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Antimicrobial and osteogenic effect of Ag-implanted titanium with a nanostructured surface

机译:纳米表面植入银的钛的抗菌和成骨作用

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摘要

Ag-implanted titanium with a nanostructured surface was prepared by hydrothermal treatment with H2O2 followed by Ag plasma immersion ion implantation. Streptococcus mutans, Porphyromonas gingivalis and Candida albicans were chosen for antimicrobial tests. Genes related to microbial structure or adhesion, namely glucan-binding proteins B (GbpB), fimbria protein A (FimA), and agglutinin-like sequence4 (Als4), were examined. The osteoblast’s attachment, viability, and quantitative analysis of osteogenic gene expression (Alp, Ocn, RunX2) on titanium surfaces were evaluated. Scanning electron microscopy (SEM) revealed that Ag nanoparticles of approximately 10 nm were incorporated on the nanostructured surface of titanium after Ag plasma immersion ion implantation. Trials showed that 93.99% of S. mutans, 93.57% of P. g, and 89.78% of C. albicans were killed on the Ag-implanted titanium with a nanostructured surface. Gene expressions from the three microorganisms confirmed the antimicrobial activities of the Ag-implanted titanium with a nanostructured surface. Furthermore, the adhesive images and viability assays indicated that the Ag-implanted titanium with a nanostructured surface did not impair osteoblasts. The expressions of osteoblast phenotype genes in cells grown on the Ag-implanted titanium surface were significantly increased. The results of this study suggest that the Ag-implanted titanium with a nanostructured surface displays good antimicrobial properties, reducing gene expressions of microorganisms, and excellent cell adhesion and osteogenic effects.
机译:通过用H 2 O 2进行水热处理,然后进行Ag等离子体浸没离子注入,制备了具有纳米结构表面的Ag注入的钛。选择变形链球菌,牙龈卟啉单胞菌和白色念珠菌进行抗菌测试。检查了与微生物结构或粘附相关的基因,即葡聚糖结合蛋白B(GbpB),菌毛蛋白A(FimA)和凝集素样序列4(Als4)。评估了成钛细胞在钛表面的附着,成活性以及成骨基因表达(Alp,Ocn,RunX2)的定量分析。扫描电子显微镜(SEM)显示,在Ag等离子体浸没离子注入之后,将大约10nm的Ag纳米颗粒结合到钛的纳米结构表面上。试验表明,在植入了纳米结构表面的钛上,杀死了93.99%的变形链球菌,93.57%的P. g和89.78%的白色念珠菌。来自三种微生物的基因表达证实了具有纳米结构的表面的银植入的钛的抗菌活性。此外,胶粘剂图像和可行性分析表明,纳米表面植入银的钛不会损害成骨细胞。植入银的钛表面上生长的细胞中成骨细胞表型基因的表达显着增加。这项研究的结果表明,具有纳米结构的表面植入银的钛具有良好的抗菌性能,减少了微生物的基因表达,并具有优异的细胞粘附和成骨作用。

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