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Pulsed laser deposition of nanostructured bioactive glass and hydroxyapatite coatings: Microstructural and electrochemical characterization

机译:脉冲激光沉积纳米结构生物活性玻璃和羟基磷灰石涂料:微观结构和电化学表征

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摘要

Bioactive coatings on metallic implants promote osseointegration between bone and implant interfaces. A suitable coating enhances the life span of the implant and reduces the requirement of revision surgery. The coating process needs to be optimized such that it does not alter the bioactivity of the material. To understand this, the biocompatibility of nanostructured bioactive glass and hydroxyapatite-coated Titanium substrate by pulsed laser deposition method is evaluated. Raman and IR spectroscopic techniques based on silica and phosphate functional groups mapping have confirmed homogeneity in coatings by pulse laser deposition method. Comparative studies on nanostructured bioactive glass and hydroxyapatite on titanium surface elaborated the significance of bioactivity, hemocompatibility, and cytocompatibility of the coated surface. Notably, both hydroxyapatite and bioactive glass show good hemocompatibility in powder form. Hemocompatibility and cytocompatibility results validate the enhanced sustenance for hydroxyapatite coating. These results signify the importance of the choice of coating methodology of bioceramics towards implant applications.
机译:金属植入物上的生物活性涂层促进骨骼和植入物界面之间的骨整合。合适的涂料增强了植入物的寿命,降低了修复手术的要求。需要优化涂覆过程,使得它不会改变材料的生物活性。为了理解这一点,评估了通过脉冲激光沉积方法进行纳米结构生物活性玻璃和羟基磷灰石涂覆的钛基材的生物相容性。基于二氧化硅和磷酸酯官能团映射的拉曼和IR光谱技术通过脉冲激光沉积方法确认了涂层的均匀性。纳米结构生物活性玻璃和羟基磷灰石对钛表面的比较研究阐述了生物活性,血液相位性和涂覆表面细胞相容性的意义。值得注意的是,羟基磷灰石和生物活性玻璃均呈粉末形式呈良好的血液排放性。血液相位性和细胞相容性验证了羟基磷灰石涂层的增强寄生。这些结果表示将生物陶瓷涂层方法选择朝向植入应用的重要性。

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