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首页> 外文期刊>Journal of biomedical materials research, Part A >Hydroxyapatite-coated magnesium implants with improved in vitro and in vivo biocorrosion, biocompatibility, and bone response
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Hydroxyapatite-coated magnesium implants with improved in vitro and in vivo biocorrosion, biocompatibility, and bone response

机译:羟基磷灰石涂层镁植入物具有改善的体外和体内生物腐蚀,生物相容性和骨骼反应

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摘要

Magnesium and its alloys are candidate materials for biodegradable implants; however, excessively rapid corrosion behavior restricts their practical uses in biological systems. For such applications, surface modification is essential, and the use of anticorrosion coatings is considered as a promising avenue. In this study, we coated Mg with hydroxyapatite (HA) in an aqueous solution containing calcium and phosphate sources to improve its in vitro and in vivo biocorrosion resistance, biocompatibility and bone response. A layer of needle-shaped HA crystals was created uniformly on the Mg substrate even when the Mg sample had a complex shape of a screw. In addition, a dense HA-stratum between this layer and the Mg substrate was formed. This HA-coating layer remarkably reduced the corrosion rate of the Mg tested in a simulated body fluid. Moreover, the biological response, including cell attachment, proliferation and differentiation, of the HA-coated samples was enhanced considerably compared to samples without a coating layer. The preliminary in vivo experiments also showed that the biocorrosion of the Mg implant was significantly retarded by HA coating, which resulted in good mechanical stability. In addition, in the case of the HA-coated implants, biodegradation was mitigated, particularly over the first 6 weeks of implantation. This considerably promoted bone growth at the interface between the implant and bone. These results confirmed that HA-coated Mg is a promising material for biomedical implant applications.
机译:镁及其合金是可生物降解植入物的候选材料。然而,过快的腐蚀行为限制了它们在生物系统中的实际应用。对于此类应用,必须进行表面改性,并且使用防腐涂料被认为是一种有前途的途径。在这项研究中,我们在含有钙和磷酸盐源的水溶液中用羟基磷灰石(HA)涂覆了Mg,以改善其在体内和体外的生物耐腐蚀性,生物相容性和骨骼反应。即使当Mg样品具有复杂的螺钉形状时,也可以在Mg基板上均匀地形成一层针状HA晶体。另外,在该层和Mg衬底之间形成了致密的HA层。这种HA涂层显着降低了在模拟体液中测试的Mg的腐蚀速率。此外,与没有涂层的样品相比,HA涂层的样品的生物学反应,包括细胞附着,增殖和分化,得到了显着提高。初步的体内实验还表明,HA涂层可显着抑制Mg植入物的生物腐蚀,从而具有良好的机械稳定性。此外,对于使用HA涂层的植入物,生物降解得到了缓解,特别是在植入的前6周内。这大大促进了植入物与骨骼之间界面处的骨骼生长。这些结果证实,HA包被的镁是用于生物医学植入物应用的有前途的材料。

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