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Effect‐Based Trigger Values for Mixtures of Chemicals in Surface Water Detected with In Vitro Bioassays

机译:用体外生物测量法检测到地表水中化学品混合物的触发值

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Effect-based trigger (EBT) values for in vitro bioassays are important for surface water quality monitoring because they define the threshold between acceptable and poor water quality. They have been derived for highly specific bioassays, such as hormone-receptor activation in reporter gene bioassays, by reading across from existing chemical guideline values. This read-across method is not easily applicable to bioassays indicative of adaptive stress responses, which are triggered by many different chemicals, and activation of nuclear receptors for xenobiotic metabolism, to which many chemicals bind with rather low specificity. We propose an alternative approach to define the EBT from the distribution of specificity ratios of all active chemicals. The specificity ratio is the ratio between the predicted baseline toxicity of a chemical in a given bioassay and its measured specific endpoint. Unlike many previous read-across methods to derive EBTs, the proposed method accounts for mixture effects and includes all chemicals, not only high-potency chemicals. The EBTs were derived from a cytotoxicity EBT that was defined as equivalent to 1% of cytotoxicity in a native surface water sample. The cytotoxicity EBT was scaled by the median of the log-normal distribution of specificity ratios to derive the EBT for effects specific for each bioassay. We illustrate the new approach using the example of the AREc32 assay, indicative of the oxidative stress response, and 2 nuclear receptor assays targeting the peroxisome proliferator-activated receptor gamma and the arylhydrocarbon receptor. The EBTs were less conservative than previously proposed but were able to differentiate untreated and insufficiently treated wastewater from wastewater treatment plant effluent with secondary or tertiary treatment and surface water. Environ Toxicol Chem 2021;00:1-13. (c) 2020 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.
机译:基于效果的触发(EBT)体外生物测定的值对于地表水质监测很重要,因为它们在可接受和水质不良之间定义了阈值。通过从现有的化学指南值读取来源,它们已被衍生用于高度特异性的生物测定(例如报告基因生物测定)中的激素受体激活。这种读取方法不容易适用于指示自适应应力响应的生物测定,其被许多不同的化学物质引发,以及用于异鹅代谢的核受体的激活,许多化学物质与相当低的特异性结合。我们提出了一种替代方法来定义EBT,从所有活性化学品的特异性比分布定义EBT。特异性比是在给定的生物测定中的预测基线毒性与其测量的特异性终点之间的预测基线毒性之间的比率。与许多先前的读取方法不同,所提出的方法占混合物效应,包括所有化学品,不仅是高效力化学品。 eBT衍生自细胞毒性EBT,其定义为当地水样中的1%的细胞毒性。细胞毒性EBT由特异性比率的日志正态分布的中值进行缩放,以导出对每个生物测定的特异性的EBT。我们使用AREC32测定的实例来说明新方法,指示氧化应激响应和靶向过氧化物酶体增殖物激活的受体γ和芳基氢环受体的2个核受体测定。 eBTS比以前提出的保守较少,但能够将来自废水处理厂的废水与次级或三级处理和地表水的废水分化,并能够区分未经处理的和不足的废水。环境毒素化学2021; 00:1-13。 (c)2020作者。 Wiley期刊LLC代表Setac的环境毒理学和化学。

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