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Effect of surface hydroxyl groups and surface energy of titanium on adsorption of bovine serum albumin

机译:表面羟基和表面能对牛血清白蛋白吸附的影响

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摘要

Bioactivity of titanium depends on the characteristics of its surface oxide film. This paper focuses on the relationship between the adsorption of bovine serum albumin and both important characteristics, i.e., surface energy and surface hydroxyl groups. The surface oxide films on titanium were fabricated by heat-treatment in different oxidation atmospheres, such as air and water vapor. Surface energies were calculated from contact angles of several liquids on titanium surfaces. Percentages of surface hydroxyl groups were obtained by X-ray photoelectron spectroscopy analysis. Heat-treatment increased both the surface energy and the amount of surface hydroxyl groups on titanium. The different oxidation atmospheres resulted in different percentages of oxygen species in TiO{sub}2, in physisorbed water and acidic hydroxyl groups, and in basic hydroxyl groups on the titanium surfaces. The adsorption of bovine serum albumin on the titanium surfaces was positively related to the amounts of the surface hydroxyl groups including basic hydroxyl groups and acidic hydroxyl groups, and the values of the polar component of the total surface energy. The bovine serum albumin chemically adsorbed onto the titanium surfaces.
机译:钛的生物活性取决于其表面氧化物膜的特性。本文侧重于牛血清白蛋白的吸附与重要特征之间的关系,即表面能和表面羟基。钛上的表面氧化膜通过在不同氧化环境中的热处理而制造,例如空气和水蒸气。从钛表面上几个液体的接触角计算表面能。通过X射线光电子体光谱分析获得表面羟基的百分比。热处理增加了钛的表面能和表面羟基的量。不同的氧化气氛导致TiO {亚} 2中的不同百分比氧物质,在钛表面上的碱性水和酸性羟基中。牛血清白蛋白在钛表面上的吸附与包含碱性羟基和酸性羟基的表面羟基的量呈正相关,以及总表面能的极性成分的值。将牛血清白蛋白化学吸附到钛表面上。

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