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A diverse suite of pharmaceuticals contaminates stream and riparian food webs

机译:各种各样的药物污染河流和河岸食物网

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A multitude of biologically active pharmaceuticals contaminate surface waters globally, yet their presence in aquatic food webs remain largely unknown. Here, we show that over 60 pharmaceutical compounds can be detected in aquatic invertebrates and riparian spiders in six streams near Melbourne, Australia. Similar concentrations in aquatic invertebrate larvae and riparian predators suggest direct trophic transfer via emerging adult insects to riparian predators that consume them. As representative vertebrate predators feeding on aquatic invertebrates, platypus and brown trout could consume some drug classes such as antidepressants at as much as one-half of a recommended therapeutic dose for humans based on their estimated prey consumption rates, yet the consequences for fish and wildlife of this chronic exposure are unknown. Overall, this work highlights the potential exposure of aquatic and riparian biota to a diverse array of pharmaceuticals, resulting in exposures to some drugs that are comparable to human dosages.
机译:大量具有生物活性的药物在全球范围内污染了地表水,但在水生食物网中的存在仍然鲜为人知。在这里,我们表明可以在澳大利亚墨尔本附近的六条河流中的水生无脊椎动物和河岸蜘蛛中检测到60多种药物化合物。水生无脊椎动物的幼虫和河岸捕食者中的浓度相似,表明营养的传递是通过新兴的成虫传播给消耗它们的河岸捕食者的。作为以水生无脊椎动物为食的有代表性的脊椎动物捕食者,鸭嘴兽和褐鳟可能会消耗一些药物,例如抗抑郁药,其消耗量是根据人类估计的猎物消耗率向其推荐的治疗剂量的一半,但对鱼类和野生动植物的后果这种长期暴露的原因尚不清楚。总的来说,这项工作强调了水生生物和河岸生物群可能接触多种药物,从而导致了某些与人类剂量相当的药物的接触。

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