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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Phosphate conversion coating reduces the degradation rate and suppresses side effects of metallic magnesium implants in an animal model
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Phosphate conversion coating reduces the degradation rate and suppresses side effects of metallic magnesium implants in an animal model

机译:磷酸盐转化涂层降低降解速率并抑制金属镁植入物在动物模型中的副作用

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Abstract Magnesium alloys have promising mechanical and biological properties for the development of degradable implants. However, rapid implant corrosion and gas accumulations in tissue impede clinical applications. With time, the implant degradation rate is reduced by a highly biocompatible, phosphate‐containing corrosion layer. To circumvent initial side effects after implantation it was attempted to develop a simple in vitro procedure to generate a similarly protective phosphate corrosion layer. To this end magnesium samples were pre‐incubated in phosphate solutions. The resulting coating was well adherent during routine handling procedures. It completely suppressed the initial burst of corrosion and it reduced the average in vitro magnesium degradation rate over 56 days almost two‐fold. In a small animal model phosphate coatings on magnesium implants were highly biocompatible and abrogated the appearance of gas cavities in the tissue. After implantation, the phosphate coating was replaced by a layer with an elemental composition that was highly similar to the corrosion layer that had formed on plain magnesium implants. The data demonstrate that a simple pre‐treatment could improve clinically relevant properties of magnesium‐based implants. ? 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 1622–1635, 2017.
机译:抽象的镁合金具有有希望的机械和生物学性能,可降解可降解植入物。然而,组织中快速植入腐蚀和气体累积阻碍了临床应用。随着时间的推移,通过高度生物相容性,含磷酸盐的腐蚀层降低植入物降解速率。为了在植入后避免初始副作用,试图开发一种简单的体外过程,以产生类似的保护性磷酸盐腐蚀层。在磷酸盐溶液中预孵育该镁样品。在常规处理程序期间,所得涂层良好粘附。它完全抑制了腐蚀的初始爆发,它降低了平均体外镁降解速率超过56天几乎是两倍。在镁植入物上的磷酸盐涂料中的小型动物模型中,高度生物相容性,并且废除了组织中的气体空腔的外观。植入后,磷酸盐涂层由具有元素组合物的层替换,所述元素组合物高于在普通镁植入物上形成的腐蚀层。数据表明,简单的预处理可以改善基于镁的植入物的临床相关性质。还2016年Wiley期刊,Inc。J生物保解率B:Appl Biomater,105B:1622-1635,2017。

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