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Non-equilibrium plasma processing for the preparation of antibacterial surfaces

机译:用于制备抗菌表面的非平衡等离子体处理

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摘要

Non-equilibrium plasmas offer several strategies for developing antibacterial surfaces that are able to repel and/or to kill bacteria. Due to the variety of devices, implants, and materials in general, as well as of bacteria and applications, plasma assisted antibacterial strategies need to be tailored to each specific surface. Nano-composite coatings containing inorganic (metals and metal oxides) or organic (drugs and biomolecules) compounds can be deposited in one step, and used as drug delivery systems. On the other hand, functional coatings can be plasma-deposited and used to bind antibacterial molecules, for synthesizing surfaces with long lasting antibacterial activity. In addition, non-fouling coatings can be produced to inhibit the adhesion of bacteria and reduce the formation of biofilm. This paper reviews plasma-based strategies aimed to reduce bacterial attachment and proliferation on biomedical materials and devices, but also onto materials used in other fields. Most of the activities described have been developed in the lab of the authors.
机译:非平衡等离子体提供了几种开发能够排斥和/或杀死细菌的抗菌表面的策略。由于设备,植入物和材料的种类繁多,以及细菌和应用的种类繁多,因此需要针对每个特定表面量身定制血浆辅助抗菌策略。包含无机(金属和金属氧化物)或有机(药物和生物分子)化合物的纳米复合涂层可以一步沉积,并用作药物输送系统。另一方面,功能性涂层可以进行等离子体沉积并用于结合抗菌分子,以合成具有持久抗菌活性的表面。另外,可以产生不结垢的涂层以抑制细菌的粘附并减少生物膜的形成。本文回顾了基于等离子体的策略,旨在减少细菌在生物医学材料和设备上以及在其他领域使用的材料上的附着和扩散。所描述的大多数活动都是在作者的实验室中开发的。

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