Composite ePTFE/Textile Prosthesis
A composite intraluminal prosthesis which is preferably used as a vascular prothesis includes a layer of ePTFE and a layer of textile material which are secured together by an elastomeric bonding agent. The ePTFE layer includes a porous microstructure defined by nodes interconnected by fibrils. The adhesive bonding agent is preferably applied in solution so that the bonding agent enters the pores of the microstructure of the ePTFE. This helps secure the textile layer to the ePTFE layer.
1 . A composite multilayer implantable structure comprising:
a first layer from a textile material;
a second layer formed of expanded polytetrafluoroethyene; and
an elastomeric bonding agent formed from an aromatic polycarbonate urethane applied to one of said first and second layers.
2 - 3 . (canceled)
4 . A composite structure of claim 1 wherein said first layer comprises a textile pattern selected from the group comprising knits, weaves, stretch-knits, braids, non-woven textile structures and combinations thereof.
5 . A composite structure of claim 2 wherein said first layer is placed in contact with said one surface of said second layer.
6 . A composite structure of claim 1 wherein said first and second layers are substantially planar.
7 . A composite structure of claim 6 wherein said first and second planar layers form a vascular patch.
8 . A composite structure of claim 7 wherein said vascular patch includes said first layer being a blood contact layer and said second layer being a tissue contacting layer.
9 . A composite structure of claim 1 wherein said first and second layers are substantially tubular and wherein said first layer comprises a knitted textile pattern.
10 . A composite structure of claim 1 wherein said first and second layers are substantially tubular and form an elongate tubular vascular graft.
11 . (canceled)
12 . A composite structure of claim 10 wherein said first layer of the vascular graft is adapted for contacting blood is positioned interior to said second layer adapted for contacting tissue.
13 . A composite structure of claim 10 wherein said graft includes a plurality of longitudinally spaced crimps therealong.
14 . A composite structure of claim 10 wherein said graft is helically wrapped with a monofilament externally therearound.
15 . A composite structure of claim 14 wherein said monofilament comprises polypropylene.
16 . (canceled)
17 . A composite structure of claim 10 wherein said graft includes an external support coil helically positioned thereover.
18 - 19 . (canceled)
20 . A composite structure of claim 10 wherein said composite tubular structure is longitudinally compressed.
21 . (canceled)
22 . A composite structure of claim 1 wherein said textile material comprises PET.
23 . A composite structure of claim 1 wherein said composite structure further comprises a third layer.
24 . (canceled)
25 . A composite structure of claim 23 wherein said third layer comprises ePTFE.
26 - 31 . (canceled)
32 . A composite structure of claim 33 wherein the step of securing the first layer relative to said textile layer with said bonding agent comprises thermal processing.
33 . A method of forming a vascular prosthesis comprising the steps of:
providing a first layer comprising ePTFE;
providing a textile layer having opposed surfaces;
applying an elastomeric bonding agent comprising an aromatic polycarbonate urethane to one of said opposed surfaces; and
securing said first layer relative to said textile layer with said bonding agent.
34 - 40 . (canceled)
41 . A method of forming a composite implantable patch comprising the steps of:
providing an elongate planar ePTFE substrate;
applying a coating of an elastomeric bonding agent comprising an aromatic polycarbonate urethane to one surface of said ePTFE substrate; and
securing the elongate planar textile substrate to said coated surface of said ePTFE substrate.