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Association of polyethylene friction and thermal unfolding of interfacial albumin molecules

机译:聚乙烯摩擦与界面白蛋白分子热展开的关系

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摘要

Under the articulation of artificial joints, ultra-high molecular weight polyethylene (UHMWPE) acts as a bearing surface under the lubrication of synovial fluid containing various proteins. Albumin is the most abundant composition and acts as the interfacial molecule in the boundary lubrication regime. The dissipated energy including thermal energy from the tribological process may lead to the conformational change of albumin molecules. In this study, a series of experiments were designed and carried out to investigate the association of thermal unfolding albumin and the frictional characteristics of highly-crosslinked UHMWPE (x-UHMWPE). An accelerated oxidation experiment was used to prepare x-UHMWPE with an oxidized surface. Analysis of the albumin protein by circular dichroism (CD) spectroscopy was performed to detect the conformational changes during a thermal process. In addition, a molecular simulation was performed to understand the structural change of albumin at various temperatures and the exposed hydrophobic contact areas. Linear reciprocating frictional tests were carried out to obtain the start-up friction coefficients. The results indicate that a decrease of α-helix content and an unfolding of the secondary structure of albumin were observed with increasing temperatures which may come from the frictional heat of joint articulation process. The conformational change of albumin differentiates the frictional characteristics for x-UHMWPE with different oxidation levels. A model, describing that the properties of the lubricating molecules and articulating surfaces may affect the adsorption of the boundary lubrication thin film which is critical to the tribological behavior, is proposed.
机译:在人工关节的关节活动中,超高分子量聚乙烯(UHMWPE)在润滑包含各种蛋白质的滑液的情况下充当轴承表面。白蛋白是最丰富的组成,并且在边界润滑方案中充当界面分子。摩擦过程中耗散的能量(包括热能)可能导致白蛋白分子的构象变化。在这项研究中,设计并进行了一系列实验,以研究热展开白蛋白与高度交联的UHMWPE(x-UHMWPE)的摩擦特性之间的关系。加速氧化实验被用来制备具有氧化表面的x-UHMWPE。通过圆二色性(CD)光谱分析白蛋白,以检测热过程中的构象变化。另外,进行分子模拟以了解在不同温度下白蛋白的结构变化以及暴露的疏水性接触面积。进行线性往复摩擦试验以获得启动摩擦系数。结果表明,随着关节运动过程中摩擦热的升高,温度升高,α-螺旋含量降低,白蛋白二级结构展开。白蛋白的构象变化区分了具有不同氧化水平的x-UHMWPE的摩擦特性。提出了一个模型,描述了润滑分子和关节表面的特性可能影响边界润滑薄膜的吸附,这对摩擦学行为至关重要。

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