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Enhanced silver loaded antibacterial titanium implant coating with novel hierarchical effect

机译:增强的银载抗菌钛植入涂层具有新的等级效应

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摘要

In this study, we present a novel strategy for hierarchical antibacterial implant coating by controlling structural and componential features as regulators of surface bactericidal property. Anodized titanium dioxide nanotubes and self-polymerized polydopamine were both used as preliminary antibacterial agents with a significant positive effect on surface bioactivity. At the same time, the storage capacity of nanotubes and the in situ reduction activity of polydopamine can introduce large amounts of strong attached silver nanoparticles for enhanced stable antibacterial performance. The surface morphology, chemical composition, and hydrophilicity had been thoroughly characterized. The sustained silver release performances were continuously monitored. The successively in vitro inhibition on Staphylococcus aureus growth of titanium dioxide nanotube, polydopamine layer and silver nanoparticles demonstrated the hierarchical antibacterial property of the final silver nanoparticles-incorporated polydopamine-modified titanium dioxide nanotube coating (silver/polydopamine/nanotube). Moreover, the bioactivity investigation indicated the vital role of polydopamine-modified titanium dioxide nanotube coating on preserving healthy osteoblast activity at the implant interface. The unique hierarchical coating for titanium implant may be a promising method to maximize antibacterial capacity and maintain good cellular activity at the same time.
机译:在这项研究中,我们通过控制结构和成分特征作为表面杀菌性的调节剂来提出一种分层抗菌植入物涂层的新策略。阳极氧化钛的二氧化钛纳米管和自聚聚多胺均用作初步抗菌剂,对表面生物活性具有显着阳性作用。同时,纳米管的储存能力和聚二胺的原位还原活性可以引入大量的强型银纳米颗粒,以提高稳定的抗菌性能。表面形态,化学成分和亲水性已经完全表征。连续监测持续的银释放性能。依次对二氧化钛纳米管的金黄色葡萄球菌生长的体外抑制,多碳双胺层和银纳米粒子的生长证明了最终银纳米颗粒的分层抗菌性,掺入了多德莫胺改性二氧化钛纳米管涂层(银/聚二胺/纳米管)。此外,生物活性研究表明了聚二胺改性二氧化钛纳米管涂层在植入界面处保持健康成骨细胞活性的重要作用。钛植入物的独特层次涂层可能是最大化抗菌能力并同时保持良好的细胞活性的方法。

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