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Extracellular Matrix Molecules Facilitating Vascular Biointegration

机译:促进血管生物整合的细胞外基质分子

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All vascular implants, including stents, heart valves and graft materials exhibit suboptimal biocompatibility that significantly reduces their clinical efficacy. A range of biomolecules in the subendothelial space have been shown to play critical roles in local regulation of thrombosis, endothelial growth and smooth muscle cell proliferation, making these attractive candidates for modulation of vascular device biointegration. However, classically used biomaterial coatings, such as fibronectin and laminin, modulate only one of these components; enhancing endothelial cell attachment, but also activating platelets and triggering thrombosis. This review examines a subset of extracellular matrix molecules that have demonstrated multi-faceted vascular compatibility and accordingly are promising candidates to improve the biointegration of vascular biomaterials.
机译:所有血管植入物,包括支架,心脏瓣膜和移植材料,均显示出次佳的生物相容性,从而大大降低了其临床疗效。内皮下空间中的一系列生物分子已显示出在血栓形成,内皮生长和平滑肌细胞增殖的局部调节中起关键作用,从而使这些有吸引力的候选物成为调节血管装置生物整合的候选者。但是,传统上使用的生物材料涂层,例如纤连蛋白和层粘连蛋白,只能调节其中一种成分。不仅可以增强内皮细胞的附着力,还可以激活血小板并触发血栓形成。这项审查审查了细胞外基质分子的一个子集,这些子集已经证明了多方面的血管相容性,因此有望改善血管生物材料的生物整合性。

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