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对抗生素耐药性的新认识:重金属可抑制从废水中分离出的细菌的抗生素耐药性。

Insights to antimicrobial resistance: heavy metals can inhibit antibiotic resistance in bacteria isolated from wastewater.

机构信息

Functional Genomics Laboratory, Department of Biosciences, COMSATS University Islamabad, Islamabad, 45550, Pakistan.

出版信息

Environ Monit Assess. 2022 Mar 7;194(4):252. doi: 10.1007/s10661-022-09917-6.

Abstract

The alarming upsurge in the co-existence of heavy metal and antibiotic resistance may have a devastating impact on humans, animals, and the environment. Four metal-resistant bacteria were isolated from hospital effluents and industrial drain. Heavy metal resistance and antimicrobial resistance were examined in the isolates followed by identification through 16S rRNA gene sequencing. Delftia tsuruhatensis strain FK-01 and Carnobacterium inhibens strain FK-02 tolerated arsenic with maximal tolerated concentration (MTC) of 30 mM and 10 mM, respectively. Staphylococcus hominis strain FK-04 tolerated copper up to 4 mM and lead-resistant Raoultella ornithinolytica strain FK-05 exhibited tolerance to 1 mM lead. The growth kinetics of bacteria were monitored in the presence of metals and the following antibiotics, tetracycline, chloramphenicol, and kanamycin. The presence of arsenate significantly enhanced tetracycline resistance in C. inhibens. Heavy metal-induced antibiotic resistance was also observed in S. hominis and R. ornithinolytica, against chloramphenicol and tetracycline respectively. D. tsuruhatensis showed resistance to kanamycin but when grown in the presence of arsenic and kanamycin, bacteria lost resistance to the antibiotic. Therefore, it is suggested that the novel arsenate-resistant strain Delftia tsuruhatensis FK-01 has a unique ability to inhibit antimicrobial resistance that can be harnessed in bioremediation.

摘要

重金属和抗生素耐药性共存的惊人增长可能对人类、动物和环境造成毁灭性影响。从医院废水和工业污水中分离出 4 株耐金属细菌。对分离株进行重金属抗性和抗菌药物抗性检测,然后通过 16S rRNA 基因测序进行鉴定。德氏栖热菌 FK-01 株和抑制食烷菌 FK-02 株可耐受最大耐受浓度(MTC)分别为 30mM 和 10mM 的砷。人葡萄球菌 FK-04 株可耐受 4mM 的铜,而耐铅的罗伊氏不动杆菌 FK-05 株可耐受 1mM 的铅。在存在金属和以下抗生素(四环素、氯霉素和卡那霉素)的情况下监测细菌的生长动力学。砷酸盐的存在显著增强了抑制食烷菌的四环素耐药性。重金属诱导的抗生素耐药性也在人葡萄球菌和罗伊氏不动杆菌中观察到,分别针对氯霉素和四环素。德氏栖热菌对卡那霉素表现出耐药性,但当在砷和卡那霉素存在的情况下生长时,细菌对该抗生素失去了耐药性。因此,建议新型砷酸盐抗性菌株德氏栖热菌 FK-01 具有独特的抑制抗菌药物耐药性的能力,可以在生物修复中加以利用。

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