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Mixture effects of organic micropollutants present in water: Towards the development of effect-based water quality trigger values for baseline toxicity

机译:水中存在的有机微量污染物的混合效应:致力于开发基于效应的水质基准毒性触发值

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摘要

In this study we propose for the first time an approach for the tentative derivation of effect-based water quality trigger values for an apical endpoint, the cytotoxicity measured by the bioluminescence inhibition in Vibrio fischeri. The trigger values were derived for the Australian Drinking Water Guideline and the Australian Guideline for Water Recycling as examples, but the algorithm can be adapted to any other set of guideline values. In the first step, a Quantitative Structure-Activity Relationship (QSAR) describing the 50% effect con-centrations, EC_(50), was established using chemicals known to act according to the nonspecific mode of action of baseline toxicity. This QSAR described the effect of most of the chemicals in these guidelines satisfactorily, with the exception of antibiotics, which were more potent than predicted by the baseline toxicity QSAR. The mixture effect of 10-56 guideline chem-icals mixed at various fixed concentration ratios (equipotent mixture ratios and ratios of the guideline values) was adequately described by concentration addition model of mixture toxicity. Ten water samples were then analysed and 5-64 regulated chemicals were detected (from a target list of over 200 chemicals). These detected chemicals were mixed in the ratios of concentrations detected and their mixture effect was predicted by concentration addition. Comparing the effect of these designed mixtures with the effect of the water samples, it became evident that less than 1% of effect could be explained by known chemicals, making it imperative to derive effect-based trigger values. The effect-based water quality trigger value, EBT-ECso, was calculated from the mixture effect concentration predicted for concentration-additive mixture effects of all chemicals in a given guideline divided by the sum of the guideline concentrations for individual components, and dividing by an extrapolation factor that accounts for the number of chemicals contained in the guidelines and for model un-certainties. While this concept was established using the example of Australian recycled water, it can be easily adapted to any other set of water quality guidelines for organic micropollutants. The cytotoxicity based trigger value cannot be used in isolation, it must be applied in conjunction with effect-based trigger values targeting critical specific modes of action such as estrogenicity or photosynthesis inhibition.
机译:在这项研究中,我们首次提出了一种尝试性推导根尖终点的基于效果的水质触发值的方法,即通过费氏弧菌的生物发光抑制来测量细胞毒性。触发值以澳大利亚的饮用水准则和澳大利亚的水循环利用准则为例,但是该算法可以适用于任何其他准则集。第一步,使用已知会根据基线毒性的非特异性作用方式起作用的化学物质,建立描述50%效应浓度EC_(50)的定量构效关系(QSAR)。该QSAR令人满意地描述了这些指南中大多数化学药品的效果,但抗生素的作用远强于基线毒性QSAR所预测的效果。通过混合物毒性的浓度相加模型充分描述了以各种固定浓度比(等效混合比和指导值之比)混合的10-56种指导化学物质的混合效果。然后分析了十个水样,并检测到5-64种管制化学品(来自200多种化学品的目标清单)。将这些检测到的化学药品按检测到的浓度比例进行混合,并通过添加浓度预测其混合效果。将这些设计的混合物的效果与水样的效果进行比较,很明显,只有不到1%的效果可以用已知的化学物质解释,因此必须得出基于效果的触发值。基于效果的水质触发值EBT-ECso,是根据给定准则中所有化学品的浓度加和混合效应所预测的混合效应浓度除以各个成分的准则浓度之和得出的。外推因子,用于解释指南中所含化学物质的数量以及模型不确定性。虽然以澳大利亚的循环水为例确立了这一概念,但可以很容易地将其适用于有机微量污染物的任何其他水质准则。基于细胞毒性的触发值不能单独使用,必须与针对关键特定作用方式(例如雌激素或光合作用抑制)的基于效果的触发值结合使用。

著录项

  • 来源
    《Water Research》 |2013年第10期|3300-3314|共15页
  • 作者单位

    The University of Queensland, National Research Centre for Environmental Toxicology (Entox), 39 Kessels Rd, Brisbane, Qld 4108, Australia;

    The University of Queensland, National Research Centre for Environmental Toxicology (Entox), 39 Kessels Rd, Brisbane, Qld 4108, Australia;

    The University of Queensland, National Research Centre for Environmental Toxicology (Entox), 39 Kessels Rd, Brisbane, Qld 4108, Australia;

    The University of Queensland, National Research Centre for Environmental Toxicology (Entox), 39 Kessels Rd, Brisbane, Qld 4108, Australia;

    The University of Queensland, National Research Centre for Environmental Toxicology (Entox), 39 Kessels Rd, Brisbane, Qld 4108, Australia,Department of Science, Information Technology, Innovation and the Arts, Water Quality and Investigations, GPO Box 5078, Brisbane, Qld 4001, Australia;

    The University of Queensland, National Research Centre for Environmental Toxicology (Entox), 39 Kessels Rd, Brisbane, Qld 4108, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    In vitro bioassay; Cytotoxicity; Bioluminescence inhibition; Vibrio fischeri; Concentration addition; Water quality guidelines;

    机译:体外生物测定;细胞毒性;生物发光抑制;费氏弧菌;浓度增加;水质准则;

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