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Determination of Estrogen Activity in River Waters and Wastewater in Luxembourg by Chemical Analysis and the Yeast Estrogen Screen Assay

机译:化学分析和酵母雌激素筛查法测定卢森堡河水和废水中的雌激素活性

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In many cases, only selected well-known target chemicals are analysed and used for a comparison with biological effects. Predicting the environmental impact of different chemical compounds does often fail. Effects are the result of mixture toxicity of single chemicals and their degraded products, which can have different biological potency and bioavailability. In vitro toxicity or mechanism-based assays are used as screening tools, prior to extended evaluation in animals or natural populations, or even prior to chemical monitoring. This study illustrates the use of the yeast bioassay to investigate the presence of compounds or chemicals with estrogenic activity in wastewater and surface water in Luxembourg and compares results with chemical measurements. Although the approach described in this paper has already been published in many case studies before, it confirms earlier findings and it delivers results for Luxembourg where similar analyses have not been documented so far. By comparison of the biological signal in the yeast assay, expressed as estrogen equivalents, with available results by liquid chromatography–mass spectrometry for steroid hormones we could only obtain a similar ranking for the majority of samples with low or high estrogenic activity. Measurements can therefore only be used as a screening tool for estrogenic activity. Seasonal changes as apparent for chemical results in surface waters were confirmed in the yeast assay. Dissolved estrone is diluted by higher discharge in the rivers during winter containing larger amounts of unpolluted soil water and groundwater runoff.
机译:在许多情况下,仅分析选定的知名目标化学品并将其与生物学效应进行比较。预测不同化合物对环境的影响常常会失败。效果是单一化学物质及其降解产物的混合物毒性的结果,它们可能具有不同的生物效价和生物利用度。在对动物或自然种群进行进一步评估之前,甚至在化学监测之前,都使用体外毒性或基于机理的分析作为筛选工具。这项研究说明了使用酵母生物测定法研究卢森堡废水和地表水中具有雌激素活性的化合物或化学物质的存在,并将结果与​​化学测量结果进行了比较。尽管本文中描述的方法之前已经在许多案例研究中发表过,但它证实了较早的发现,并为卢森堡提供了结果,而卢森堡至今尚未记录类似的分析。通过比较以雌激素当量表示的酵母测定法中的生物信号,以及通过液相色谱-质谱法对类固醇激素可获得的结果,我们只能对大多数具有低或高雌激素活性的样品获得相似的排名。因此,测量只能用作雌激素活性的筛选工具。酵母测定法证实了地表水中化学结果明显的季节性变化。在冬季,溶解的雌酮因河流中较高的排放而被稀释,其中含有大量未污染的土壤水和地下水径流。

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