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The ecotoxicology of hormonally-active micropollutants

机译:激素活性微污染物的生态毒理学

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There has been intense research and wide public interest in hormonally-active micropollutants present in the aquatic environment for more than a decade. This group of micropollutants contains a large number of structurally diverse chemicals with quite different origins. Some are natural hormones, others Pharmaceuticals, both veterinary and human, and yet others are chemicals which are hormonally active by accident, not design. Most of these hormonally-active micropollutants enter the aquatic environment in effluent from (STWs). Hence, the highest concentrations of these chemicals will be in rivers heavily impacted by effluent, especially effluent from poorly performing STWs. In some cases river concentrations of a hormonally-active micropollutant are well established, but in many cases they are not. It is important to know "real world" concentrations, so that laboratory ecotoxicological studies can be conducted at environmentally-relevant concentrations. Fish, as vertebrates, have endocrine systems very similar to those of mammals. This means that if a micropollutant is hormonally active in a mammal, it is very likely to also be active and cause similar or related effects, in fish. It is currently less clear whether or not these chemically are also hormonally-active in invertebrates, whose endocrine systems often differ appreciably from those of vertebrates.
机译:对水生环境中存在的荷尔蒙活性微污染物进行了广泛的研究,并引起了广泛的公众兴趣,已有十多年的历史了。这组微污染物包含大量结构不同的化学物质,其来源完全不同。一些是天然激素,另一些是兽药和人用药物,而另一些是偶然因激素活性而不是设计产生的化学物质。这些荷尔蒙活性微污染物中的大多数会从(STWs)的废水进入水生环境。因此,这些化学物质的最高浓度将在河流中受到污水的严重影响,特别是表现不佳的污水处理厂产生的污水。在某些情况下,已经确定了河流中一种具有激素活性的微污染物的浓度,但在许多情况下却没有。重要的是要了解“现实世界”的浓度,以便可以在与环境有关的浓度下进行实验室生态毒理学研究。鱼作为脊椎动物,其内分泌系统与哺乳动物非常相似。这意味着,如果微污染物在哺乳动物中具有荷尔蒙活性,那么很可能在鱼类中也具有活性并引起类似或相关的影响。目前尚不清楚这些化学物质在无脊椎动物中是否也具有激素活性,无脊椎动物的内分泌系统通常与脊椎动物的内分泌系统存在明显差异。

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