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Shield effect of silicate on adsorption of proteins onto silicon-doped hydroxyapatite (100) surface

机译:硅酸盐对蛋白质吸附到掺杂硅的羟基磷灰石(100)表面的屏蔽作用

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Protein adsorption-desorption on nanoscale surface plays a key role in biomaterials, cell adhesion, biosensors, biofuel cells and biomineralization. Silicate-substituted hydroxyapatite (SiHA) is one of the most interesting bioceramics in the field of bioactive hard tissue implants. In this paper, the adsorption-desorption behaviors of leucine-rich amelogenin protein (LRAP) on a series of SiHA (100) surfaces were investigated using the molecular dynamics (MD), steered molecular dynamics (SMD) simulations and density functional theory (DFT) calculations. It was found that the silicate ions on SiHA (100) surface cause a shield effect, which was composed of the charge repulsion and the steric hindrance of silicates. These findings suggest that surface engineering technologies can be potentially used to directly control/manufacture the nanoscale surface texture and the composition of material surfaces, thereby to mediate the interaction of proteins with biomaterials. (c) 2008 Elsevier Ltd. All rights reserved.
机译:纳米级表面上的蛋白质吸附-解吸在生物材料,细胞粘附,生物传感器,生物燃料电池和生物矿化中起着关键作用。硅酸盐取代的羟基磷灰石(SiHA)是生物活性硬组织植入物领域中最有趣的生物陶瓷之一。本文使用分子动力学(MD),操纵分子动力学(SMD)模拟和密度泛函理论(DFT)研究了富含亮氨酸的牙釉蛋白(LRAP)在一系列SiHA(100)表面上的吸附-解吸行为。 )计算。发现SiHA(100)表面上的硅酸盐离子会产生屏蔽效应,该屏蔽效应由电荷排斥和硅酸盐的位阻组成。这些发现表明,表面工程技术可以潜在地用于直接控制/制造纳米级表面纹理和材料表面的组成,从而介导蛋白质与生物材料的相互作用。 (c)2008 Elsevier Ltd.保留所有权利。

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