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超越风险:细菌生物膜及其调控方法

Beyond Risk: Bacterial Biofilms and Their Regulating Approaches.

作者信息

Muhammad Musa Hassan, Idris Aisha Lawan, Fan Xiao, Guo Yachong, Yu Yiyan, Jin Xu, Qiu Junzhi, Guan Xiong, Huang Tianpei

机构信息

State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops & Key Laboratory of Biopesticide and Chemical Biology of Ministry of Education, College of Life Sciences & College of Plant Protection & International College, Fujian Agriculture and Forestry University, Fuzhou, China.

出版信息

Front Microbiol. 2020 May 21;11:928. doi: 10.3389/fmicb.2020.00928. eCollection 2020.

Abstract

Bacterial biofilms are complex surface attached communities of bacteria held together by self-produced polymer matrixs mainly composed of polysaccharides, secreted proteins, and extracellular DNAs. Bacterial biofilm formation is a complex process and can be described in five main phases: (i) reversible attachment phase, where bacteria non-specifically attach to surfaces; (ii) irreversible attachment phase, which involves interaction between bacterial cells and a surface using bacterial adhesins such as fimbriae and lipopolysaccharide (LPS); (iii) production of extracellular polymeric substances (EPS) by the resident bacterial cells; (iv) biofilm maturation phase, in which bacterial cells synthesize and release signaling molecules to sense the presence of each other, conducing to the formation of microcolony and maturation of biofilms; and (v) dispersal/detachment phase, where the bacterial cells depart biofilms and comeback to independent planktonic lifestyle. Biofilm formation is detrimental in healthcare, drinking water distribution systems, food, and marine industries, etc. As a result, current studies have been focused toward control and prevention of biofilms. In an effort to get rid of harmful biofilms, various techniques and approaches have been employed that interfere with bacterial attachment, bacterial communication systems (quorum sensing, QS), and biofilm matrixs. Biofilms, however, also offer beneficial roles in a variety of fields including applications in plant protection, bioremediation, wastewater treatment, and corrosion inhibition amongst others. Development of beneficial biofilms can be promoted through manipulation of adhesion surfaces, QS and environmental conditions. This review describes the events involved in bacterial biofilm formation, lists the negative and positive aspects associated with bacterial biofilms, elaborates the main strategies currently used to regulate establishment of harmful bacterial biofilms as well as certain strategies employed to encourage formation of beneficial bacterial biofilms, and highlights the future perspectives of bacterial biofilms.

摘要

细菌生物膜是由细菌自身产生的聚合物基质维系在一起的、附着于表面的复杂细菌群落,这些聚合物基质主要由多糖、分泌蛋白和细胞外DNA组成。细菌生物膜的形成是一个复杂的过程,可分为五个主要阶段:(i)可逆附着阶段,细菌非特异性地附着于表面;(ii)不可逆附着阶段,此阶段涉及细菌细胞与表面之间通过菌毛和脂多糖(LPS)等细菌黏附素进行相互作用;(iii)驻留细菌细胞产生胞外聚合物(EPS);(iv)生物膜成熟阶段,在此阶段细菌细胞合成并释放信号分子以感知彼此的存在,从而有助于微菌落的形成和生物膜的成熟;以及(v)扩散/脱离阶段,此时细菌细胞离开生物膜并回归独立的浮游生活方式。生物膜的形成在医疗保健、饮用水分配系统、食品和海洋工业等领域是有害的。因此,目前的研究集中在生物膜的控制和预防上。为了去除有害生物膜,人们采用了各种技术和方法来干扰细菌附着、细菌通讯系统(群体感应,QS)和生物膜基质。然而,生物膜在包括植物保护、生物修复、废水处理和腐蚀抑制等在内的各种领域也发挥着有益作用。通过操纵黏附表面、群体感应和环境条件,可以促进有益生物膜的形成。本综述描述了细菌生物膜形成过程中涉及的事件,列出了与细菌生物膜相关的消极和积极方面,阐述了目前用于调节有害细菌生物膜形成的主要策略以及用于促进有益细菌生物膜形成的某些策略,并突出了细菌生物膜的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57e0/7253578/4bbe033ec871/fmicb-11-00928-g001.jpg

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