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Evaluation of effects of exposure time on aquatic toxicity with zooplanktons using a reduced life expectancy model

机译:使用减少的寿命模型评估暴露时间对浮游动物水生毒性的影响

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摘要

Traditionally in toxicological studies time is not studied as quantifiable variable but as a fixed endpoint. The Reduced Life Expectancy (RLE) model which relates exposure time and exposure concentration with lethal toxic effects was tested previously using fish data. In this current paper the effects of exposure time on aquatic toxicity with zooplanktons and various toxicants were evaluated using the RLE model based on ambient exposure concentration. The model was evaluated by plotting lnLT50 against LC50 using toxicity data with zooplanktons from the literature for metal, metalloid and organic compounds. Most of the experimental data sets can be satisfactorily correlated by use of the RLE model, but deviations occurred for some data sets. Those data sets were satisfactorily fitted by a two stage RLE model. This model was based on two phases: one in the peripheral system and other in the central system. Both the single and two stage RLE model support the hypothesis that toxicity is time dependent and decreases in a systematic way with increasing exposure time. A calculated normal life expectancy (NLT) can be obtained from the single stage model and is in accord with reported NLT but those obtained from the two stage RLE model are in excellent agreement.
机译:传统上,在毒理学研究中,时间不是作为可量化变量而是作为固定终点来研究的。先前使用鱼类数据测试了将暴露时间和暴露浓度与致命毒性作用相关联的预期寿命降低(RLE)模型。在本文中,基于环境暴露浓度,使用RLE模型评估了暴露时间对浮游动物和各种有毒物质对水生毒性的影响。通过使用毒性数据和来自浮游动物的金属,准金属和有机化合物文献中的毒性数据,绘制lnLT50对LC50的曲线来评估模型。使用RLE模型可以使大多数实验数据集令人满意地相关,但是某些数据集会出现偏差。这些数据集由两阶段RLE模型令人满意地拟合。该模型基于两个阶段:一个阶段在外围系统中,另一个阶段在中央系统中。单级和二级RLE模型均支持以下假设:毒性是时间依赖性的,并且会随着暴露时间的增加而系统地降低。可以从单阶段模型获得计算出的正常预期寿命(NLT),并且与报告的NLT一致,但是从两阶段RLE模型获得的结果则非常吻合。

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