首页> 外文期刊>Acta biomaterialia >Plasma-assisted surface modification of organic biopolymers to prevent bacterial attachment.
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Plasma-assisted surface modification of organic biopolymers to prevent bacterial attachment.

机译:等离子体辅助有机生物聚合物的表面改性,以防止细菌附着。

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Despite many synthetic biomaterials having physical properties that are comparable or even superior to those of natural body tissues, they frequently fail due to the adverse physiological reactions they cause within the human body, such as infection and inflammation. The surface modification of biomaterials is an economical and effective method by which biocompatibility and biofunctionality can be achieved while preserving the favorable bulk characteristics of the biomaterial, such as strength and inertness. Amongst the numerous surface modification techniques available, plasma surface modification affords device manufacturers a flexible and environmentally friendly process that enables tailoring of the surface morphology, structure, composition, and properties of the material to a specific need. There are a vast range of possible applications of plasma modification in biomaterial applications, however, the focus of this review paper is on processes that can be used to develop surface morphologies and chemical structures for the prevention of adhesion and proliferation of pathogenic bacteria on the surfaces of in-dwelling medical devices. As such, the fundamental principles of bacterial cell attachment and biofilm formation are also discussed. Functional organic plasma polymerised coatings are also discussed for their potential as biosensitive interfaces, connecting inorganic/metallic electronic devices with their physiological environments.
机译:尽管许多合成生物材料的物理性能可与天然人体组织相比,甚至更高,但是由于它们在人体内引起的不良生理反应,例如感染和炎症,它们常常会失效。生物材料的表面改性是一种经济有效的方法,通过该方法可以实现生物相容性和生物功能性,同时保留生物材料的良好体积特性(例如强度和惰性)。在众多可用的表面改性技术中,等离子表面改性为设备制造商提供了一种灵活而环保的工艺,可根据特定需要定制材料的表面形态,结构,组成和性能。等离子体修饰在生物材料应用中有广泛的可能应用,但是,本文的重点是可用于开发表面形态和化学结构以防止病原菌在表面粘附和扩散的工艺内置医疗设备。这样,还讨论了细菌细胞附着和生物膜形成的基本原理。还讨论了功能性有机等离子体聚合涂层作为生物敏感界面的潜力,将无机/金属电子设备与其生理环境相连接。

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