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Occurrence of Multidrug-Resistant and Toxic-Metal Tolerant Enterococci in Fresh Feces from Urban Pigeons in Brazil

机译:巴西城市鸽子新鲜粪便中多重耐药和有毒金属耐受性肠球菌的发生

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摘要

Enterococcus are emerging as important putative pathogens resistant to chemicals that are widely released into the environment, and urban pigeons might act as a natural reservoir contributing to the spread of resistant strains. This study aimed to evaluate the occurrence of Enterococcus in pigeon feces and their antimicrobial and toxic metal susceptibility. Bacteria were isolated and identified from 150 fresh feces by phenotypic and genetic techniques. Antimicrobial and toxic metal susceptibility was determined by the agar dilution method, and the multiple antibiotic resistance index (MAR) was calculated. Out of 120 isolates, no resistance was observed against penicillin and vancomycin, but was observed against gentamicin (55.8%), chloramphenicol (21.7%), tetracycline (13.3%), ciprofloxacin (8.4%) and rifampin (2.5%). 18.3% presented a MAR index >= 0.2, ranging between 0.14 to 0.57, indicating resistance to more than one antimicrobial. All samples were tolerant to >1024 mu g mL(-1) zinc and chromium. Minimal inhibitory concentration (MIC) of 1,024 mu g mL(-1) was observed for copper (100%) and nickel (71.4%). Mercury inhibited 88.4% at 32 mu g mL(-1) and the MIC for cadmium ranged from 0.125-128 mu g mL(-1). Since pigeons were found to harbor drug-resistant Enterococcus, our data support that their presence in the urban environment may contribute to the spread of resistance, with an impact on public health.
机译:肠球菌正成为对广泛释放到环境中的化学物质具有抗性的重要推定病原体,城市鸽子可能充当促进抗性菌株传播的天然水库。这项研究旨在评估鸽子粪便中肠球菌的发生及其对微生物和有毒金属的敏感性。通过表型和遗传技术从150个新鲜粪便中分离并鉴定细菌。通过琼脂稀释法确定抗菌和毒性金属敏感性,并计算多重抗生素抗性指数(MAR)。在120株分离株中,未观察到对青霉素和万古霉素的耐药性,但对庆大霉素(55.8%),氯霉素(21.7%),四环素(13.3%),环丙沙星(8.4%)和利福平(2.5%)没有抵抗力。 18.3%的受试者的MAR指数> = 0.2,范围在0.14至0.57之间,表明对一种以上的抗生素有抗药性。所有样品均耐受> 1024μg mL(-1)的锌和铬。铜(100%)和镍(71.4%)的最小抑菌浓度(MIC)为1,024μg mL(-1)。汞在32μg mL(-1)时抑制了88.4%,镉的MIC范围为0.125-128μgmL(-1)。由于发现鸽子带有抗药性肠球菌,因此我们的数据支持它们在城市环境中的存在可能会导致抗药性的传播,从而影响公共卫生。

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