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Pharmaceuticals may disrupt the natural chemical information flows and species interactions in aquatic systems: ideas and perspectives on a hidden global change

机译:药品可能会破坏水生系统中的天然化学信息流和物种相互作用:关于全球隐性变化的想法和观点

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摘要

Over the last decades, anthropogenic activities have discharged into the environment many manmade chemicals. There is a rising concern regarding pharmaceutical products and their spread into the environment (e.g. Kümmerer 2008). Due to the enormous quantities consumed, anti-inflammatories, antibiotics, anti-depressives, hormones and blood lipid regulators are found in almost all aquatic environments (Kolpin et al. 2002; Loos et al. 2009). Most pharmaceuticals tend to enter the aquatic environment continuously (but see Sacher et al. 2008 for seasonal exception) in contrast to other pollutants such as herbicides and insecticides which are applied only at specific times related to the life cycle of the target organism, or in response to observed pest outbreaks (Rosi-Marshall and Royer 2012). Pharmaceuticals are designed to be biologically active at very low concentrations and end up in surface waters either unchanged, or as active metabolites/polar conjugates, mostly via municipal wastewater and agricultural discharges (Boxall et al. 2012).
机译:在过去的几十年中,人为活动已将许多人造化学物质排放到环境中。人们越来越关注药品及其向环境中的扩散(例如Kümmerer2008)。由于消耗了大量的水,几乎在所有水生环境中都发现了抗炎药,抗生素,抗抑郁药,激素和血脂调节剂(Kolpin等,2002; Loos等,2009)。与其他污染物(例如除草剂和杀虫剂)仅在与目标生物的生命周期相关的特定时间或在特定时间使用的其他污染物相比,大多数药物往往会连续进入水生环境(但季节性例外,请参阅Sacher等人2008)。对观察到的虫害暴发的应对(Rosi-Marshall和Royer 2012)。药物被设计成在非常低的浓度下具有生物活性,并最终以不变的形式或以活性代谢产物/极性结合物的形式最终进入地表水中,主要是通过市政废水和农业排放而产生的(Boxall等,2012)。

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