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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >A phospholipid polymer graft layer affords high resistance for wear and oxidation under load bearing conditions
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A phospholipid polymer graft layer affords high resistance for wear and oxidation under load bearing conditions

机译:磷脂聚合物接枝层为负载条件下的耐磨和氧化具有高抗性

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摘要

Abstract Manipulating the surface and substrate of cross-linked polyethylene (CLPE) is an essential approach for obtaining life-long orthopedic bearings. We therefore proposed a bearing material comprised of an antioxidative substrate generated by vitamin E blending (HD-CLPE[VE]) with a poly(2-methacryloyloxyethyl phosphorylcholine) (PMPC)-grafted surface, and investigated its wear resistance and oxidative stability under accelerated aging and load bearing conditions. Neither the hydration nor friction kinetics of the molecular network structure of the PMPC-grafted surface or the HD-CLPE(VE) substrate were influenced by accelerated aging but rather exhibited high stability even under high oxidation conditions. The characteristics of the PMPC-grafted surface improved the wear and impact fatigue resistance of the HD-CLPE(VE) liner regardless of accelerated aging. Notably, the PMPC-grafted surface was found to affect the potential oxidative stability at the rim part of the acetabular liner. PMPC chains serve several important functions on the surface regardless of load bearing, such as high lubricity or low lipophilicity attributed to phosphorylcholine groups and/or surrounding water-fluid film, and suppression of lipid diffusion attributed to methacrylate main chains on the surface. Together, these results provide preliminary evidence that the PMPC graft layer and vitamin E-blended substrate might positively affect the extent of orthopedic implant durability. Graphical abstract Display Omitted
机译:摘要操纵交联聚乙烯(CLPE)的表面和底物是获得终骨头轴承轴承的必要方法。因此,我们提出了一种轴承材料,该轴承材料包括由维生素E混合(HD-CLPE [VE])产生的抗氧化基材,所述聚(2-甲基丙烯酰氧基乙基磷胆碱)(PMPC) - 移植表面,并研究其在加速下的耐磨性和氧化稳定性老化和承载条件。 PMPC接枝表面或HD-CLPE(VE)衬底的分子网络结构的水合和摩擦动力学都没有受加速老化的影响,而是即使在高氧化条件下也表现出高稳定性。 PMPC接枝表面的特点提高了HD-CLPE(VE)衬里的磨损和抗冲击性,无论加速老化如何。值得注意的是,发现PMPC接枝表面影响髋臼衬里的边缘部分的潜在氧化稳定性。 PMPC链条在表面上有几种重要功能,无论负载轴承,如高润滑性或低亲脂性,归因于磷胆碱基和/或周围水 - 流体膜,抑制表面甲基丙烯酸甲酯主链归因于甲基丙烯酸酯的主链。这些结果一起提供了初步证据,即PMPC接枝层和维生素E-混合基材可能会积极地影响整形外科植入物的程度。省略了图形抽象显示

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