TISSUE INGROWTH COMPOSITE MATERIAL FOR IMPLANTABLE HEART VALVES
Described embodiments are directed toward centrally-opening leaflet prosthetic valve devices having synthetic leaflets that are configured to promote and encourage tissue ingrowth thereon and/or therein. The leaflets are coupled to a leaflet frame to form a prosthetic valve suitable for use in biological anatomy.
1 . A tissue ingrowth composite material for an implantable heart valve, the tissue ingrowth composite material comprising:
a fluoropolymer membrane comprising a plurality of pores;
an elastomer imbibed into a first portion of the fluoropolymer membrane, the first portion of the fluoropolymer membrane being configured to promote tissue ingrowth; and
a filler material imbibed into a second portion of the fluoropolymer membrane, the second portion of the fluoropolymer membrane being configured to inhibit tissue ingrowth.
2 . The tissue ingrowth composite material of claim 1 , wherein the fluoropolymer membrane layer comprises a first side configured to be an inflow side of a leaflet of the implantable heart valve and a second side configured to be an outflow side of the leaflet, the first and second sides being configured to have different tissue ingrowth profiles.
3 . The tissue ingrowth composite material of claim 1 , wherein the fluoropolymer membrane comprises a first side configured to be an inflow side of a leaflet of the implantable heart valve and a second side configured to be an outflow side of the leaflet, the first and second sides being configured to have the same tissue ingrowth profiles.
4 . The tissue ingrowth composite material of claim 1 , wherein the first portion of the fluoropolymer membrane comprises a portion of the fluoropolymer membrane extending between a boundary portion and an edge opposite an edge of the fluoropolymer membrane configured to form a free edge of a leaflet of the implantable heart valve, and the second portion of the fluoropolymer membrane comprises a portion of the fluoropolymer membrane between the boundary portion and the edge of the fluoropolymer membrane configured to form the free edge of the leaflet.
5 . The tissue ingrowth composite material of claim 1 , wherein the elastomer comprises a fluoroelastomer and the fluoropolymer membrane comprises an expanded fluoropolymer membrane.
6 . The tissue ingrowth composite material of claim 5 , wherein the expanded fluoropolymer membrane comprises expanded polytetrafluoroethylene (ePTFE).
7 . The tissue ingrowth composite material of claim 1 , wherein the elastomer comprises a copolymer of tetrafluoroethylene and perfluoromethyl vinyl ether.
8 . An implantable heart valve leaflet construct comprising:
a polymeric membrane comprising a plurality of pores, the polymeric membrane comprising:
a first portion configured to promote tissue ingrowth, and
a second portion configured to inhibit tissue ingrowth;
a filler material imbibed into pores of the second portion for inhibiting tissue ingrowth onto the second portion of the polymeric membrane; and
a tissue ingrowth curtain configured to promote tissue ingrowth and disposed over at least a portion of a first side of the first portion of the polymeric membrane.
9 . The implantable heart valve leaflet construct of claim 8 , further comprising a second filler material imbibed into pores of the first portion for promoting tissue ingrowth into the first portion of the polymeric membrane.
10 . The implantable heart valve leaflet construct of claim 9 , wherein the second filler material comprises a copolymer of tetrafluoroethylene and perfluoromethyl vinyl ether.
11 . The implantable heart valve leaflet construct of claim 10 , wherein the tissue ingrowth curtain comprises a porous fluoropolymer membrane.
12 . The implantable heart valve leaflet construct of claim 11 , wherein the tissue ingrowth curtain comprises an expanded fluoropolymer membrane having a plurality of spaces within a matrix of fibrils.
13 . The implantable heart valve leaflet construct of claim 8 , wherein the first side of the polymeric membrane is configured to be an inflow side of a leaflet of an implantable heart valve, and the tissue ingrowth curtain extends over the first side from an edge opposite an edge of the polymeric membrane configured to form a free edge of the leaflet toward the edge of the polymeric membrane configured to form the free edge.
14 . The implantable heart valve leaflet construct of claim 8 , further comprising a second tissue ingrowth curtain disposed over at least a portion of a second side of the first portion of the polymeric membrane, the second side being configured to be an outflow side of a leaflet of an implantable heart valve, and the second tissue ingrowth curtain extending over the second side from an edge opposite an edge of the polymeric membrane configured to form a free edge of the leaflet toward the edge of the polymeric membrane configured to form the free edge.
15 . The implantable heart valve leaflet construct of claim 14 , wherein the tissue ingrowth curtain disposed over the first side and the second tissue ingrowth curtain disposed over the second side have a common size and material.
16 . The implantable heart valve leaflet construct of claim 14 , wherein the tissue ingrowth curtain disposed over the first side and the second tissue ingrowth curtain disposed over the second side have at least one of a different size and a different material.
17 . The implantable heart valve leaflet construct of claim 8 , further comprising an adhesive layer extending along adjoining surfaces between the tissue ingrowth curtain and the polymeric membrane.
18 . The implantable heart valve leaflet construct of claim 8 , further comprising a fillet transition between the polymeric membrane and an edge of the tissue ingrowth curtain terminating over the first side of the polymeric membrane.
19 . The implantable heart valve leaflet construct of claim 8 , wherein the tissue growth curtain terminates along a boundary having a concave shape relative to a free edge of an implantable heart valve leaflet.
20 . The implantable heart valve leaflet construct of claim 8 , wherein the tissue growth curtain terminates along a linear boundary.