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Correlation between Tribological Properties and the Quantified Structural Changes of Lysozyme on Poly (2-hydroxyethyl methacrylate) Contact Lens

机译:摩擦学性质与聚(2-羟乙基甲基丙烯酸酯)隐形眼镜的溶菌酶量化结构变化的相关性

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摘要

The ocular discomfort is the leading cause of contact lens wear discontinuation. Although the tear proteins as a lubricant might improve contact lens adaptation, some in vitro studies suggested that the amount of adsorbed proteins could not simply explain the lubricating performance of adsorbed proteins. The purpose of this study was to quantify the structural changes and corresponding ocular lubricating properties of adsorbed protein on a conventional contact lens material, poly (2-hydroxyethyl methacrylate) (pHEMA). The adsorption behaviors of lysozyme on pHEMA were determined by the combined effects of protein–surface and protein–protein interactions. Lysozyme, the most abundant protein in tear, was first adsorbed onto the pHEMA surface under widely varying protein solution concentrations to saturate the surface, with the areal density of the adsorbed protein presenting different protein–protein effects within the layer. These values were correlated with the measured secondary structures, and corresponding friction coefficient of the adsorbed and protein covered lens surface, respectively. The decreased friction coefficient value was an indicator of the lubricated surfaces with improved adaptation. Our results indicate that the protein–protein effects help stabilize the structure of adsorbed lysozyme on pHEMA with the raised friction coefficient measured critical for the innovation of contact lens material designs with improved adaptation.
机译:眼镜不适是隐形眼镜磨损停止的主要原因。虽然泪液蛋白质作为润滑剂可能改善隐形眼镜适应,但一些体外研究表明吸附的蛋白质的量不能简单地解释吸附蛋白的润滑性能。本研究的目的是在常规的隐形眼镜材料中量化吸附蛋白的结构变化和相应的眼镜润滑性质,聚(2-羟乙基甲基丙烯酸酯)(PHEMA)。通过蛋白质 - 表面和蛋白质 - 蛋白质相互作用的组合效应来确定溶菌酶对PhEMA的吸附行为。溶菌酶,撕裂中最丰富的蛋白质,首先在广泛改变的蛋白质溶液浓度下吸附到PhEMA表面上,以使表面饱和,具有在层内呈现不同的蛋白质 - 蛋白质作用的吸附蛋白质的面密度。这些值分别与测量的二次结构相关,以及吸附和蛋白质覆盖透镜表面的相应摩擦系数。降低的摩擦系数值是润滑表面的指示,具有改进的适应性。我们的结果表明,蛋白质蛋白质效应有助于稳定在PhEMA上吸附溶菌酶的结构,其具有升高的摩擦系数对于具有改进的适应性的隐形眼镜材料设计的创新至关重要。

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