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Characterization of two DLC coatings for joint prosthesis: The role of albumin on the tribological behavior

机译:用于关节假体的两种DLC涂层的表征:白蛋白在摩擦学行为中的作用

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摘要

A commonly used strategy for reduction of wear and friction of the sliding surfaces in prosthetic pairs is the use of hard coatings. DLCs (diamond like carbons) offer a promising solution, because these coatings, already used in other biomedical applications, exhibit a unique combination of chemical inertness, mechanical and tribological properties. In the present work we investigated the role of albumin, the most abundant protein in the periprosthetic fluid, on the tribological behavior of two DLCs with different compositions, against ultra-high molecular weight polyethylene (UHMWPE). The results are compared with those obtained with uncoated stainless steel surfaces. We have characterized the coatings by atomic force microscopy, X-ray diffraction, Raman spectroscopy, ultramicrohardness and wettability measurements. The adsorption of albumin onto the surfaces was investigated by ellipsometry and using a quartz crystal microbalance. Both DLCs adsorb a larger amount of protein than stainless steel. The tribological tests were performed in microtribometer aiming for a deeper understanding of the tribological mechanisms which occur at the submicrometric contact scale. Results showed no significant differences between the tribological behavior of the two coatings. Under the tested conditions, the tribological performance does not improve significantly with the application of the DLCs. Moreover, the presence of albumin on the lubricant leads to higher friction of the polymer against all counterfaces. This effect was attributed to the formation of bridges between the two sliding surfaces by the denaturated protein. The significant differences in the adsorbed amounts of protein onto the stainless steel and the two types of DLCs did not affect considerably the tribological behavior of these materials.
机译:减少假体中滑动表面的磨损和摩擦的常用策略是使用硬质涂层。 DLC(类似于碳的金刚石)提供了一种有前途的解决方案,因为这些已在其他生物医学应用中使用的涂层展现出化学惰性,机械和摩擦学特性的独特组合。在当前的工作中,我们研究了假体周围液体中最丰富的蛋白白蛋白对两种不同组成的DLC对抗超高分子量聚乙烯(UHMWPE)的摩擦学行为的作用。将结果与无涂层不锈钢表面获得的结果进行比较。我们通过原子力显微镜,X射线衍射,拉曼光谱,超显微硬度和润湿性测量来表征涂层。通过椭圆偏振法和使用石英晶体微量天平研究白蛋白在表面上的吸附。两种DLC都比不锈钢吸收更多的蛋白质。摩擦学测试是在微摩擦计中进行的,旨在更深入地了解亚微米接触尺度下发生的摩擦机理。结果表明两种涂层的摩擦学行为之间无显着差异。在测试条件下,使用DLC的摩擦性能不会显着改善。此外,润滑剂上白蛋白的存在导致聚合物对所有配合面的更高摩擦。该作用归因于变性蛋白质在两个滑动表面之间形成桥。蛋白质在不锈钢和两种类型的DLC上的吸附量的显着差异不会显着影响这些材料的摩擦学行为。

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