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Biomimetic coating of calcium phosphate on biometallic materials

机译:生物材料磷酸钙的仿真涂层

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摘要

The biomimetic coating process in comparison with other processes is reviewed. This processing shows advantages in the surface bio-modification, such as low cost and flexible processing, wide range of apatite composition and thickness, non-line-of-sight characteristic and possibility to coat polymers and porous implants. The bio-mimetic apatite coating is made up of larger number of globules with size of 1-5μm. Each globule is a group of numerous flakes with a size range of 100-200nm to 30μm in length and 0.1-1μm in thickness. In-vitro and in-vivo studies show that the biomimetic apatite coating can promote an early and strong bonding to bone or promote the bone in-growth into the porous structure, which will be beneficial to the cementless stable fixation of orthopaedic implants. Recently developed co-precipitation of a kind of protein molecules into the HA coating shows much promising.
机译:综述了与其他方法相比的仿生涂布方法。该处理显示了表面生物改性的优点,例如低成本和柔韧的加工,散射式成分和厚度范围广,涂层的非视网膜特性以及​​涂覆聚合物和多孔植入物的可能性。生物模拟磷灰石涂层由尺寸为1-5μm的较大数量的小球组成。每个球状是一组多个薄片,尺寸范围为100-200nm至30μm的长度,厚度为0.1-1μm。体外和体内研究表明,仿生磷酸盐涂层可以促进骨骼的早期和强键,或促进骨骼生长成多孔结构,这将有利于整形外科植入物的软泥稳定固定。最近开发了一种蛋白质分子的共沉淀到HA涂层中显示出很大的有希望。

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