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Hybrid nanostructured coating for increased resistance of prosthetic devices to staphylococcal colonization

机译:混合纳米结构涂层可提高假体对葡萄球菌定植的抵抗力

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摘要

Prosthetic medical device-associated infections are responsible for significant morbidity and mortality rates. Novel improved materials and surfaces exhibiting inappropriate conditions for microbial development are urgently required in the medical environment. This study reveals the benefit of using natural Mentha piperita essential oil, combined with a 5 nm core/shell nanosystem-improved surface exhibiting anti-adherence and antibiofilm properties. This strategy reveals a dual role of the nano-oil system; on one hand, inhibiting bacterial adherence and, on the other hand, exhibiting bactericidal effect, the core/shell nanosystem is acting as a controlled releasing machine for the essential oil. Our results demonstrate that this dual nanobiosystem is very efficient also for inhibiting biofilm formation, being a good candidate for the design of novel material surfaces used for prosthetic devices.
机译:假体与医疗设备相关的感染是导致明显的发病率和死亡率的原因。在医疗环境中,迫切需要表现出不适宜微生物生长条件的新型改良材料和表面。这项研究揭示了使用天然薄荷薄荷精油与5 nm核/壳纳米系统改良的表面相结合具有抗粘附和抗生物膜特性的好处。这种策略揭示了纳米油体系的双重作用。一方面,抑制细菌的附着,另一方面表现出杀菌作用,核/壳纳米系统充当精油的控释机器。我们的结果表明,这种双重纳米生物系统在抑制生物膜形成方面也非常有效,是设计用于假体装置的新型材料表面的良好候选者。

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