Low profile stent graft and delivery system
A tubular prosthetic device for implantation into a body lumen includes a first part including a tubular lumen and a second part including an attachment member. The second part is secured to the first part via various configurations, where the device is capable of being reduced to a diameter less than the diameter of traditional devices, for ease of use during implantation. Methods of using the device are also provided.
1. A device for implantation into a body lumen having a low profile implantation diameter, comprising:
an expandable stent member having apices at at least one end with an eyelet disposed at each of the apices, wherein said stent member is capable of securing said device into a body lumen;
a plurality of attachment tethers looped through each of the eyelets;
a generally tubular graft having a lumen extending therethrough for the flow of bodily fluid, said graft comprising a first open end, a second open end, and a graft wall having an interior surface and an opposed exterior surface, said graft wall comprising a plurality of layers with internal layers disposed between the interior surface and the opposed exterior surface; wherein the eyelets, the apices having the eyelets and the plurality of attachment tethers are disposed over a portion of the exterior surface of the graft near the first open end of the graft; and
an attachment flap;
wherein material from at least one of the internal layers forming the graft wall is extended and folded over at said first end to define said attachment flap which covers the eyelets, covers the apices having the eyelets and covers at least a portion of the plurality of attachment tethers; and
wherein the attachment flap is secured over the portion of the exterior surface of the graft near the first open end and over the at least portion of the plurality of attachment tethers to define a plurality of attachment sites thereat.
2. The device of claim 1 , wherein said attachment flap is secured to said attachment tethers and to said portion of the exterior surface of the graft through the use of FEP dispersion.
3. The device of claim 1 , wherein said attachment flap is secured to said attachment tethers and to said portion of the exterior surface of the graft through heat compression, welding or sintering processes.
4. The device of claim 1 , wherein said attachment tethers comprise PTFE, ePTFE, and combinations thereof.
5. A method of manufacturing a tubular prosthesis for delivery into a body lumen of a patient, comprising the steps of:
providing a device for implantation into a body lumen having a low profile implantation diameter, comprising:
an expandable stent member having apices at at least one end with an eyelet disposed at each of the apices, wherein said stent member is capable of securing said device into a body lumen;
a plurality of attachment tethers looped through of the eyelets;
a generally tubular graft having a lumen extending therethrough for the flow of bodily fluid, said graft comprising a first open end, a second open end, and a graft wall having an interior surface and an opposed exterior surface, said graft wall comprising a plurality of layers with internal layers disposed between the interior surface and the opposed exterior surface; wherein the eyelets, the apices having the eyelets and the plurality of attachment tethers are disposed over a portion of the exterior surface of the graft near the first open end of the graft; and
wherein said first open end of the graft comprises an attachment flap;
wherein material from at least one of the internal layers forming the graft wall is extended and folded over at said first end to define said attachment flap which covers the eyelets, covers the apices having the eyelets and covers at least a portion of the plurality of attachment tethers;
disposing the eyelets, the apices having the eyelets and the plurality of attachment tethers over a portion of the exterior surface of the graft near the first open end of the graft; and
securing said attachment flap over the portion of the exterior surface of the graft near the first open end and over the at least portion of plurality of attachment tethers to define a plurality of attachment sites.
6. The method of claim 5 , wherein said attachment flap is secured to said attachment tethers and to said portion of the exterior surface of the graft through the use of FEP dispersion.
7. The method of claim 5 , wherein said attachment tethers comprise PTFE, ePTFE, and combinations thereof.
8. A method of implanting a tubular prosthesis into a body lumen of a patient, comprising the steps of:
(a) providing a device for implantation into a body lumen having a low profile implantation diameter, comprising:
an expandable stent member having apices at at least one end with an eyelet disposed at each of the apices, wherein said stent member is capable of securing said device into a body lumen;
a plurality of attachment tethers looped through each of the eyelets;
a generally tubular graft having a lumen extending therethrough for the flow of bodily fluid, said graft comprising a first open end, a second open end, and a graft wall having an interior surface and an opposed exterior surface, said graft wall comprising a plurality of layers; wherein the eyelets, the apices having the eyelets and the plurality of attachment tethers are disposed over a portion of the exterior surface of the graft near the first open end of the graft; and
an attachment flap;
wherein material from at least one of the internal layers forming the graft wall is extended and folded over at said first end to define said attachment flap which covers the eyelets, covers the apices having the eyelet and covers at least a portion of the plurality of attachment tethers; and
wherein the attachment flap is secured over the portion of the exterior surface of the graft near the first open end and over the at least portion of the plurality of attachment tethers to define a plurality of attachment sites thereat; and
(b) delivering the device to a desired location within the body lumen.