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细菌生物膜及其耐药机制:天然药物治疗的简要观察。

Bacterial biofilms and their resistance mechanisms: a brief look at treatment with natural agents.

机构信息

Medical Toxicology Research Centre, Faculty of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.

Department of Medicinal Chemistry, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran.

出版信息

Folia Microbiol (Praha). 2022 Aug;67(4):535-554. doi: 10.1007/s12223-022-00955-8. Epub 2022 Mar 14.

Abstract

Biofilm is a complex community of microorganisms residing within a polysaccharide and/or protein matrix. Biofilm can be produced by several microorganisms, including various bacteria and fungi. Nowadays, the resistance of biofilm-growing cells to antimicrobials originated from the structural nature of biofilms, and phenotypic alteration of sessile cells is becoming a global issue. Bacterial biofilms are important in various aspects of human health, including chronic infections, dental plaque, and infection of indwelling medical devices such as catheters. They are also a major problem in other industries, including oil recovery, drinking water distribution, papermaking, metalworking, and food processing. Estimates indicate that more than 80% of infectious diseases are biofilm-derived. The aim of this study is to describe mechanisms of antibiotic resistance to provide a better perspective on how to manage it. Moreover, the current strategies for biofilm inhibition were described. Considering that plants are a valuable source of abundant natural chemicals to create prophylactic and therapeutic medicines against biofilm-based infections, significant natural compounds with anti-biofilm properties were highlighted. Finally, natural anti-biofilm compounds under clinical trial evaluation were summarized to provide a background for more extensive researches and assist in opening a new window to novel treatments.

摘要

生物膜是一种复杂的微生物群落,存在于多糖和/或蛋白质基质中。生物膜可以由多种微生物产生,包括各种细菌和真菌。如今,生物膜生长细胞对抗生素的耐药性源于生物膜的结构性质,以及浮游细胞表型的改变,这已成为一个全球性问题。细菌生物膜在人类健康的各个方面都很重要,包括慢性感染、牙菌斑以及留置医疗设备(如导管)的感染。它们也是其他行业的主要问题,包括采油、饮用水分配、造纸、金属加工和食品加工。据估计,超过 80%的传染病是由生物膜引起的。本研究的目的是描述抗生素耐药性的机制,为如何管理抗生素耐药性提供更好的视角。此外,还描述了生物膜抑制的当前策略。鉴于植物是丰富天然化学物质的宝贵来源,可以用来制造针对生物膜感染的预防性和治疗性药物,因此强调了具有抗生物膜特性的重要天然化合物。最后,总结了正在进行临床试验评估的天然抗生物膜化合物,为更广泛的研究提供了背景,并有助于开辟新的治疗窗口。

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