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聚六亚甲基双胍(PHMB)作用于生物膜后对庆大霉素耐药变体的选择

Selection of a Gentamicin-Resistant Variant Following Polyhexamethylene Biguanide (PHMB) Exposure in Biofilms.

作者信息

Cuzin Clémence, Houée Paméla, Lucas Pierrick, Blanchard Yannick, Soumet Christophe, Bridier Arnaud

机构信息

Antibiotics, Biocides, Residues and Resistance Unit, Fougères Laboratory, French Agency for Food, Environmental and Occupational Health & Safety (ANSES), 35300 Fougères, France.

Viral Genetics and Biosecurity Unit, Ploufragan-Plouzané-Niort Laboratory, French Agency for Food, Environmental and Occupational Health & Safety (ANSES), 22440 Ploufragan, France.

出版信息

Antibiotics (Basel). 2021 May 10;10(5):553. doi: 10.3390/antibiotics10050553.

Abstract

Antibiotic resistance is one of the most important issues facing modern medicine. Some biocides have demonstrated the potential of selecting resistance to antibiotics in bacteria, but data are still very scarce and it is important to better identify the molecules concerned and the underlying mechanisms. This study aimed to assess the potential of polyhexamethylene biguanide (PHMB), a widely used biocide in a variety of sectors, to select antibiotic resistance in grown in biofilms. Biofilms were grown on inox coupons and then exposed daily to sublethal concentrations of PHMB over 10 days. Antibiotic-resistant variants were then isolated and characterized phenotypically and genotypically to identify the mechanisms of resistance. Repeated exposure to PHMB led to the selection of an variant (Ec04m1) with stable resistance to gentamycin (8-fold increase in minimum inhibitory concentration (MIC) compared to the parental strain. This was also associated with a significant decrease in the growth rate in the variant. Sequencing and comparison of the parental strain and Ec04m1 whole genomes revealed a nonsense mutation in the gene in the variant. This gene encodes the pyruvate dehydrogenase E1 component of the pyruvate dehydrogenase (PDH) complex, which catalyzes the conversion of pyruvate to acetyl-CoA and CO. A growth experiment in the presence of acetate confirmed the role of this mutation in a decreased susceptibility to both PHMB and gentamicin (GEN) in the variant. This work highlights the potential of PHMB to select resistance to antibiotics in bacteria, and that enzymes of central metabolic pathways should be considered as a potential target in adaptation strategies, leading to cross-resistance toward biocides and antibiotics in bacteria.

摘要

抗生素耐药性是现代医学面临的最重要问题之一。一些杀菌剂已显示出在细菌中选择抗生素耐药性的潜力,但相关数据仍然非常稀少,更好地识别相关分子及其潜在机制很重要。本研究旨在评估聚六亚甲基双胍(PHMB)(一种在各个领域广泛使用的杀菌剂)在生物膜中生长的细菌中选择抗生素耐药性的潜力。生物膜在不锈钢试片上生长,然后在10天内每天暴露于亚致死浓度的PHMB。然后分离出抗生素抗性变体,并对其进行表型和基因型特征分析,以确定抗性机制。反复暴露于PHMB导致选择出一种对庆大霉素具有稳定抗性的变体(Ec04m1)(与亲本菌株相比,最低抑菌浓度(MIC)增加了8倍)。这也与变体的生长速率显著降低有关。对亲本菌株和Ec04m1全基因组进行测序和比较,发现变体中的基因存在无义突变。该基因编码丙酮酸脱氢酶(PDH)复合体的丙酮酸脱氢酶E1亚基,催化丙酮酸转化为乙酰辅酶A和CO。在乙酸存在下的生长实验证实了该突变在变体对PHMB和庆大霉素(GEN)敏感性降低中的作用。这项工作突出了PHMB在细菌中选择抗生素耐药性的潜力,并且中央代谢途径的酶应被视为适应策略中的潜在靶点,从而导致细菌对杀菌剂和抗生素产生交叉耐药性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/669a/8151986/c1949ce1ff29/antibiotics-10-00553-g001.jpg

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