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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Controlling the biodegradation rate of magnesium using biomimetic apatite coating.
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Controlling the biodegradation rate of magnesium using biomimetic apatite coating.

机译:使用仿生磷灰石涂层控制镁的生物降解速率。

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摘要

Magnesium is light, biocompatible and has similar mechanical properties to natural bone, so it has the potential to be used as a biodegradable material for orthopedic applications. However, pure magnesium severely corrodes in a physiological environment, which may result in fracture prior to substantial tissue healing. Hydroxyapatite (HA) is the main composition of natural bone. It has excellent bioactivity and osteoconductivity. In this study, HA coating with two different thicknesses was applied onto the surface of pure magnesium substrates using a biomimetic technique. The corrosion rate of the surface-treated substrates was tested. It was found that both types of coatings substantially slowed down the corrosion of the substrate, and the dual coating was more effective than the single coating in hindering the degradation of the substrate. Thus, the corrosion rate of magnesium implants can be closely tailored by adjusting apatite coating thickness and thereby monitoring the release of magnesium ions into the body.
机译:镁是光,生物相容性的,具有与天然骨骼相似的机械性能,因此它具有用作整形外科应用的可生物降解的材料。然而,纯镁在生理环境中严重腐蚀,这可能在大量组织愈合之前导致骨折。羟基磷灰石(HA)是天然骨骼的主要成分。它具有出色的生物活性和骨导电性。在该研究中,使用仿生技术将具有两种不同厚度的HA涂层涂覆到纯镁基板的表面上。测试了表面处理的底物的腐蚀速率。结果发现,两种类型的涂层基本上减慢了基材的腐蚀,并且双涂层比在阻碍基材的降解时比单涂层更有效。因此,镁植入物的腐蚀速率可以通过调节磷灰石涂层厚度来紧密定制,从而监测镁离子释放到体内。

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