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The Influence of Bovine Serum Albumin on the Biomimetic Calcium Phosphate Coating of Bioactivated Titanium

机译:牛血清白蛋白对生物活化钛仿生磷酸钙涂层的影响

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In this study, bovine serum albumin protein (BSA) was introduced to investigate the co-precipitation process of calcium phosphate and BSA on bioactivated Ti. Commercially pure titanium were bioactivated firstly, and then immersed in a highly supersaturated stable calcium phosphate (Ca-P) solution at three different conditions. The samples designated as Ti-C, Ti-C-CB, and Ti-C-B for control. The samples were evaluated by SEM with EDX, XRD and XPS. The co-precipitation of BSA protein and Ca-P influenced the morphology of the crystals of Ti-C-CB significantly. In terms of the immersion in the Ca-P solution containing BSA, the co-precipitation of Ca-P with BSA on the surface of Ti-C-CB was a chemical process rather than simple physical adsorption, which was most possibly achieved by the linkage of -COO~- groups to Ca-P. Such coprecipitated interaction led to the formation of a tight, dense and uniform Ca-P coating.
机译:在这项研究中,牛血清白蛋白(BSA)被引入以研究磷酸钙和BSA在生物活化Ti上的共沉淀过程。商业上纯净的钛首先被生物活化,然后在三种不同条件下浸入高度过饱和的稳定磷酸钙(Ca-P)溶液中。指定为Ti-C,Ti-C-CB和Ti-C-B的样品作为对照。通过具有EDX,XRD和XPS的SEM对样品进行评估。 BSA蛋白和Ca-P的共沉淀显着影响Ti-C-CB晶体的形貌。就浸入含有BSA的Ca-P溶液而言,Ca-P与BSA在Ti-C-CB表面的共沉淀是化学过程,而不是简单的物理吸附,这很可能是通过-COO〜-与Ca-P的键合这种共沉淀相互作用导致形成紧密,致密且均匀的Ca-P涂层。

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