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病原菌生物膜的形成:应用模型评估治疗干预的潜在靶点

Biofilm Formation by Pathogenic Bacteria: Applying a Model to Appraise Potential Targets for Therapeutic Intervention.

作者信息

Sedarat Zahra, Taylor-Robinson Andrew W

机构信息

Cellular & Molecular Research Centre, Shahrekord University of Medical Sciences, Shahrekord, Iran.

College of Health Sciences, Vin University, Gia Lam District, Hanoi, Vietnam.

出版信息

Pathogens. 2022 Mar 23;11(4):388. doi: 10.3390/pathogens11040388.

Abstract

Carried in the nasal passages by up to 30% of humans, is recognized to be a successful opportunistic pathogen. It is a frequent cause of infections of the upper respiratory tract, including sinusitis, and of the skin, typically abscesses, as well as of food poisoning and medical device contamination. The antimicrobial resistance of such, often chronic, health conditions is underpinned by the unique structure of bacterial biofilm, which is the focus of increasing research to try to overcome this serious public health challenge. Due to the protective barrier of an exopolysaccharide matrix, bacteria that are embedded within biofilm are highly resistant both to an infected individual's immune response and to any treating antibiotics. An in-depth appraisal of the stepwise progression of biofilm formation by , used as a model infection for all cases of bacterial antibiotic resistance, has enhanced understanding of this complicated microscopic structure and served to highlight possible intervention targets for both patient cure and community infection control. While antibiotic therapy offers a practical means of treatment and prevention, the most favorable results are achieved in combination with other methods. This review provides an overview of biofilm development, outlines the current range of anti-biofilm agents that are used against each stage and summarizes their relative merits.

摘要

高达30%的人鼻腔中携带[病原体名称未给出],它被认为是一种成功的机会致病菌。它是上呼吸道感染(包括鼻窦炎)、皮肤感染(通常是脓肿)、食物中毒和医疗器械污染的常见病因。这类往往为慢性的健康状况的抗菌耐药性是由细菌生物膜的独特结构所支撑的,而细菌生物膜正成为越来越多研究的焦点,旨在努力克服这一严峻的公共卫生挑战。由于胞外多糖基质的保护屏障,嵌入生物膜内的细菌对受感染个体的免疫反应和任何治疗用抗生素都具有高度抗性。以[病原体名称未给出]作为所有细菌抗生素耐药病例的模型感染,对其生物膜形成的逐步过程进行深入评估,增进了对这种复杂微观结构的理解,并有助于突出针对患者治愈和社区感染控制的可能干预靶点。虽然抗生素治疗提供了一种实用的治疗和预防手段,但与其他方法联合使用时能取得最理想的效果。本综述概述了[病原体名称未给出]生物膜的发展,概述了目前针对生物膜各个阶段使用的抗生物膜剂的范围,并总结了它们的相对优点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4d1/9027693/c17e609e1769/pathogens-11-00388-g001.jpg

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