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Use of the Sol–Gel Method for the Preparation of Coatings of Titanium Substrates with Hydroxyapatite for Biomedical Application

机译:用溶胶 - 凝胶法用于制备钛基铝硅酸盐涂层,用于生物医学应用

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Hydroxyapatite (HA) was coated onto the surface of commercially pure titanium grade 4 (a material generally used for implant application) by a dip coating method using HA sol. Hydroxyapatite sol was synthesized via sol–gel using Ca(NO3)2?4H2O and P2O5 as precursors. The surface of the HA coating was homogeneous, as determined by scanning electron microscopy (SEM), attenuated total reflectance Fourier transform infrared (ATR-FTIR), and X-ray diffraction (XRD), which allowed the materials to be characterized. The bioactivity of the synthesized materials and their efficiency for use as future bone implants was confirmed by observing the formation of a layer of hydroxyapatite on the surface of the samples soaked in a fluid simulating the composition of human blood plasma. To verify the biocompatibility of the obtained biomaterial, fibroblasts were grown on a glass surface and were tested for viability after 24 h. The results of the WST-8 analysis suggest that the HA systems, prepared by the sol–gel method, are most suitable for modifying the surface of titanium implants and improving their biocompatibility.
机译:将羟基磷灰石(HA)涂覆在商业上纯钛等级4(通常用于植入物应用的材料)的表面上,通过使用HA溶胶的浸涂方法。使用Ca(NO 3)2→4H2O和P2O5作为前体,通过溶胶 - 凝胶合成羟基磷灰石溶胶。通过扫描电子显微镜(SEM)测定,通过扫描电子显微镜(SEM)来确定HA涂层的表面,允许表征材料的蒸馏电子显微镜(SEM),衰减的总反射率傅里叶变换红外(ATR-FTIR)和X射线衍射(XRD)。通过观察在模拟人血浆组合物的流体的样品表面上形成羟基磷灰石层的形成,确认了合成材料的生物活性及其用作未来骨植入物的效率。为了验证所得生物材料的生物相容性,在玻璃表面上生长成纤维细胞,并在24小时后进行活力。 WST-8分析的结果表明,由溶胶 - 凝胶法制备的HA系统最适合于改变钛植入物的表面并提高其生物相容性。

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