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Reducing implant-related infections: active release strategies

机译:减少植入物相关感染:主动释放策略

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摘要

Despite sterilization and aseptic procedures, bacterial infection remains a major impediment to the utility of medical implants including catheters, artificial prosthetics, and subcutaneous sensors. Indwelling devices are responsible for over half of all nosocomial infections, with an estimate of 1 million cases per year (2004) in the United States alone. Device-associated infections are the result of bacterial adhesion and subsequent biofilm formation at the implantation site. Although useful for relieving associated systemic infections, conventional antibiotic therapies remain ineffective against biofilms. Unfortunately, the lack of a suitable treatment often leaves extraction of the contaminated device as the only viable option for eliminating the biofilm. Much research has focused on developing polymers that resist bacterial adhesion for use as medical device coatings. This tutorial review focuses on coatings that release antimicrobial agents (i.e., active release strategies) for reducing the incidence of implant-associated infection. Following a brief introduction to bacteria, biofilms, and infection, the development and study of coatings that slowly release antimicrobial agents such as antibiotics, silver ions, antibodies, and nitric oxide are covered. The success and limitations of these strategies are highlighted.
机译:尽管进行了灭菌和无菌操作,细菌感染仍然是医疗植入物(包括导管,人工修复物和皮下传感器)实用性的主要障碍。院内器械占所有医院感染的一半以上,仅在美国,估计每年(2004年)就有100万例。与设备相关的感染是细菌粘附和随后在植入部位形成生物膜的结果。尽管可用于缓解相关的全身性感染,但常规抗生素疗法仍对生物膜无效。不幸的是,缺乏合适的处理方法常常使提取受污染的装置成为消除生物膜的唯一可行选择。许多研究集中在开发抗细菌粘附的聚合物,以用作医疗器械涂料。本教程的重点是释放抗菌剂的涂层(即主动释放策略),以减少与植入物相关的感染的发生率。在简要介绍细菌,生物膜和感染之后,介绍了缓慢释放抗菌剂(例如抗生素,银离子,抗体和一氧化氮)的涂层的开发和研究。这些策略的成功和局限性得到了强调。

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