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A sol-gel based silver nanoparticle/polytetrafluorethylene (AgNP/PTFE) coating with enhanced antibacterial and anti-corrosive properties

机译:一种基于溶胶 - 凝胶的银纳米粒子/聚四氟乙烯(AGNP / PTFE)涂层,具有增强的抗菌和抗腐蚀性能

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In this research, a silver nanoparticle/polytetrafluorethylene (AgNP/PTFE) coating for metallic implants was fabricated using a facile layer-by-layer coating method. PTFE nanoparticles were immobilized in a sol-gel matrix and dip-coated onto 316L stainless steel via a mussel-inspired approach followed by AgNP deposition. Benefiting from the synergistic effect of antibacterial AgNP and non-stick PTFE, the AgNP/PTFE coating exhibited superior antibiofilm activity against Escherichia coli WT F1693 and enhanced corrosion resistance. Compared with surfaces only coated with PTFE, the AgNP/PTFE coated surfaces were capable of sustained release of silver ions, inhibiting up to similar to 50% bacterial biomass accumulation after 7 days. To understand the anti-adhesion mechanism, both classic DLVO and XDLVO theories were used to model and explain bacterial adhesion. Despite concerns that an over-release of silver ions may cause toxic effects towards mammalian cells, the coating procedures offered ease of control over the silver loading, making it potentially useful for preventing metallic implant-associated infections.
机译:在该研究中,使用容易的层涂布法制造用于金属植入物的银纳米粒子/聚四氟乙烯(AgNP / PTFE)涂层。将PTFE纳米颗粒固定在溶胶 - 凝胶基质中,并通过贻贝的方法浸涂到316L不锈钢上,然后进行AgNP沉积。受益于抗菌AGNP和非粘性PTFE的协同作用,AgNP / PTFE涂层对大肠杆菌WTF1693的抗抗抗抗涂层具有优异的抗抗抗性活性和增强的耐腐蚀性。与仅涂有PTFE的表面相比,AgNP / PTFE涂层表面能够持续释放银离子,抑制7天后抑制与50%的细菌生物质积累相似。为了了解抗粘附机制,经典DLVO和XDLVO理论都用于模拟和解释细菌粘附。尽管有担心的是银离子的过度释放可能对哺乳动物细胞造成毒性作用,但涂料程序易于对银载的控制,使其可能用于预防金属植入物相关的感染。

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