable via free radical polymerization.
- 13. The embolic composition of claim 12, wherein the crosslinkable groups are olefinically unsaturated groups.
- 14. The embolic composition of claim 12, wherein the free radical polymerization is redox initiated.
- 15. The embolic composition of claim 1, wherein the macromers are crosslinked into a hydrogel prior to administration to the patient.
- 16. The embolic composition of claim 15, wherein the hydrogel article is a microsphere.
- 17. The embolic composition of claim 1, wherein the macromers are polymerized in situ.
- 18. An embolic composition comprising macromers that can be crosslinked in situ to form a hydrogel, wherein the macromers have a polymeric backbone comprising units with a 1,2-diol or 1,3-diol structure and at least two pendant chains bearing groups that are crosslinkable via redox initiated free radical polymerization, wherein the composition comprises a first component comprising a reductant and a second component comprising an oxidant wherein the macromers are present in either or both components.
- 19. The embolic composition of claim 18, wherein the first and second components can be delivered to the intended site of embolization with a microcatheter.
- 20. The embolic composition of claim 18, wherein the backbone polymer is a polyhydroxy polymer.
- 21. The embolic composition of claim 18, wherein the pendant chains bearing crosslinkable groups are attached to the backbone via the 1,2-diol or 1,3-diol groups.
- 22. The embolic composition of claim 21, wherein the pendant chains bearing crosslinkable groups are attached to the backbone via cyclic acetal linkages.
- 23. The embolic composition of claim 18, wherein the polymer comprises poly(vinyl alcohol) (PVA) and copolymers thereof.
- 24. The embolic composition of claim 18, wherein the macromer comprises units having the formula:
- 25. The embolic composition of claim 18, wherein the macromer further comprises pendant modifier groups.
- 26. The embolic composition of claim 18, further comprising an active agent.
- 27. The embolic composition of claim 18, wherein the macromers form a hydrogel that is biodegradable.
- 28. The embolic composition of claim 18, further comprising a contrast agent.
- 29. The embolic composition of claim 18, further comprising a copolymerizable monomer.
- 30. The embolic composition of claim 18, wherein the crosslinkable groups are olefinically unsaturated groups.
- 31. A method for embolization, comprising the steps:
providing a composition comprising macromers having a polymeric backbone comprising units with a 1,2-diol or 1,3-diol structure and at least two pendant chains bearing crosslinkable groups; delivering the composition to the intended site of embolization, or upstream of the intended site; and crosslinking the macromers to form a hydrogel.
- 32. The method of claim 31, wherein the polymeric backbone comprises a polyhydroxy polymer.
- 33. The method of claim 31, wherein the pendant chains bearing crosslinkable groups are attached to the backbone via the 1,2-diol or 1,3-diol groups.
- 34. The method of claim 33, wherein the pendant chains bearing crosslinkable groups are attached to the backbone via cyclic acetal linkages.
- 35. The method of claim 31, wherein the polymer comprises poly(vinyl alcohol) (PVA) and copolymers thereof.
- 36. The method of claim 31, wherein the macromer comprises units having the formula:
- 37. The method of claim 31, wherein the macromer further comprises pendant modifier groups.
- 38. The method of claim 31, further comprising administering an active agent.
- 39. The method of claim 38, wherein the active agent is a chemotherapeutic agent.
- 40. The method of claim 38, wherein the active agent is encapsulated in the hydrogel and the hydrogel releases the chemotherapeutic agent over a period of time ranging from about 1 day to 6 months.
- 41. The method of claim 31, wherein the hydrogel is biodegradable.
- 42. The method of claim 31, further comprising administering a contrast agent.
- 43. The method of claim 31, wherein the composition further comprises a copolymerizable monomer.
- 44. The method of claim 1, wherein the crosslinkable groups are crosslinkable via free radical polymerization.
- 45. The method of claim 44, wherein the crosslinkable groups are olefinically unsaturated groups.
- 46. The embolic composition of claim 44, wherein the free radical polymerization is redox initiated.
- 47. The method of claim 31, wherein the macromers are crosslinked into a hydrogel prior to delivery of the composition.
- 48. The method of claim 31, wherein the macromers are polymerized in situ.
- 49. The method of claim 46, wherein the macromers are crosslinked via redox initiated free radical polymerization and the composition comprises a first component comprising a reductant and a second component comprising an oxidant wherein the macromers are present in either or both components.
- 50. An embolic composition comprising hydrogel articles formed from macromers.
- 51. The embolic composition of claim 50, wherein the macromers have a polymeric backbone comprising units with a 1,2-diol or 1,3-diol structure and at least two pendant chains bearing crosslinkable groups, wherein the macromers are crosslinked to form a hydrogel.
- 52. The embolic composition of claim 51, wherein the polymeric backbone comprises a polyhydroxy polymer.
- 53. The embolic composition of claim 51, wherein the pendant chains bearing crosslinkable groups are attached to the backbone via the 1,2-diol or 1,3-diol groups.
- 54. The embolic composition of claim 53, wherein the pendant chains bearing crosslinkable groups are attached to the backbone via cyclic acetal linkages.
- 55. The embolic composition of claim 51, wherein the polyhydroxy polymer comprises poly(vinyl alcohol) (PVA) and copolymers thereof.
- 56. The embolic composition of claim 50, wherein the macromer comprises units having the formula:
- 57. The embolic composition of claim 51, wherein the macromer further comprises pendant modifier groups.
- 58. The embolic composition of claim 50, further comprising an active agent.
- 59. The embolic composition of claim 50, wherein the hydrogel is biodegradable.
- 60. The embolic composition of claim 50, further comprising a contrast agent.
- 61. The embolic composition of claim 51, wherein the crosslinkable groups are crosslinked via free radical polymerization.
- 62. The embolic composition of claim 61, wherein the crosslinkable groups are olefinically unsaturated groups.
- 63. The embolic composition of claim 61, wherein the free radical polymerization is redox initiated.
- 64. The embolic composition of claim 50, wherein the hydrogel articles are microspheres.
- 65. The embolic composition of claim 56, wherein the hydrogel articles are microspheres.
- 66. A method for embolization comprising administering the preformed articles of claim 50.
- 67. A method for embolization comprising administering the preformed articles of claim 66.
- 68. A method for embolization comprising administering the embolic composition of claim 1.
- 69. A method for embolization comprising administering the embolic composition of claim 18.
- 70. A method for treatment of a uterine fibroid, comprising administering the embolic composition of claim 1 to a vessel feeding the fibroid to occlude the vessel.
- 71. A method for treatment of a tumor, comprising administering the embolic composition of claim 1 to a vessel feeding the tumor to occlude the vessel.
- 72. A method for treatment of an endoleak comprising administering the embolic composition of claim 1 to seal the endoleak.
- 73. The method of claim 72, wherein sealing the endoleak comprises partially or completely filling the aneurysm sac with the embolic composition.
- 74. A method for treatment of an arteriovenous malformation comprising administering the embolic composition of claim 1 to occlude the malformation.
RELATED APPLICATIONS
[0001] This application claims priority to U.S. Ser. No. 60/188,975, filed on Mar. 13, 2000, and U.S. Ser. No. 60/254,697, filed on Dec. 11, 2000.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60188975 |
Mar 2000 |
US |
|
60254697 |
Dec 2000 |
US |