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首页> 外文期刊>Surface & Coatings Technology >In vitro biocompatibility and antibacterial behavior of anodic coatings fabricated in an organic phosphate containing solution on Mg-1.0Ca alloys
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In vitro biocompatibility and antibacterial behavior of anodic coatings fabricated in an organic phosphate containing solution on Mg-1.0Ca alloys

机译:Mg-1.0Ca合金在含有机磷酸盐的溶液中制备的阳极涂层的体外生物相容性和抗菌性能

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Magnesium alloys have received considerable attention to potentially serve as biodegradable biomaterials due to their excellent mechanical properties and biological performance. In order to achieve a proper degradation rate, acceptable biocompatibility and good antibacterial ability, magnesium alloys are usually modified by micro arc oxidation (MAO). In this paper, sodium phytate (Na(12)Phy), one natural organic substance and widely used as food additive, is selected as the main MAO electrolyte. The process of Na(12)Phy taking part in the coating formation is investigated by characterizing the coating composition and structure. The biocompatibility and antibacterial property of the MAO treated samples are measured by the MTT assay and pellicle sticking method. The results show that magnesium phosphate is developed in the MAO coatings, suggesting that Na(12)Phy is decomposed into inorganic phosphates and lower myo-inositol phosphate esters due to spark discharge. In vitro biocompatibility evaluated by L-929 cells indicates that both the substrate and MAO samples do not induce toxicity to the cells, meeting the need for use as biomaterials. The MAO samples achieve the antibacterial effect of 99.99% against Staphylococcus aureus and 99.98% against Escherichia coil. After 24 h immersion in E. coil suspensions, the MAO samples have been corroded, indicating that they achieve the excellent antibacterial ability due to their corrosion in the tested suspensions. (C) 2016 Elsevier B.V. All rights reserved.
机译:镁合金由于其优异的机械性能和生物性能而备受关注,因此有潜力用作可生物降解的生物材料。为了获得合适的降解速率,可接受的生物相容性和良好的抗菌能力,通常通过微弧氧化(MAO)对镁合金进行改性。在本文中,肌醇六磷酸钠(Na(12)Phy)是一种天然有机物质,被广泛用作食品添加剂,被选作MAO的主要电解质。通过表征涂层的组成和结构,研究了Na(12)Phy参与涂层形成的过程。通过MTT测定和防护膜粘附方法测量MAO处理的样品的生物相容性和抗菌性能。结果表明,在MAO涂层中形成了磷酸镁,这表明Na(12)Phy由于火花放电而分解为无机磷酸酯和较低的肌醇磷酸酯。通过L-929细胞评估的体外生物相容性表明,底物和MAO样品均不诱导对细胞的毒性,满足了用作生物材料的需求。 MAO样品对金黄色葡萄球菌的抗菌效果达到99.99%,对大肠埃希氏菌的抗菌效果达到99.98%。在E.卷材悬浮液中浸泡24小时后,MAO样品已被腐蚀,这表明由于它们在测试的悬浮液中的腐蚀,它们具有出色的抗菌能力。 (C)2016 Elsevier B.V.保留所有权利。

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