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Effect of fluorination/oxidation level of nano-structured titanium on the behaviors of bacteria and osteoblasts

机译:纳米结构钛的氟化/氧化水平对细菌和成骨细胞行为的影响

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摘要

Biomaterials with enhanced antibacterial property and osteogenic activity are highly desirable for the prevention of implant associated infection and promotion of osseointegration. Titanium surface modified by fluorine and oxygen dual-deposition has shown better antibacterial property and corrosion resistance than mono-deposition. Herein, fluorine and oxygen dual-deposited coatings (FO-DDCs) on titanium with different fluorine and oxygen percentage were fabricated to explore the effect of fluorination/oxidation level on the behaviors of bacteria and osteoblasts. Antibacterial test shows that titanium surface with the content ratio of fluoride to oxides greater than 0.22 exhibits excellent a stable and broad spectra antibacterial ability. The FO-DDCs can effectively restrain the biofilm formation of S. aureus through acidifying microenvironment, inactivating ATP synthesis and producing oxidative stress by released fluoride ion and existed titanium-fluoride complexes. Meanwhile, the cell viability and osteogenic activity tests show that the FO-DDCs does not introduce cytotoxicity to osteoblasts, but promote cell adhesion and spreading, enhance ALP activities and ECM mineralization, upregulate osteogenesis related gene expressions of osteoblasts. In conclusion, optimizing an appropriate fluorination/oxidation level by plasma-related technology can endow titanium surface with antibacterial and osteogenic properties, which is an attracting strategy to design multifunctional biomaterials for dental or orthopedic applications.
机译:对于防止植入物相关感染和促进骨整合,非常需要具有增强的抗菌性能和成骨活性的生物材料。氟和氧双重沉积改性的钛表面比单一沉积具有更好的抗菌性能和耐腐蚀性。在本文中,制造了具有不同氟和氧百分比的钛上的氟和氧双沉积涂层(FO-DDCs),以研究氟化/氧化水平对细菌和成骨细胞行为的影响。抗菌测试表明,氟化物与氧化物的含量比大于0.22的钛表面表现出优异的稳定和广谱抗菌能力。 FO-DDCs通过酸化微环境,失活ATP合成并通过释放氟离子和存在的氟化钛复合物产生氧化应激,可有效抑制金黄色葡萄球菌的生物膜形成。同时,细胞活力和成骨活性测试表明,FO-DDCs不会对成骨细胞产生细胞毒性,但可促进细胞黏附和扩散,增强ALP活性和ECM矿化作用,上调成骨细胞相关的成骨相关基因表达。总之,通过等离子体相关技术优化适当的氟化/氧化水平可以赋予钛表面抗菌和成骨性,这是设计用于牙科或整形外科应用的多功能生物材料的一种引人注目的策略。

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