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Structural Evaluation of Radially Expandable Cardiovascular Stents Encased in a Polyurethane Film

机译:聚氨酯膜中包裹的可径向扩张的心血管支架的结构评估

摘要

A method of encasing cardiovascular stents with an expandable polyurethane coating has been developed to provide a smooth homogeneous inner wall allowing for a confluent growth of endothelial cells. In this design, the metal wire stent structure is completely covered by the polyurethane film minimizing biocorrosion of the metal (stainless steel or nitinol), and providing a homogeneous surface for surface treatment and incorporation of various eluting drugs to prevent platelet aggregation while supporting endothelialization. The polyurethane surface was treated with a helium plasma for sterilization and promotes growth of cells. The paper details the performance of the coated film to expand with the metal stent up to 225 % during deployment. We present stress/strain behavior of polyurethane films, and subsequent plasma treatment of the surface and the adhesion of the coating to the stent structure upon expansion. A film of less than 25 tm was found to be sufficient for corrosion resistance and flexibility without producing any excess stress on the stent structure. Straining the film to 225 % and plasma modification did not affect the mechanical and surface properties while allowing for improved biocompatibility as determined by the critical surface tension, surface chemistry, and roughness.
机译:已经开发了一种用可膨胀的聚氨酯涂层包裹心血管支架的方法,以提供光滑均匀的内壁,从而允许内皮细胞的融合生长。在这种设计中,金属丝支架结构完全被聚氨酯膜覆盖,从而最大程度地减少了金属(不锈钢或镍钛合金)的生物腐蚀,并为表面处理提供了均匀的表面,并加入了各种洗脱药物以防止血小板凝集,同时支持内皮化。用氦等离子体处理聚氨酯表面以进行灭菌,并促进细胞生长。本文详细介绍了涂层膜在展开过程中随着金属支架膨胀至225%的性能。我们介绍了聚氨酯薄膜的应力/应变行为,以及随后的等离子处理表面以及膨胀后涂层对支架结构的附着力。发现小于25tm的膜对于耐腐蚀性和挠性是足够的,而不会在支架结构上产生任何过大的应力。将薄膜应变至225%,并进行等离子体改性,不会影响机械性能和表面性能,但可以改善由临界表面张力,表面化学性质和粗糙度决定的生物相容性。

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