Prosthetic heart valve formation
A prosthetic heart valve includes a base and a plurality of polymeric leaflets. Each leaflet has a root portion coupled to the base, and each leaflet has an edge portion substantially opposite the root portion and movable relative to the root portion to coapt with a respective edge portion of at least one of the other leaflets of the plurality of leaflets. Each leaflet includes) at least two polymers along at least one portion of the leaflet, and each leaflet has a composition gradient of each of the at least two polymers along at least one portion of the leaflet.
1. A prosthetic heart valve comprising:
a base;
a plurality of polymeric leaflets, each leaflet having a root portion coupled to the base, each leaflet having an edge portion opposite the root portion and movable relative to the root portion to coapt with a respective edge portion of at least one of the other leaflets of the plurality of leaflets, each leaflet comprising at least two polymers, and each leaflet having a composition gradient of each of the at least two polymers along at least one portion of the leaflet, wherein each of the at least two polymers has respective hard segments and soft segments and the ratio of hard segments to soft segments in one of the at least two polymers is higher than the ratio of hard segments to soft segments in another of the at least two polymers, wherein each of the at least two polymers is a respective block polymer, wherein the soft segments of each block polymer is a copolymer of a first monomer and a second monomer and the comonomer ratio of the first monomer to the second monomer is varied in combination with the hard segment to soft segment ratio, wherein the first monomer is dimethyl siloxane and the second monomer is hexamethylene carbonate.
2. The prosthetic heart valve of claim 1 , wherein each leaflet has a substantially uniform thickness.
3. The prosthetic heart valve of claim 1 , wherein each leaflet has a decreasing thickness in a direction extending from the root portion to the edge portion.
4. The prosthetic heart valve of claim 1 , wherein one of the at least two polymers is a first layer, another one of the at least two polymers is a second layer, and each of the layers extends in a direction from the root portion to the edge portion.
5. The prosthetic heart valve of claim 4 , wherein the thickness of one or more of the first and second layers decreases in the direction from the root portion to the edge portion.
6. The prosthetic heart valve of claim 1 , wherein the composition gradient is a continuous increase in the ratio of the second polymer to the first polymer along the at least one portion of the leaflet.
7. The prosthetic heart valve of claim 1 , wherein the composition gradient is a pattern of each of the at least two polymers along the at least one portion of the leaflet.
8. The prosthetic heart valve of claim 1 , wherein each leaflet has a stiffness gradient along the at least one portion of the leaflet corresponding to the composition gradient.
9. The prosthetic heart valve of claim 8 , wherein each leaflet has a composition gradient and a stiffness gradient in a direction extending from the root portion to the edge portion.
10. The prosthetic heart valve of claim 8 , wherein each leaflet has a composition gradient and a stiffness gradient in a direction extending along a thickness of the leaflet.
11. The prosthetic heart valve of claim 8 , wherein each leaflet has a maximum thickness of 100 μm or less.
12. The prosthetic heart valve of claim 1 , wherein one of the at least two polymers is a surface coating disposed over at least a portion of another of the at least two polymers, along at least one side of the leaflet extending from the root portion to the edge portion.
13. The prosthetic heart valve of claim 1 , further comprising a skirt disposed about the base, the base defining a concentric passage therethrough, and the skirt eccentrically arranged relative to the concentric passage of the base.
14. The prosthetic heart valve of claim 1 , wherein the base comprises one or more of the first or the second polymers.
15. A prosthetic heart valve comprising:
a base;
a plurality of polymeric leaflets, each leaflet having a root portion coupled to the base, each leaflet having an edge portion opposite the root portion and movable relative to the root portion to coapt with a respective edge portion of at least one of the other leaflets of the plurality of leaflets, each leaflet comprising at least two polymers, and each leaflet having a composition gradient of each of the at least two polymers along at least one portion of the leaflet, wherein one of the at least two polymers is a surface coating disposed over at least a portion of another of the at least two polymers, along at least one side of the leaflet extending from the root portion to the edge portion, wherein each of the at least two polymers have respective hard and soft segments, the hard and soft segments of the surface coating having the same molecular structure as the respective hard and soft segments of the other of the at least two polymers, and the surface coating comprising surface active end groups, wherein the surface active end groups comprise non-polar surface active end groups.
16. The prosthetic heart valve of claim 15 , wherein each leaflet has a substantially uniform thickness.
17. The prosthetic heart valve of claim 15 , wherein each leaflet has a decreasing thickness in a direction extending from the root portion to the edge portion.