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庆大霉素联合低渗休克可快速根除水产养殖细菌及…… (原文结尾不完整)

Gentamicin Combined With Hypoionic Shock Rapidly Eradicates Aquaculture Bacteria and .

作者信息

Gao Yuanyuan, Chen Zhongyu, Yao Wei, Li Daliang, Fu Xinmiao

机构信息

Provincial University Key Laboratory of Cellular Stress Response and Metabolic Regulation, Key Laboratory of Optoelectronic Science and Technology for Medicine of Ministry of Education, College of Life Sciences, Fujian Normal University, Fuzhou, China.

Engineering Research Center of Industrial Microbiology of Ministry of Education, Fujian Normal University, Fuzhou, China.

出版信息

Front Microbiol. 2021 Apr 6;12:641846. doi: 10.3389/fmicb.2021.641846. eCollection 2021.

Abstract

Bacterial pathogens are a major cause of infectious diseases in aquatic animals. The abuse of antibiotics in the aquatic industry has led to the proliferation of antibiotic resistance. It is therefore essential to develop more effective and safer strategies to increase the efficacy and extend the life span of the antibiotics used in aquaculture. In this study, we show that six aquaculture bacterial pathogens (i.e., , , , , , and ) in the stationary phase can be rapidly killed after immersion in gentamicin- or neomycin-containing, ion-free solutions for a few minutes. Such hypoionic shock treatment enhances the bacterial uptake of gentamicin in an ATP-dependent manner. Importantly, we demonstrate, as a proof of concept, that gentamicin under hypoionic shock conditions can effectively kill in a skin infection model of zebrafish (), completely curing the infected fish. Given that pathogenic bacteria generally adhere to the skin surface and gills of aquatic animals, our strategy is of potential significance for bacterial infection control, especially for small-scale economic fish farming and ornamental fish farming. Further, the combined treatment can be completed within 5 min with a relatively small volume of solution, thus minimizing the amount of residual antibiotics in both animals and the environment.

摘要

细菌性病原体是水生动物传染病的主要病因。水产养殖业中抗生素的滥用导致了抗生素耐药性的扩散。因此,开发更有效、更安全的策略以提高水产养殖中所用抗生素的疗效并延长其使用寿命至关重要。在本研究中,我们表明,处于稳定期的六种水产养殖细菌病原体(即 、 、 、 、 和 )在浸入含庆大霉素或新霉素的无离子溶液中几分钟后可被迅速杀死。这种低渗休克处理以ATP依赖的方式增强了细菌对庆大霉素的摄取。重要的是,作为概念验证,我们证明在低渗休克条件下庆大霉素可在斑马鱼( )的皮肤感染模型中有效杀死 ,完全治愈受感染的鱼。鉴于病原菌通常附着在水生动物的皮肤表面和鳃上,我们的策略对于控制细菌感染具有潜在意义,特别是对于小规模经济鱼类养殖和观赏鱼养殖。此外,联合处理可在5分钟内用相对少量的溶液完成,从而使动物和环境中的残留抗生素量降至最低。

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