Porous devices and processes for producing same
A method for making a polymer with a porous layer from a solid piece of polymer is disclosed. In various embodiments, the method includes heating a surface of a solid piece of polymer to a processing temperature and holding the processing temperature while displacing a porogen layer through the surface of the polymer to create a matrix layer of the solid polymer body comprising the polymer and the porogen layer. In at least one embodiment, the method also includes removing at least a portion of the layer of porogen from the matrix layer to create a porous layer of the solid piece of polymer.
1. A medical device for promoting tissue ingrowth, the medical device comprising:
a solid portion of polymer having a first percentage of hydroxyl groups; and
a porous surface layer comprising the polymer and having a second percentage of hydroxyl groups greater than the first percentage of hydroxyl groups.
2. The medical device of claim 1 , wherein the medical device further comprises a second porous surface layer in direct contact with the solid portion of the polymer.
3. The medical device of claim 2 , wherein the second porous surface layer comprises the polymer and a plurality of pores extending into the medical device.
4. The medical device of claim 1 , wherein the first porous surface layer is in direct contact with the solid portion of the polymer and comprises a plurality of pores extending into the medical device for a defined distance into the porous surface layer.
5. The medical device of claim 4 , wherein the plurality of pores is substantially spherical and in an irregular distribution pattern.
6. The medical device of claim 1 , wherein an atomic ratio of carbon to oxygen in the porous surface layer is substantially identical as the atomic ratio of carbon to oxygen in the solid portion of the polymer.
7. The medical device of claim 1 , wherein the polymer comprises a thermoplastic polymer.
8. The medical device of claim 1 , wherein the porosity of the porous surface layer is between about 61% to about 66%.
9. The medical device of claim 1 , wherein the interconnectivity of the porous surface layer is about 99%.
10. The medical device of claim 1 , wherein an interfacial shear strength between the solid portion of the polymer and the porous surface layer is at least about 17 MPa.
11. The medical device of claim 1 , wherein an interfacial shear strength between the solid portion of the polymer and the porous surface layer is at least about 17 MPa.
12. A medical device for promoting tissue ingrowth, the medical device comprising:
a solid portion of polymer having a first wettability; and
a porous surface layer comprising the polymer and a plurality of pores,
wherein the porous surface has a second wettability greater than the first wettability, and wherein an atomic ratio of carbon to oxygen in the porous surface layer is substantially same as the atomic ratio of carbon to oxygen in the solid portion of polymer.
13. The medical device of claim 12 , wherein the medical device further comprises a second porous surface layer in direct contact with the solid portion of the polymer, and wherein the second porous surface comprises a second plurality of pores extending from a surface of the second porous surface layer into the second porous surface layer.
14. The medical device of claim 12 , wherein the first porous surface layer is in direct contact with the solid portion of the polymer, and wherein the first porous surface layer comprises a plurality of pores extending from a surface of the porous surface layer into the porous surface layer for a defined distance into the porous surface layer.
15. The medical device of claim 14 , wherein the plurality of pores is substantially spherical and in an irregular distribution pattern.
16. The medical device of claim 12 , wherein the polymer comprises a thermoplastic polymer.
17. The medical device of claim 12 , wherein the porosity of the porous surface layer is between about 61% to about 66%.
18. The medical device of claim 12 , wherein the interconnectivity of the porous surface layer is about 99%.