Gravius S, Wirtz D C
Klinik und Poliklinik für Orthopädie und Unfallchirurgie, Universitätsklinikum Bonn, Sigmund-Freud-Str. 25, 53105, Bonn, Deutschland.
Orthopade. 2015 Dec;44(12):952, 954-60. doi: 10.1007/s00132-015-3189-6.
Antimicrobial coatings have a great potential in the treatment and prevention of periprosthetic joint infection.
To present established and novel concepts of antimicrobial coatings.
A literature review and discussion of published concepts in basic research, pre-clinical animal studies, and clinical practice were carried out.
To date there has been a wide range of technical solutions (anti-adhesive surfaces, bioactive surfaces with antimicrobial effects, surfaces releasing antimicrobial substances, nanostructures, bioactive surfaces affecting biofilm development) demonstrating a high potential in pre-clinical studies. Only a few with the bactericidal activity of silver ions have been prepared for the market. Conclusive results with regard to biocompatibility and toxicity are lacking.
Despite the great potential of antimicrobial coatings, no conclusive decisions can be made because of the limited data and the lack of evidence of their clinical efficacy on the basis of prospective controlled clinical studies. In addition to their unlimited biocompatibility, innovative concepts have to be feasible in everyday clinical routine.
抗菌涂层在假体周围关节感染的治疗和预防方面具有巨大潜力。
介绍抗菌涂层的既定概念和新观念。
对基础研究、临床前动物研究及临床实践中已发表的概念进行文献综述和讨论。
迄今为止,已有多种技术方案(抗黏附表面、具有抗菌作用的生物活性表面、释放抗菌物质的表面、纳米结构、影响生物膜形成的生物活性表面)在临床前研究中显示出巨大潜力。只有少数具有银离子杀菌活性的产品已投放市场。关于生物相容性和毒性,尚无确凿结果。
尽管抗菌涂层潜力巨大,但由于数据有限且缺乏前瞻性对照临床研究证明其临床疗效,目前无法做出确凿的决策。除了具有无限的生物相容性外,创新概念还必须在日常临床实践中可行。