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Quantification and Multidrug Resistance Profiles of Vancomycin-Resistant Enterococci Isolated from Two Wastewater Treatment Plants in the Same Municipality

机译:从同一城市的两个污水处理厂分离出的耐万古霉素的肠球菌的定量分析和多药耐药性

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摘要

Wastewater treatment plants (WWTPs) are points of control for the environmental dissemination of antimicrobial resistant bacteria. Vancomycin-resistant enterococci (VRE) were used as indicators of antimicrobial resistance (AMR) in two WWTPs (biologically aerated filter (BAF) and conventional activated sludge (CAS)) in the same municipality. The removal and abundance of enterococci and VRE as well as the species and antimicrobial resistance profiles of VRE were assessed. Enterococci and VRE from the primary and final effluents were enumerated. Results were assessed from an ecological context. VRE was not selected for by either WWTP but the BAF system outperformed the CAS system for the removal of enterococci/VRE. ( = 151), ( = 94) and / ( = 59) were the dominant VRE species isolated. A decrease in levofloxacin resistance in enterococci was observed in the BAF WWTP. An increase in nitrofurantoin resistant ( < 0.001) and a decrease in quinupristin/dalfopristin ( = 0.003) and streptomycin ( = 0.022) resistant enterococci were observed in the CAS WWTP, corresponding to a shift of VRE from to . Wastewater treatment processes can be managed to limit the dissemination of antimicrobial resistance determinants into the surrounding environment.
机译:废水处理厂(WWTP)是控制环境中抗菌素耐药菌传播的控制点。在同一城市的两个污水处理厂(生物曝气滤池(BAF)和常规活性污泥(CAS))中,使用耐万古霉素的肠球菌(VRE)作为抗微生物剂(AMR)的指标。评估了肠球菌和VRE的去除和丰度,以及VRE的种类和抗菌素耐药性。列举了主要废水和最终废水的肠球菌和VRE。从生态环境评估结果。 WWTP均未选择VRE,但BAF系统在去除肠球菌/ VRE方面优于CAS系统。 (= 151),(= 94)和/(= 59)是分离出的主要VRE物质。在BAF污水处理厂观察到肠球菌中的左氧氟沙星耐药性降低。在CAS WWTP中观察到对呋喃妥因的耐药性升高(<0.001),对奎奴普丁/达福普汀的耐药性(= 0.003)和对链霉素的耐药性(= 0.022)下降,这对应于VRE从转变为。可以对废水处理过程进行管理,以限制将抗菌素耐药性决定因素散布到周围环境中。

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