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Antibiotic resistance of E. coli in sewage and sludge

机译:大肠杆菌对污水和污泥的抗药性

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The aim of the study is the evaluation of resistance patterns of E. coli in wastewater treatment plants without an evaluation of basic antibiotic resistance mechanisms. Investigations have been done in sewage, sludge and receiving waters from three different sewage treatment plants in southern Austria. A total of 767 E. coli isolates were tested regarding their resistance to 24 different antibiotics. The highest resistance rates were found in E. coli strains of a sewage treatment plant which treats not only municipal sewage but also sewage from a hospital. Among the antimicrobial agents tested, the highest resistance rates in the penicillin group were found for Ampicillin (AM) (up to 18%) and Piperacillin (PIP) (up to 12%); in the cephalosporin group for Cefalothin (CF) (up to 35%) and Cefuroxime-Axetil (CXMAX) (up to 11%); in the group of quinolones for Nalidixic acid (NA) (up to 15%); and for Trimethoprime/Sulfamethoxazole (SXT) (up to 13%) and for Tetracycline (TE) (57%). Median values for E. coli in the inflow (crude sewage) of the plants were between 2.0 x 10~4 and 6.1 x 10~4 CFU/ml (Coli ID-agar, BioMerieux 42017) but showed a 200-fold reduction in all three plants in the effluent. Nevertheless, more than 10~2 CFU E. coli/ml reached the receiving water and thus sewage treatment processes contribute to the dissemination of resistant bacteria in the environment.
机译:该研究的目的是评估废水处理厂中大肠杆菌的耐药模式,而不评估基本的抗生素耐药机制。已经对奥地利南部三个不同的污水处理厂的污水,污泥和接收水进行了调查。测试了总共767种大肠杆菌分离株对24种不同抗生素的抗性。在污水处理厂的大肠杆菌菌株中发现最高的耐药率,该厂不仅处理市政污水,还处理医院污水。在所测试的抗菌剂中,青霉素组对氨苄西林(AM)(最高18%)和哌拉西林(PIP)(最高12%)的耐药率最高;在头孢菌素组中,头孢氨苄(CF)(最高35%)和头孢呋辛-阿昔替尼(CXMAX)(最高11%);喹诺酮类药物中萘啶酸(NA)的含量(最高15%);以及甲氧苄啶/磺胺甲恶唑(SXT)(最高13%)和四环素(TE)(57%)。植物的流入(粗污水)中的大肠杆菌中值介于2.0 x 10〜4和6.1 x 10〜4 CFU / ml之间(Coli ID-agar,BioMerieux 42017),但在所有情况下均降低了200倍废水中的三株植物。然而,超过10〜2 CFU E. coli / ml到达接收水,因此污水处理过程有助于在环境中传播抗性细菌。

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