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微塑料生物膜形成与抗生素之间的相互作用:微塑料生物膜及其驱动机制对抗生素抗性基因的影响。

Interaction between microplastic biofilm formation and antibiotics: Effect of microplastic biofilm and its driving mechanisms on antibiotic resistance gene.

机构信息

MOE Key Laboratory of Pollution Processes and Environmental Criteria/Tianjin Engineering Center of Environmental Diagnosis and Contamination Remediation, College of Environmental Science and Engineering, Nankai University, Tianjin 300350, China.

Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management, Institute of Eco-environmental and Soil Sciences, National-Regional Joint Engineering Research Center for Soil Pollution Control and Remediation in South China, Guangdong Academy of Sciences, Guangzhou 510650, People's Republic of China.

出版信息

J Hazard Mater. 2023 Oct 5;459:132099. doi: 10.1016/j.jhazmat.2023.132099. Epub 2023 Jul 21.

Abstract

As two pollutants with similar transport pathways, microplastics (MPs) and antibiotics (ATs) inevitably co-exist in water environments, and their interaction has become a topic of intense research interest for scholars over the past few years. This paper comprehensively and systematically reviews the current interaction between MPs and ATs, in particular, the role played by biofilm developed MPs (microplastic biofilm). A summary of the formation process of microplastic biofilm and its unique microbial community structure is presented in the paper. The formation of microplastic biofilm can enhance the adsorption mechanisms of ATs on primary MPs. Moreover, microplastic biofilm system is a diverse and vast reservoir of genetic material, and this paper reviews the mechanisms by which microplastics with biofilm drive the production of antibiotic resistance genes (ARGs) and the processes that selectively enrich for more ARGs. Meanwhile, the enrichment of ARGs may lead to the development of microbial resistance and the gradual loss of the antimicrobial effect of ATs. The transfer pathways of ARGs affected by microplastic biofilm are outlined, and ARGs dependent transfer of antibiotic resistance bacteria (ARB) is mainly through horizontal gene transfer (HGT). Furthermore, the ecological implications of the interaction between microplastic biofilm and ATs and perspectives for future research are reviewed. This review contributes to a new insight into the aquatic ecological environmental risks and the fate of contaminants (MPs, ATs), and is of great significance for controlling the combined pollution of these two pollutants.

摘要

作为具有相似传输途径的两种污染物,微塑料(MPs)和抗生素(ATs)不可避免地共存于水环境中,它们的相互作用已成为学者们近年来研究的热点话题。本文全面系统地综述了 MPs 和 ATs 之间的相互作用,特别是生物膜形成的 MPs(微塑料生物膜)的作用。文中总结了微塑料生物膜的形成过程及其独特的微生物群落结构。微塑料生物膜的形成可以增强 ATs 对原始 MPs 的吸附机制。此外,微塑料生物膜系统是遗传物质的多样化和广阔储备库,本文综述了带生物膜的微塑料驱动抗生素耐药基因(ARGs)产生的机制以及选择性富集更多 ARGs 的过程。同时,ARGs 的富集可能导致微生物抗性的发展和 ATs 抗菌作用的逐渐丧失。概述了受微塑料生物膜影响的 ARGs 转移途径,ARGs 依赖的抗生素耐药菌(ARB)转移主要通过水平基因转移(HGT)。此外,还综述了微塑料生物膜与 ATs 相互作用的生态影响和未来研究的展望。本文的综述为了解水生生态环境风险和污染物(MPs、ATs)的命运提供了新的视角,对于控制这两种污染物的联合污染具有重要意义。

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