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活性氧治疗的热点:抗菌和免疫机制、安全性和临床应用。

Hot topics in reactive oxygen therapy: Antimicrobial and immunological mechanisms, safety and clinical applications.

机构信息

Hampshire Hospitals NHS Foundation Trust, UK; University of Southampton Faculty of Medicine, Southampton, UK.

Imperial College London, London, UK; University of Manchester, Manchester, UK.

出版信息

J Glob Antimicrob Resist. 2017 Mar;8:194-198. doi: 10.1016/j.jgar.2016.12.012. Epub 2017 Feb 17.

Abstract

Reactive oxygen species (ROS), when combined with various delivery mechanisms, has the potential to become a powerful novel therapeutic agent against difficult-to-treat infections, especially those involving biofilm. It is important in the context of the global antibiotic resistance crisis. ROS is rapidly active in vitro against all Gram-positive and Gram-negative bacteria tested. ROS also has antifungal and antiviral properties. ROS prevents the formation of biofilms caused by a range of bacterial species in wounds and respiratory epithelium. ROS has been successfully used in infection prevention, eradication of multiresistant organisms, prevention of surgical site infection, and intravascular line care. This antimicrobial mechanism has great potential for the control of bioburden and biofilm at many sites, thus providing an alternative to systemic antibiotics on epithelial/mucosal surfaces, for wound and cavity infection, chronic respiratory infections and possibly recurrent urinary infections as well as local delivery to deeper structures and prosthetic devices. Its simplicity and stability lend itself to use in developing economies as well.

摘要

活性氧(ROS)与各种输送机制结合后,有可能成为治疗治疗困难感染(特别是涉及生物膜的感染)的一种强大新型治疗药物。这在全球抗生素耐药性危机的背景下尤为重要。ROS 在体外对所有测试的革兰氏阳性和革兰氏阴性细菌均具有快速活性。ROS 还具有抗真菌和抗病毒特性。ROS 可防止伤口和呼吸道上皮中多种细菌引起的生物膜形成。ROS 已成功用于感染预防、消除多耐药生物、预防手术部位感染和血管内线路护理。这种抗菌机制在许多部位控制生物负荷和生物膜方面具有巨大潜力,从而为上皮/粘膜表面的全身性抗生素提供了替代方案,适用于伤口和腔隙感染、慢性呼吸道感染,以及可能的复发性尿路感染,也可将其递送至深部结构和假体装置。它的简单性和稳定性使其也可在发展中经济体中使用。

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