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Surface Microstructure And Cell Biocompatibility Of Silicon-substituted Hydroxyapatite Coating On Titanium Substrate Prepared By A Biomimetic Process

机译:仿生法制备钛基硅取代羟基磷灰石涂层的表面微观结构和细胞生物相容性

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Silicon-substituted hydroxyapatite (Si-HA) coatings with 0.14 to 1.14 at.% Si on pure titanium were prepared by a biomimetic process. The microstructure characterization and the cell compatibility of the Si-HA coatings were studied in comparison with that of hydroxyapatite (HA) coating prepared in the same way. The prepared Si-HA coatings and HA coating were only partially crystallized or in nano-scaled crystals. The introduction of Si element in HA significantly reduced P and Ca content, but densified the coating. The atom ratio of Ca to(P+Si) in the Si-HA coatings was in a range of 1.61-1.73, increasing slightly with an increase in the Si content. FTIR results displayed that Si entered HA in a form of SiO_4 unit by substituting for PO_4 unit. The cell attachment test showed that the HA and Si-HA coatings exhibited better cell response than the uncoated titanium, but no difference was observed in the cell response between the HA coating and the Si-HA coatings. Both the HA coating and the Si-HA coatings demonstrated a significantly higher cell growth rate than the uncoated pure titanium (p<0.05) in all incubation periods while the Si-HA coating exhibited a significantly higher cell growth rate than the HA coating (p<0.05). Si-HA with 0.42 at.% Si presented the best cell biocompatibility in all of the incubation periods. It was suggested that the synthesis mode of HA and Si-HA coatings in a simulated body environment in the biomimetic process contribute significantly to good cell biocompatibility.
机译:通过仿生工艺制备了在纯钛上具有0.14至1.14 at。%Si的硅取代羟基磷灰石(Si-HA)涂层。与用相同方法制备的羟基磷灰石(HA)涂层相比,研究了Si-HA涂层的微观结构表征和细胞相容性。制备的Si-HA涂层和HA涂层仅部分结晶或纳米级晶体。在HA中引入Si元素可显着降低P和Ca含量,但可使涂层致密。 Si-HA涂层中Ca与(P + Si)的原子比在1.61-1.73的范围内,随着Si含量的增加而略有增加。 FTIR结果表明,Si以SiO_4单元的形式取代HA_4进入了HA。电池附着测试表明,HA和Si-HA涂层比未涂层的钛具有更好的电池响应,但是HA涂层和Si-HA涂层之间的电池响应没有差异。在所有孵育期间,HA涂层和Si-HA涂层均显示出比未涂覆的纯钛显着更高的细胞生长速率(p <0.05),而Si-HA涂层则显示出比HA涂层显着更高的细胞生长速率(p <0.05)。 <0.05)。含0.42 at。%Si的Si-HA在所有孵育期间均表现出最佳的细胞生物相容性。有人提出,在仿生过程的模拟人体环境中,HA和Si-HA涂层的合成方式对良好的细胞生物相容性有重要贡献。

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