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暴露于抗生素浓度下的沙门氏菌生物膜会迅速选择出具有附带权衡的耐药性。

Exposure of Salmonella biofilms to antibiotic concentrations rapidly selects resistance with collateral tradeoffs.

机构信息

Quadram Institute Bioscience, Norwich Research Park, Norwich, Norfolk, NR4 7UQ, UK.

Medical School, University of East Anglia, Norwich Research Park, Norwich, Norfolk, NR4 7UA, UK.

出版信息

NPJ Biofilms Microbiomes. 2021 Jan 11;7(1):3. doi: 10.1038/s41522-020-00178-0.

Abstract

Most bacteria in nature exist in biofilms, which are inherently tolerant to antibiotics. There is currently very limited understanding of how biofilms evolve in response to sub-lethal concentrations of antimicrobials. In this study, we use a biofilm evolution model to study the effects of sub-inhibitory concentrations of three antibiotics on Salmonella Typhimurium biofilms. We show that biofilms rapidly evolve resistance to each antibiotic they are exposed to, demonstrating a strong selective pressure on biofilms from low antibiotic concentrations. While all antibiotics tested select for clinical resistance, there is no common mechanism. Adaptation to antimicrobials, however, has a marked cost for other clinically important phenotypes, including biofilm formation and virulence. Cefotaxime selects mutants with the greatest deficit in biofilm formation followed by azithromycin and then ciprofloxacin. Understanding the impacts of exposure of biofilms to antibiotics will help understand evolutionary trajectories and may help guide how best to use antibiotics in a biofilm context. Experimental evolution in combination with whole-genome sequencing is a powerful tool for the prediction of evolution trajectories associated with antibiotic resistance in biofilms.

摘要

自然界中的大多数细菌都存在于生物膜中,生物膜对抗生素具有固有耐受性。目前,人们对生物膜如何对亚致死浓度的抗生素产生反应知之甚少。在这项研究中,我们使用生物膜进化模型来研究三种抗生素的亚抑制浓度对鼠伤寒沙门氏菌生物膜的影响。我们表明,生物膜会迅速对其接触的每种抗生素产生抗药性,这表明低浓度抗生素对生物膜具有很强的选择压力。虽然所有测试的抗生素都选择了临床耐药性,但没有共同的机制。然而,抗生素的适应对其他临床重要表型(包括生物膜形成和毒力)有明显的代价。头孢噻肟选择生物膜形成缺陷最大的突变体,其次是阿奇霉素,然后是环丙沙星。了解生物膜暴露于抗生素的影响将有助于了解进化轨迹,并可能有助于指导如何在生物膜环境中最好地使用抗生素。实验进化与全基因组测序相结合是预测与生物膜中抗生素耐药性相关的进化轨迹的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/386b/7801651/44211e500237/41522_2020_178_Fig1_HTML.jpg

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