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Strategies for Improving Antimicrobial Properties of Stainless Steel

机译:改善不锈钢抗微生物性质的策略

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摘要

In this review, strategies for improving the antimicrobial properties of stainless steel (SS) are presented. The main focus given is to present current strategies for surface modification of SS, which alter surface characteristics in terms of surface chemistry, topography and wettability/surface charge, without influencing the bulk attributes of the material. As SS exhibits excellent mechanical properties and satisfactory biocompatibility, it is one of the most frequently used materials in medical applications. It is widely used as a material for fabricating orthopedic prosthesis, cardiovascular stents/valves and recently also for three dimensional (3D) printing of custom made implants. Despite its good mechanical properties, SS lacks desired biofunctionality, which makes it prone to bacterial adhesion and biofilm formation. Due to increased resistance of bacteria to antibiotics, it is imperative to achieve antibacterial properties of implants. Thus, many different approaches were proposed and are discussed herein. Emphasis is given on novel approaches based on treatment with highly reactive plasma, which may alter SS topography, chemistry and wettability under appropriate treatment conditions. This review aims to present and critically discuss different approaches and propose novel possibilities for surface modification of SS by using highly reactive gaseous plasma in order to obtain a desired biological response.
机译:在本综述中,提出了提高不锈钢(SS)抗微生物性能的策略。给出的主要重点是呈现SS的表面改性的当前策略,其在表面化学,地形和润湿性/表面电荷方面改变了表面特征,而不会影响材料的散装属性。由于SS具有出色的机械性能和令人满意的生物相容性,因此它是医疗应用中最常用的材料之一。它被广泛用作制造整形外科假体,心血管支架/阀门的材料,并且最近也用于定制植入物的三维(3D)印刷。尽管其机械性能良好,但SS缺乏所需的生物功能性,这使得易于细菌粘附和生物膜形成。由于细菌对抗生素的抗性增加,因此实现植入物的抗菌性能。因此,提出了许多不同的方法,并在此讨论。基于高反应性血浆处理的新方法给出了重点,这可能在适当的治疗条件下改变SS地形,化学和润湿性。本综述旨在通过使用高反应性气态等离子体来展示和批判性地讨论不同方法,并提出了SS表面改性的新可能性,以获得所需的生物反应。

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