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发育和全生命周期暴露于胍基尿素和胍基尿素-二甲双胍混合物会对日本青鳉(Oryzias latipes)产生不良影响。

Developmental and Full-Life Cycle Exposures to Guanylurea and Guanylurea-Metformin Mixtures Results in Adverse Effects on Japanese Medaka (Oryzias latipes).

机构信息

Faculty of Science, University of Ontario Institute of Technology, Oshawa, Ontario, Canada.

Advanced Environmental Research Institute & Department of Biological Sciences, University of North Texas, Denton, Texas, USA.

出版信息

Environ Toxicol Chem. 2019 May;38(5):1023-1028. doi: 10.1002/etc.4403. Epub 2019 Apr 5.

DOI:10.1002/etc.4403
PMID:30835871
Abstract

Metformin is currently thought to be the highest drug by weight released into the aquatic environment, as a direct result of its widespread use in the treatment of a number of human health disorders. The removal of metformin from wastewaters is directly related to the formation of guanylurea (metformin's only known persistent degradation product), which is generally present at higher concentrations in surface waters than the parent compound. With metformin use rising steadily, it is important to characterize the effects of guanylurea on nontarget aquatic organisms. We recently demonstrated the effects of developmental exposure to environmentally relevant concentrations of metformin on the growth of early life stage (ELS) medaka as well as effects on the body weight of adult male fish following full-life cycle exposures. In the present study, we describe similar effects of guanylurea exposure on these endpoints and life stages. Guanylurea led to effects on growth in a 28-d ELS assessment that were similar to those of metformin; however, these effects occurred at concentrations in the ng/L range compared with the μg/L range for metformin. A possible sex-dependent association with body weight changes was also observed in adults following a 165-d full-life cycle exposure to guanylurea alone or in a mixture with metformin. To our knowledge, the present is the first study to report the toxicity of guanylurea to nontarget aquatic organisms. Environ Toxicol Chem 2019;00:1-6. © 2019 SETAC.

摘要

二甲双胍目前被认为是在水生环境中释放的药物中重量最高的药物,这直接是由于其在治疗多种人类健康疾病中的广泛应用。从废水中去除二甲双胍与胍脲(二甲双胍唯一已知的持久降解产物)的形成直接相关,胍脲通常在地表水中的浓度高于母体化合物。随着二甲双胍的使用稳步上升,表征胍脲对非目标水生生物的影响非常重要。我们最近证明了环境相关浓度的二甲双胍对早期生命阶段(ELS)的生长的发育暴露的影响,以及对全生命周期暴露后成年雄性鱼类体重的影响。在本研究中,我们描述了胍脲暴露对这些终点和生命阶段的类似影响。胍脲在 28 天 ELS 评估中导致了与二甲双胍相似的生长效应;然而,这些效应发生在纳克/升范围内,而二甲双胍的浓度范围为微克/升。在单独暴露于胍脲或与二甲双胍混合的 165 天全生命周期暴露后,还观察到成年鱼体重变化的可能与性别相关的关联。据我们所知,本研究首次报道了胍脲对非目标水生生物的毒性。环境毒理化学 2019;00:1-6。©2019 SETAC。

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