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预测在单一毒物低效应浓度下多组分均三嗪混合物的联合藻类毒性。

Predicting the joint algal toxicity of multi-component s-triazine mixtures at low-effect concentrations of individual toxicants.

作者信息

Faust M, Altenburger R, Backhaus T, Blanck H, Boedeker W, Gramatica P, Hamer V, Scholze M, Vighi M, Grimme L H

机构信息

Department of Biology and Chemistry, University of Bremen, P.O. Box 330440, D-28334, Bremen, Germany.

出版信息

Aquat Toxicol. 2001 Dec 3;56(1):13-32. doi: 10.1016/s0166-445x(01)00187-4.

Abstract

Herbicidal s-triazines are widespread contaminants of surface waters. They are highly toxic to algae and other primary producers in aquatic systems. This results from their specific interference with photosynthetic electron transport. Risk assessment for aquatic biota has to consider situations of simultaneous exposure to various of these toxicants. In tests with freshwater algae we predicted and determined the toxicity of multiple mixtures of 18 different s-triazines. The toxicity parameter was the inhibition of reproduction of Scenedesmus vacuolatus. Concentration-response analyses were performed for single toxicants and for mixtures containing all 18 s-triazines in two different concentration ratios. Experiments were designed to allow a valid statistical description of the entire concentration-response relationships, including the low concentration range down to EC1. Observed effects and effect concentrations of mixtures were compared to predictions of mixture toxicity. Predictions were calculated from the concentration-response functions of individual s-triazines by applying the concepts of concentration addition and independent action (response addition) alternatively. Predictions based on independent action tend to underestimate the overall toxicity of s-triazine mixtures. In contrast, the concept of concentration addition provides highly accurate predictions of s-triazine mixture toxicity, irrespective of the effect level under consideration and the concentration ratio of the mixture components. This also holds true when the mixture components are present in concentrations below their individual NOEC values. Concentrations statistically estimated to elicit non-significant effects of only 1% still contribute to the overall toxicity. When present in a multi-component mixture they can co-operate to give a severe joint effect. Applicability of the findings obtained with s-triazines to mixtures of other contaminants in aquatic systems and consequences for risk assessment procedures are discussed.

摘要

除草性均三嗪是地表水中广泛存在的污染物。它们对水生系统中的藻类和其他初级生产者具有高毒性。这是由于它们对光合电子传递的特异性干扰所致。对水生生物群的风险评估必须考虑同时接触多种此类有毒物质的情况。在淡水藻类测试中,我们预测并确定了18种不同均三嗪多种混合物的毒性。毒性参数是对空星藻繁殖的抑制作用。对单一有毒物质以及包含所有18种均三嗪且浓度比不同的两种混合物进行了浓度-反应分析。实验设计旨在对整个浓度-反应关系进行有效的统计描述,包括低至EC1的低浓度范围。将混合物的观察到的效应和效应浓度与混合物毒性的预测值进行比较。预测值分别通过应用浓度相加和独立作用(反应相加)的概念,根据各个均三嗪的浓度-反应函数计算得出。基于独立作用的预测往往会低估均三嗪混合物的总体毒性。相比之下,浓度相加的概念能够提供均三嗪混合物毒性的高度准确预测,无论所考虑的效应水平以及混合物成分的浓度比如何。当混合物成分的浓度低于其各自的无可见效应浓度(NOEC)值时,情况也是如此。经统计估计仅能引起1%非显著效应的浓度仍会对总体毒性产生影响。当它们存在于多组分混合物中时,可能会协同作用产生严重的联合效应。讨论了从均三嗪研究中获得的结果对水生系统中其他污染物混合物的适用性以及对风险评估程序的影响。

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