Implantable medical devices having controlled surface properties for improved healing response
View Patent ↗An implantable medical device that is fabricated from materials that present a blood or body fluid or tissue contact surface that has controlled heterogeneities in material constitution. An endoluminal stent-graft and web-stent that is made of a monolithic material formed into differentiated regions defining structural members and web regions extending across interstitial spaces between the structural members. The endoluminal stent-graft is characterized by having controlled heterogeneities at a the blood flow surface of the stent.
1. An implantable medical device comprising: a vacuum deposited biomaterial, the implantable medical device having a substantially tubular configuration with a luminal surface thereof, the luminal surface having a non-random distribution of cell attachment sites or binding domains thereupon, the distribution being substantially homogenous about the luminal surface, the cell attachment cites or binding domains further including oxidation and organic adsorption patterns.
2. The implantable medical device according to claim 1 , wherein the vacuum deposited biomaterial is selected from the group consisting of elemental titanium, vanadium, aluminum, nickel, tantalum, zirconium, chromium, silver, gold, silicon, magnesium, niobium, scandium, platinum, cobalt, palladium, manganese, molybdenum and alloys thereof, nitinol, and stainless steel.
3. The implantable medical device according to claim 2 , wherein each binding domain is dimensioned to have a blood contact surface area substantially similar in size as endothelial cell surface integrin clusters.
4. The implantable medical device according to claim 3 , wherein the binding domains have an inter-binding spacing of less than a nominal diameter of a human endothelial cell.
5. The implantable medical device according to claim 4 , wherein the blood contact surface area is less than about 6 μm 2 .
6. The implantable medical device according to claim 4 , wherein each blood contact surface area has a blood contact surface less than or equal, to about 10 μm and a border-to-border spacing between binding domains is about 2 μm.