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Development of bioactive materials based on surface chemistry

机译:基于表面化学的生物活性材料的开发

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摘要

All bioactive materials developed up to 1990 were based on calcium phosphate. It was later revealed that materials that form bonelike apatite on their surfaces in the living body bond to living bone through the apatite layer, and that apatite formation on a material is induced by various functional groups on its surface. Based on these findings, bioactive titanium was prepared by forming sodium titanates on its surface via NaOH and heat treatments, and applied to an artificial total hip joint. Porous titanium metal able to exhibit osteoconductivity as well as osteoinductivity was prepared by forming anatase on its surface via NaOH, HCl and heat treatments. Various bioactive materials with different physical properties are expected to be derived from ceramics, metals and organic polymers by modifying their surfaces with functional groups effective for apatite nucleation.
机译:直至1990年开发的所有生物活性材料均基于磷酸钙。后来发现,在生物体内的表面上形成骨状磷灰石的材料通过磷灰石层与活骨结合,并且材料上的磷灰石形成是由其表面上的各种官能团引起的。基于这些发现,生物活性钛是通过经由NaOH和热处理在其表面形成钛酸钠来制备的,并应用于人工全髋关节。通过经由NaOH,HCl和热处理在其表面上形成锐钛矿来制备能够表现出骨传导性和骨传导性的多孔钛金属。通过用对磷灰石成核有效的官能团修饰其表面,可以预期从陶瓷,金属和有机聚合物中衍生出具有不同物理性质的各种生物活性材料。

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