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Bioassay battery interlaboratory investigation of emerging contaminants in spiked water extracts – towards the implementation of bioanalytical monitoring tools in water quality assessment and monitoring

机译:对加标的水提取物中的新兴污染物进行生物测定电池实验室间调查–致力于在水质评估和监测中实施生物分析监测工具

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摘要

Bioassays are particularly useful tools to link the chemical and ecological assessments in water quality monitoring. Different methods cover a broad range of toxicity mechanisms in diverse organisms, and account for risks posed by non-target compounds and mixtures. Many tests are already applied in chemical and waste assessments, and stakeholders from the science-police interface have recommended their integration in regulatory water quality monitoring. Still, there is a need to address bioassay suitability to evaluate water samples containing emerging pollutants, which are a current priority in water quality monitoring. The presented interlaboratory study (ILS) verified whether a battery of miniaturized bioassays, conducted in 11 different laboratories following their own protocols, would produce comparable results when applied to evaluate blinded samples consisting of a pristine water extract spiked with four emerging pollutants as single chemicals or mixtures, i.e. triclosan, acridine, 17α-ethinylestradiol (EE2) and 3-nitrobenzanthrone (3-NBA). Assays evaluated effects on aquatic organisms from three different trophic levels (algae, daphnids, zebrafish embryos) and mechanism-specific effects using in vitro estrogenicity (ER-Luc, YES) and mutagenicity (Ames fluctuation) assays. The test battery presented complementary sensitivity and specificity to evaluate the different blinded water extract spikes. Aquatic organisms differed in terms of sensitivity to triclosan (algae > daphnids > fish) and acridine (fish > daphnids > algae) spikes, confirming the complementary role of the three taxa for water quality assessment. Estrogenicity and mutagenicity assays identified with high precision the respective mechanism-specific effects of spikes even when non-specific toxicity occurred in mixture. For estrogenicity, although differences were observed between assays and models, EE2 spike relative induction EC values were comparable to the literature, and E2/EE2 equivalency factors reliably reflected the sample content. In the Ames, strong revertant induction occurred following 3-NBA spike incubation with the TA98 strain, which was of lower magnitude after metabolic transformation and when compared to TA100. Differences in experimental protocols, model organisms, and data analysis can be sources of variation, indicating that respective harmonized standard procedures should be followed when implementing bioassays in water monitoring. Together with other ongoing activities for the validation of a basic bioassay battery, the present study is an important step towards the implementation of bioanalytical monitoring tools in water quality assessment and monitoring.
机译:生物测定是在水质监测中将化学和生态评估联系起来的特别有用的工具。不同的方法涵盖了多种生物中广泛的毒性机制,并说明了非目标化合物和混合物带来的风险。许多测试已用于化学和废物评估中,科学与警察界线的利益相关者建议将其集成到监管水质监测中。仍然需要解决生物测定适合性的问题,以评估含有新兴污染物的水样品,这是目前水质监测的重点。所提供的实验室间研究(ILS)验证了在11个不同实验室中按照自己的规程进行的一系列小型生物测定,当用于评估由纯净水提取物加标有四种新兴污染物作为单一化学物质的盲样品时,是否会产生可比的结果?混合物,即三氯生,a啶,17α-炔雌醇(EE2)和3-硝基苯并蒽醌(3-NBA)。该方法使用体外雌激素法(ER-Luc,YES)和诱变性(Ames波动)试验评估了三种不同营养水平(藻类,水蚤,斑马鱼胚胎)对水生生物的影响以及特定机制的作用。测试电池具有互补的灵敏度和特异性,可以评估不同的盲注水提取物峰值。水生生物对三氯生(藻类>蚤类>鱼类)和a啶(鱼>蚤类>藻类)峰值的敏感性有所不同,这证实了这三种类群在水质评估中的互补作用。雌激素和致突变性测定法即使在混合物中发生非特异性毒性时,也能高精度地鉴定出刺突的相应机理特异性作用。对于雌激素,尽管在试验和模型之间观察到差异,但EE2峰值相对诱导EC值与文献相当,并且E2 / EE2等效因子可靠地反映了样品含量。在艾姆斯地区,与TA98菌株一起进行3-NBA尖峰孵育后,发生了强烈的回复诱导,与TA100相比,TA98菌株的转化幅度较小。实验方案,模型生物和数据分析的差异可能是变异的源头,表明在水监测中实施生物测定时应遵循各自统一的标准程序。本研究与其他正在进行的用于验证基本生物测定电池的活动一起,是朝着在水质评估和监测中实施生物分析监测工具迈出的重要一步。

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