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氟喹诺酮污染对水生环境的影响——综述

Implications of fluoroquinolone contamination for the aquatic environment-A review.

作者信息

Janecko Nicol, Pokludova Lucie, Blahova Jana, Svobodova Zdenka, Literak Ivan

机构信息

Department of Biology and Wildlife Diseases, University of Veterinary and Pharmaceutical Sciences Brno, Brno, Czech Republic.

Institute for State Control of Veterinary Biologicals and Medicines, Brno, Czech Republic.

出版信息

Environ Toxicol Chem. 2016 Nov;35(11):2647-2656. doi: 10.1002/etc.3552. Epub 2016 Aug 17.

Abstract

Until recently, the behaviors of antibiotics and their ecotoxicological impact have been overlooked in the environment. The topic is broad and encompasses a wide range of organisms including microorganisms, algae, invertebrates, and vertebrates inhabiting various aquatic ecosystems. Changing the equilibrium of any 1 component in such systems disrupts the balance of the whole system. The manufacturing and frequent use of fluoroquinolones in human and animal medicine raises great concern over the increase of antibiotic resistance prevalence in microorganisms; however, in addition, the fate of antibiotic parent and metabolite compounds entering environmental ecosystems through various pathways raises environmental impact concerns. Research has focused on the concentration of antibiotics present in environmental samples and the acute toxicity to organisms by way of animal assessment models; however, it remains unclear what role low-level chronic exposure plays in ecotoxicological effects on lifeforms in aquatic environments. The aim of the present review was to assess the levels of fluorquinolone use in animal and human medicine, to determine the pathways of dissemination, and to highlight the ecotoxicological implications in freshwater environments. Environ Toxicol Chem 2016;35:2647-2656. © 2016 SETAC.

摘要

直到最近,抗生素的行为及其生态毒理学影响在环境中一直被忽视。这个话题很广泛,涵盖了各种各样的生物,包括生活在各种水生生态系统中的微生物、藻类、无脊椎动物和脊椎动物。改变此类系统中任何一个组成部分的平衡都会破坏整个系统的平衡。氟喹诺酮类药物在人类和动物医学中的生产和频繁使用,引发了人们对微生物中抗生素耐药性普遍增加的高度关注;然而,此外,抗生素母体和代谢物化合物通过各种途径进入环境生态系统后的归宿也引发了对环境影响的担忧。研究主要集中在环境样品中抗生素的浓度以及通过动物评估模型对生物的急性毒性;然而,低水平慢性暴露在水生环境中对生物的生态毒理学影响中所起的作用仍不清楚。本综述的目的是评估氟喹诺酮类药物在动物和人类医学中的使用水平,确定其传播途径,并强调其在淡水环境中的生态毒理学影响。《环境毒理学与化学》2016年;35:2647 - 2656。©2016年环境毒理学与化学学会。

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