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Hydroxyapatite Coating on Cp-Ti Implants by Biomimetic Method

机译:用仿生方法对CP-TI植入物的羟基磷灰石涂层

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Hydroxyapatite (HA) is the main inorganic component in the human hard tissues, such as bones and teeth. The use of HA in load-bearing orthopedic applications has been extensively studied to achieve a biocompatible coating layer on implant metals. Commercial pure titanium (cp-Ti) is the most commonly used metallic material in the manufacture of orthopedic implants. Uncoated metal surfaces generally show numerous toxic effects to the surrounding tissues. However, coating of the metallic surfaces before implantation may prevent the interference of implant surfaces in biological media and also could accelerate the new bone formation. The present study focused on the coating of HA on cp-Ti implants, using novel biomimetic sol-gel method. The surfaces of cp-titanium substrates were coated with novel biomimetic sol gel (BSG) method under biological conditions (37°C and pH= 7.4). A bone-like apatite with a nanosized and pure HA structure was formed on the substrates under atmospheric pressure. The pre-coating results indicate that the novel biomimetic sol gel method is definitely a promising coating route in case that optimum coating parameters are established in detail.
机译:羟基磷灰石(HA)是人硬组织中的主要无机成分,如骨骼和牙齿。已经广泛研究了承受承载骨科应用中的HA,以在植入物金属上实现生物相容性涂层。商业纯钛(CP-TI)是制造骨科植入物中最常用的金属材料。未涂覆的金属表面通常对周围组织显示出许多毒性作用。然而,植入前的金属表面涂覆可以防止生物介质中植入物表面的干涉,并且还可以加速新的骨形成。本研究专注于采用新型仿生溶胶 - 凝胶法在CP-TI植入物上涂覆HA。在生物条件下用新型生物摩擦溶胶凝胶(BSG)方法(37℃和pH = 7.4)涂覆CP-钛基材的表面。在大气压下在基板上形成具有纳米化和纯HA结构的骨状磷灰石。预涂布结果表明,新型溶胶凝胶法在详细建立了最佳涂层参数的情况下绝对是有希望的涂层路线。

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