流出
微生物学
嗜水气单胞菌
生物
多重耐药
林可酰胺
抗生素
抗生素耐药性
哌拉西林
抗药性
亚胺培南
细菌
铜绿假单胞菌
遗传学
作者
Chung-Cheng Lo,Wan-Yu Liao,Miao-Chen Chou,Yongbo Wu,Tzu-Hui Yeh,Horng‐Ren Lo
出处
期刊:Microbial Drug Resistance
[Mary Ann Liebert]
日期:2022-02-01
卷期号:28 (2): 153-160
被引量:7
标识
DOI:10.1089/mdr.2021.0084
摘要
Aeromonas hydrophila is a Gram-negative bacterium that is a critical causative agent of infections in fish and is occasionally responsible for human infections following contact with contaminated water or food. Currently, the extensive use of antibiotics in clinical practice has led to increased number of isolates of multidrug-resistant (MDR) Aeromonas and has posed a serious public health challenge. The efflux pump system is a critical mechanism of antibiotic resistance in most Gram-negative bacteria. However, the role of resistance-nodulation-division (RND)-type efflux pumps in MDR A. hydrophila is not fully understood. We aimed to evaluate the contribution of the RND efflux pump system to MDR A. hydrophila clinical isolates. PCR results indicated a considerable variation in the presence of RND efflux pump genes in clinical isolates compared to that of the environmental reference strain ATCC7966T. Compared to non-MDR clinical isolates, the expression levels of three putative RND efflux pump genes, AHA0021, AHA1320, and AheB, were significantly elevated in MDR strains. The minimal inhibitory concentrations of piperacillin/tazobactam, imipenem, erythromycin, and polymyxin B were significantly reduced by phenylalanine-arginine β-naphthylamide (PAβN), further supporting the contribution of the RND efflux system in MDR A. hydrophila. We provided evidence supporting the contribution of the RND efflux system to multidrug resistance in A. hydrophila clinical isolates. Further studies are warranted to elucidate the detailed mechanisms that confer intrinsic resistance to antimicrobials in A. hydrophila.
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