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氟西汀的水生生态毒理学

Aquatic ecotoxicology of fluoxetine.

作者信息

Brooks Bryan W, Foran Christy M, Richards Sean M, Weston James, Turner Philip K, Stanley Jacob K, Solomon Keith R, Slattery Marc, La Point Thomas W

机构信息

Institute of Applied Sciences, University of North Texas, Denton, TX, USA.

出版信息

Toxicol Lett. 2003 May 15;142(3):169-83. doi: 10.1016/s0378-4274(03)00066-3.

Abstract

Recent studies indicate that the pharmaceutical fluoxetine, a selective serotonin reuptake inhibitor, is discharged in municipal wastewater treatment plant effluents to surface waters. Few data on environmental fluoxetine exposure and hazard to aquatic life are currently available in the literature. Here, we summarize information on fluoxetine detection in surface waters and review research on single-species toxicity test, Japanese medaka (Oryzias latipes) reproduction and endocrine function, and freshwater mesocosm community responses to fluoxetine exposure. Based on results from our studies and calculations of expected introduction concentrations, we also provide a preliminary aquatic risk characterization for fluoxetine. If standard toxicity test responses and a hazard quotient risk characterization approach are solely considered, little risk of fluoxetine exposure may be expected to aquatic life. However, our findings indicate that: (1) the magnitude, duration and frequency of fluoxetine exposure in aquatic systems requires further investigation; (2) mechanistic toxicity of fluoxetine in non-target biota, including behavioral responses, are clearly not understood; and (3) an assessment of environmentally relevant fluoxetine concentrations is needed to characterize ecological community responses.

摘要

近期研究表明,药物氟西汀(一种选择性5-羟色胺再摄取抑制剂)会在城市污水处理厂排放的废水中进入地表水。目前文献中关于环境中氟西汀暴露及对水生生物危害的数据较少。在此,我们总结了地表水中氟西汀检测的相关信息,并回顾了关于单物种毒性试验、日本青鳉(Oryzias latipes)繁殖与内分泌功能,以及淡水微宇宙群落对氟西汀暴露的反应的研究。基于我们的研究结果和预期引入浓度的计算,我们还对氟西汀进行了初步的水生风险特征描述。如果仅考虑标准毒性试验反应和危险商数风险特征描述方法,预计氟西汀暴露对水生生物的风险较小。然而,我们的研究结果表明:(1)水生系统中氟西汀暴露的程度、持续时间和频率需要进一步研究;(2)氟西汀在非靶标生物群中的作用机制毒性,包括行为反应,显然尚未明确;(3)需要评估与环境相关的氟西汀浓度,以描述生态群落的反应。

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