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Toxicity of a Mixture of Dissimilarly Acting Substances to Natural Algal Communities: Predictive Power and Limitations of Independent Action and Concentration Addition

机译:不同作用物质的混合物对天然藻类群落的毒性:预测作用以及独立行动和集中度加成的局限性

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摘要

Predictive studies of chemical mixtures are typically based on experiments with single species. To study the applicability of the concepts of independent action (IA) and concentration addition (CA) on a multispecies level, the carbon fixation of natural algal communities under toxicant exposure was studied. The presented study focused on a mixture of six dissimilarly acting substances. Conceptual reasoning as well as empirical evidence from single-species tests suggest that IA is more appropriate for this type of mixture. Nonetheless, the potential of CA was also investigated, to assess whether this concept may be applicable as a reasonable worst case prediction of mixture toxicities also on a community level. IA predicted the experimental EC{sub}50 precisely. CA underestimated the EC{sub}50 by a factor of only 1.4, although the shape of the predicted concentration-response curve was clearly different from experimental data. Hence, it can be concluded that the applicability of the concepts is not restricted to the level of single species. However, some limitations of both concepts became apparent, when stimulating (hormesis-like) effects were observed for two of the mixture components. These effects were also seen in the experimental mixture toxicity data but cannot be adequately modeled by either concept.
机译:化学混合物的预测研究通常基于单个物种的实验。为了研究多物种水平上独立作用(IA)和浓度增加(CA)概念的适用性,研究了有毒物质暴露下天然藻类群落的碳固定作用。提出的研究集中于六种不同作用的物质的混合物。概念推理以及单物种试验的经验证据表明,IA更适合此类混合物。尽管如此,还对CA的潜力进行了研究,以评估该概念是否可以作为在社区一级对混合物毒性进行合理的最坏预测。 IA准确预测了实验性EC {sub} 50。尽管预测的浓度-响应曲线的形状与实验数据明显不同,但CA仅将EC {sub} 50的系数低了1.4倍。因此,可以得出结论,这些概念的适用性不限于单一物种的水平。但是,当观察到两种混合物成分的刺激(类似兴奋剂)效果时,这两个概念的局限性就变得显而易见。这些效果也可以在实验混合物毒性数据中看到,但无法用任何一个概念进行充分建模。

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