Effect of silyl group of methacrylate copolymer on its biocompatibility and ability to give a corrosion resistance to magnesium alloy

Akiho Konno, C. Yahata, A. Mochizuki
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Abstract

Magnesium alloys have recently been expected as a main material for a bioresorbable vascular stent. However, the alloys have a major defect, a very poor corrosion resistance under the wet circumstance such as a body. One of the methods to give the corrosion resistance to the Mg alloys, polymer coating has been investigated. From these back grounds, we designed a new coating polymer, poly(2-methoxyethyl methacrylate  ran  trimethoxysilylplopyl methacrylate), and investigated the effect of silyl group on their biocompatibility and ability to give a corrosion resistance to the alloy. The polymer showed good compatibility with platelets and coagulation system and improved the corrosion resistance in the cell culture medium as a simulated
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甲基丙烯酸酯共聚物硅基对其生物相容性及耐镁合金腐蚀能力的影响
镁合金近年来有望成为生物可吸收血管支架的主要材料。然而,合金有一个很大的缺陷,在潮湿的环境下,如身体的耐腐蚀性很差。研究了提高镁合金耐腐蚀性能的方法之一——聚合物涂层。基于这些背景,我们设计了一种新的涂层聚合物,聚(2-甲氧基乙基甲基丙烯酸酯),并研究了硅基对其生物相容性和抗合金腐蚀能力的影响。该聚合物与血小板和混凝系统具有良好的相容性,并能提高细胞培养液的耐腐蚀性
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