首页> 外文会议>Engineering in Medicine and Biology Society, 2004. IEMBS '04. 26th Annual International Conference of the IEEE >Endothelial cell function on a poly(acrylamide-co-polyethylene acid) interpenetrating polymer network: cardiovascular applications
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Endothelial cell function on a poly(acrylamide-co-polyethylene acid) interpenetrating polymer network: cardiovascular applications

机译:聚丙烯酰胺-共聚乙烯酸互穿聚合物网络上的内皮细胞功能:心血管应用

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Hydrogel coatings have been widely researched as a nonfouling surface modification of materials for cardiovascular applications. In this study, we examined cell-surface interactions between a poly(acrylamide-copolyethylene glycol/acrylic acid) interpenetrating network (IPN) hydrogel and aortic endothelial cells (ECs). The IPN was covalently attached to polystyrene to form a nanometer scale thick hydrogel, and the IPN layer was activated by conjugation of the cell adhesion peptide Arg-Gly-Asp (RGD). On IPN surfaces lacking the RGD peptide, EC did not adhere and spread even after long-term incubation. The IPN was able to support greater EC adhesion and spreading with increasing RGD surface concentrations. Upon adequate adhesion and spreading, ECs migrated and proliferated at high rates regardless of the RGD surface concentration. These results suggest that this IPN can be used to promote endothelialization of vascular implants made of polymeric and metal materials for cardiovascular applications.
机译:水凝胶涂料已被广泛研究为心血管应用材料的防污表面改性剂。在这项研究中,我们检查了聚(丙烯酰胺-共聚乙二醇/丙烯酸)互穿网络(IPN)水凝胶与主动脉内皮细胞(EC)之间的细胞表面相互作用。 IPN共价连接到聚苯乙烯上,形成纳米级厚的水凝胶,IPN层通过细胞粘附肽Arg-Gly-Asp(RGD)的结合而被激活。在缺乏RGD肽的IPN表面上,EC甚至在长期孵育后也没有粘附并扩散。随着RGD表面浓度的增加,IPN能够支持更大的EC附着力和扩散。经过足够的粘附和散布,无论RGD表面浓度如何,EC都以高速率迁移和增殖。这些结果表明,该IPN可用于促进由聚合材料和金属材料制成的用于心血管应用的血管植入物的内皮化。

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