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Adsorption and enzymatic cleavage of osteopontin at interfaces with different surface chemistries

机译:骨桥蛋白在不同表面化学的界面上的吸附和酶促裂解

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Osteopontin is a highly charged glycoprotein present in the extra cellular matrix of a wide range of tissues. It is, in particular, relevant for biomaterials through its role in mineralized tissue remodeling. The adsorption and enzymatic cleavage of osteopontin at four different surface chemistries (methyl-, carboxylic-, and amine-terminated alkanethiol self-assembled monolayers and bare gold) have been studied utilizing a combination of the quartz crystal microbalance with dissipation and surface plasmon resonance. Full length bovine milk osteopontin was used which is well characterized with respect to post-translational modifications. Osteopontin adsorbed at all the surfaces formed thin (~2–5 nm) hydrated layers with the highest amount of protein and the highest density layers observed at the hydrophobic surface. Less protein and a higher level of hydration was observed at the polar surfaces with the highest level of hydration being observed at the gold surface. The energy dissipation of these thin films (as measured by the ΔD/ΔF value) was altered at the different surface chemistries and interestingly a higher dissipation correlated with a higher density. Thrombin was able to bind and cleave the surface bound osteopontin at the hydrophobic surface. The altered levels of osteopontin binding, hydration of the layer, and susceptibility to thrombin cleavage suggest that osteopontin adopts different conformations and/or orientations at the different material surfaces.
机译:骨桥蛋白是一种高电荷糖蛋白,存在于多种组织的细胞外基质中。通过其在矿化组织重塑中的作用,它尤其与生物材料有关。利用石英晶体微天平与耗散和表面等离子体共振的结合,研究了骨桥蛋白在四种不同表面化学(甲基,羧基和胺端基的烷硫醇自组装单层和裸金)上的吸附和酶促裂解。使用全长牛骨骨桥蛋白,其在翻译后修饰方面具有良好的特征。骨桥蛋白吸附在所有表面上形成了薄的(〜2–5 nm)水合层,在疏水表面观察到最大量的蛋白质和最高密度的层。在极性表面观察到较少的蛋白质和较高的水合水平,而在金表面观察到最高的水合水平。这些薄膜的能量耗散(通过ΔD/ΔF值测量)在不同的表面化学性质上发生了变化,有趣的是,更高的耗散与更高的密度相关。凝血酶能够在疏水表面结合并切割表面结合的骨桥蛋白。骨桥蛋白结合水平的变化,层的水合作用以及对凝血酶裂解的敏感性表明,骨桥蛋白在不同的材料表面采用不同的构象和/或方向。

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