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细菌生物膜感染及其对抗生素治疗的耐药性和当前的治疗策略。

Bacterial biofilm infections, their resistance to antibiotics therapy and current treatment strategies.

机构信息

Department of Applied Sciences, Indian Institute of Information Technology Allahabad, Allahabad 211012, Uttar Pradesh, India.

Department of Biotechnology, National Institute of Technology, Durgapur, West Bengal, India.

出版信息

Biomed Mater. 2022 Feb 14;17(2). doi: 10.1088/1748-605X/ac50f6.

Abstract

Nearly 80% of human chronic infections are caused due to bacterial biofilm formation. This is the most leading cause for failure of medical implants resulting in high morbidity and mortality. In addition, biofilms are also known to cause serious problems in food industry. Biofilm impart enhanced antibiotic resistance and become recalcitrant to host immune responses leading to persistent and recurrent infections. It makes the clinical treatment for biofilm infections very difficult. Reduced penetration of antibiotic molecules through EPS, mutation of the target site, accumulation of antibiotic degrading enzymes, enhanced expression of efflux pump genes are the probable causes for antibiotics resistance. Accordingly, strategies like administration of topical antibiotics and combined therapy of antibiotics with antimicrobial peptides are considered for alternate options to overcome the antibiotics resistance. A number of other remediation strategies for both biofilm inhibition and dispersion of established biofilm have been developed. The metallic nanoparticles (NPs) and their oxides have recently gained a tremendous thrust as antibiofilm therapy for their unique features. This present comprehensive review gives the understanding of antibiotic resistance mechanisms of biofilm and provides an overview of various currently available biofilm remediation strategies, focusing primarily on the applications of metallic NPs and their oxides.

摘要

近 80%的人类慢性感染是由细菌生物膜形成引起的。这是导致医疗植入物失效的最主要原因,导致发病率和死亡率居高不下。此外,生物膜也被认为是食品工业中严重问题的原因。生物膜赋予了增强的抗生素耐药性,并对宿主免疫反应产生抗性,导致持续和反复的感染。这使得生物膜感染的临床治疗变得非常困难。抗生素分子通过 EPS 的穿透减少、靶位的突变、抗生素降解酶的积累、外排泵基因的增强表达是抗生素耐药性的可能原因。因此,局部应用抗生素和抗生素与抗菌肽联合治疗被认为是克服抗生素耐药性的替代选择。已经开发出许多其他用于抑制生物膜和分散已建立的生物膜的修复策略。金属纳米粒子(NPs)及其氧化物由于其独特的特性,最近作为抗生物膜治疗方法得到了极大的推动。本综述全面介绍了生物膜抗生素耐药机制,并概述了各种现有的生物膜修复策略,主要侧重于金属 NPs 及其氧化物的应用。

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