首页> 外文期刊>The Science of the Total Environment >Using the Biotic Ligand Model framework to investigate binary metal interactions on the uptake of Ag, Cd, Cu, Ni, Pb and Zn in the freshwater snail Lymnaea stagnalis
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Using the Biotic Ligand Model framework to investigate binary metal interactions on the uptake of Ag, Cd, Cu, Ni, Pb and Zn in the freshwater snail Lymnaea stagnalis

机译:使用生物配体模型框架研究二元金属相互作用对淡水蜗牛斜纹夜蛾吸收Ag,Cd,Cu,Ni,Pb和Zn的影响

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There is growing interest in the development of mechanistically-based models, such as the Biotic Ligand Model (BLM), for assessing the environmental risk of metal mixtures. However, the derivation of such models requires insights into the mechanisms of multimetal interactions that are often lacking for aquatic organisms. In the present study, we investigated how binary mixtures of six metals (Ag, Cd, Cu, Ni, Pb and Zn) interact for uptake in the great pond snail Lymnaea stagnalis, a freshwater species particularly sensitive to metals in chronic exposure. For each metal, short-term (2-3 h) uptake experiments on juvenile snails were performed with the metal alone and in combination with a second metal, at concentrations encompassing the chronic toxicity concentration range. These experiments showed significant binary metal interactions for 7 out of 15 mixtures. Most interactions were inhibitory in nature, not reciprocal and caused by either Ag or Cu. They led to relative changes of uptake that did not exceed 50% within the range of metal chronic toxicity. The BLM proved to be successful at explaining most of the interactions, via competitive inhibition. This study is in support of using bioavailability-based models, such as the BLM, to model metal mixture interactions in L. stagnalis. (C) 2018 Published by Elsevier B.V.
机译:对基于机械的模型(如生物配体模型(BLM))用于评估金属混合物的环境风险的兴趣日益浓厚。然而,这种模型的推导需要洞察水生生物通常缺乏的多金属相互作用的机理。在本研究中,我们研究了六种金属(Ag,Cd,Cu,Ni,Pb和Zn)的二元混合物如何相互作用,从而吸收了长池蜗牛lymnaea stagnalis,这是一种对长期暴露于金属特别敏感的淡水物种。对于每种金属,仅在单独的金属上并与第二种金属结合,以涵盖慢性毒性浓度范围的浓度对幼蜗牛进行了短期(2-3 h)吸收实验。这些实验表明15种混合物中有7种具有明显的二元金属相互作用。大多数相互作用本质上是抑制性的,不是相互的,而是由Ag或Cu引起的。在金属慢性毒性范围内,它们导致的相对吸收变化不超过50%。事实证明,BLM通过竞争抑制成功地解释了大多数相互作用。这项研究支持使用基于生物利用度的模型(例如BLM)来模拟stagnalis中的金属混合物相互作用。 (C)2018由Elsevier B.V.发布

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