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Efficient Eradication of Mature Pseudomonas aeruginosa Biofilm via Controlled Delivery of Nitric Oxide Combined with Antimicrobial Peptide and Antibiotics

机译:高效消除成熟的<斜视>假单胞菌铜绿假单胞菌,通过控制递送一氧化氮和抗生素和抗生素

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Fast eradication of mature biofilms is the ‘holy grail’ in the clinical management of device-related infections. Endogenous nitric oxide (NO) produced by macrophages plays an important role in host defense against intracellular pathogens, and NO is a promising agent in preventing biofilms formation in vitro . However, the rate of delivery of NO by various NO donors (e.g., diazeniumdiolates, S -nitrosothiols, etc.) is difficult to control, which hinders fundamental studies aimed at understanding the role of NO in biofilm control. In this study, by using a novel precisely controlled electrochemical NO releasing catheter device, we examine the effect of physiological levels of NO on eradicating mature Pseudomonas aeruginosa biofilm (7 days), as well as the potential application of the combination of NO with antimicrobial agents. It is shown that physiological levels of NO exhibit mixed effects of killing bacteria and dispersing ambient biofilm. The overall biofilm-eradicating effect of NO is quite efficient in a dose-dependent manner over a 3 h period of NO treatment. Moreover, NO also greatly enhances the efficacy of antimicrobial agents, including human beta-defensin 2 (BD-2) and several antibiotics, in eradicating biofilm and its detached cells, which otherwise exhibited high recalcitrance to these antimicrobial agents. The electrochemical NO release technology offers a powerful tool in evaluating the role of NO in biofilm control as well as a promising approach when combined with antimicrobial agents to treat biofilm-associated infections in hospital settings, especially infections resulting from intravascular catheters.
机译:快速消除成熟生物膜是在有关设备相关感染的临床管理中的“圣杯”。由巨噬细胞产生的内源性一氧化氮(NO)在对宿主对细胞内病原体中的宿主防御中起重要作用,并且没有一种预防体外生物膜形成的有希望的剂。然而,难以控制不受各种供体(例如,二氮杂醇酸盐,S-腈噻唑醇等)递送速率,这阻碍了旨在了解NO在生物膜控制中的作用的基础研究。在本研究中,通过使用新型精确控制的电化学不释放导管器件,我们研究了NO擦除成熟的生理水平的生理水平的效果,以及潜在应用NO与抗微生物剂的组合。结果表明,NO表现出杀菌细菌和分散的环境生物膜的混合效果。除了3小时内没有依赖性方式,NO的总体灭菌效果在3小时内不受约束。此外,没有大大提高抗微生物剂,包括人β - 防御素2(BD-2)和几种抗生素的疗效,在根除生物膜及其分离的细胞中,其否则对这些抗微生物剂具有高克累积。电化学无释放技术提供了一种强大的工具,用于评估生物膜控制中否的作用以及与抗微生物剂结合治疗医院环境中的生物膜相关感染时,特别是由血管内导管引起的感染。

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