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Effects Of Structure And Composition Of The Cap Composite Coatings On Apatite Formation And Bioactivity In Simulated Body Fluid

机译:帽盖复合涂层的结构和组成对模拟体液中磷灰石形成和生物活性的影响

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摘要

The surface properties of biomaterials determine the interactions between biomedical devices and the surrounding biological environment. The surface modification of biomaterials is extensively recognized as a key strategy in the design of the next generation of bone implants and tissue engineering. In this study, the highly ordered octacalcium phosphate (OCP) coating and OCP/protein coating with hierarchically porous structure in nano-micro scale were constructed on titanium substrate by electrochemically-induced deposition (ED). The formation behavior of apatite on OCP and OCP/protein coatings immersed in simulated body fluid (SBF) was investigated in physicochemical aspects. It is indicated that soaked in SBF, the OCP and OCP/protein coatings are possible to induce relevant apatite formation on their surface, and the apatite-forming behavior in body environment is depended on the chemical composition and structure of the coatings. The apatite formed on OCP/protein composite coating possesses carbonated structure, needle-like crystals in nano scale, lower Ca/P ratio and higher degree of the preferred c-axis orientation, which are similar to the mineral composition and structure in natural bone, and hence called as bone-like apatite.
机译:生物材料的表面特性决定了生物医学设备与周围生物环境之间的相互作用。生物材料的表面改性已被广泛认为是下一代骨植入物和组织工程设计中的关键策略。在这项研究中,通过电化学诱导沉积(ED)在钛基底上构建了具有纳米微尺度分层多孔结构的高度有序的磷酸八钙(OCP)涂层和OCP /蛋白质涂层。从理化角度研究了磷灰石在OCP和OCP /蛋白质涂层(浸在模拟体液(SBF)中)中的形成行为。结果表明,浸泡在SBF中的OCP和OCP /蛋白质涂层可能在其表面诱导相关的磷灰石形成,而在人体环境中形成磷灰石的行为取决于涂层的化学组成和结构。在OCP /蛋白质复合涂层上形成的磷灰石具有碳酸结构,纳米级的针状晶体,较低的Ca / P比和较高的c轴取向度,这与天然骨中的矿物成分和结构相似,因此被称为骨状磷灰石。

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