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Biological and antibacterial properties of composite coatings on titanium surfaces modified by microarc oxidation and sol-gel processing

机译:微arc氧化和溶胶 - 凝胶加工改性钛表面复合涂层的生物和抗菌性能

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The aim of this study was to assess the biological and antibacterial properties of composite coatings on titanium surfaces modified by microarc oxidation and sol-gel processing. A layer of hydroxyapatite (HA) with different concentrations of zinc (Zn) ions, prepared by the sol-gel method, was coated on microarc oxidized Ti (MAO-Ti) substrates. Five groups of specimens were tested. The microstructures, elemental compositions, and chemical phases of the composite coatings were investigated, and the biological and antibacterial properties of specimens were evaluated in vitro . The EDS and XRD results confirmed the composite coatings contained HA and Zn ions which was formed on titanium surfaces. The proliferation and ALP activity of BMSCs was significantly higher in group MAO-Ti+HA and MAO-Ti+HA+Zn(High), but MAO-Ti+HA+Zn(High) showed better antibacterial performance. The MAO-Ti substrate coated with the higher Zn concentration in the HA coating exhibited not only favorable biocompatibility, but also antibacterial action against Gram-negative anaerobic bacteria.
机译:本研究的目的是评估通过Microarc氧化和溶胶 - 凝胶加工改性的钛表面上复合涂层的生物和抗菌性能。通过溶胶方法制备的具有不同浓度的锌(Zn)离子的羟基磷灰石(HA)涂覆在Microarc氧化Ti(MAO-Ti)底物上。测试了五组标本。研究了复合涂层的微观结构,元素组合物和化学阶段,并在体外评价样品的生物学和抗菌性能。 EDS和XRD结果证实了复合涂层含有在钛表面上形成的HA和Zn离子。 BMSCs的增殖和ALP活性在MAO-TI + HA和MAO-TI + HA + Zn(高)中显着高,但MAO-TI + HA + Zn(高)显示出更好的抗菌性能。在HA涂层中涂覆具有较高Zn浓度的MAO-TI衬底不仅表现出良好的生物相容性,而且表现出对革兰阴性厌氧细菌的抗菌作用。

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