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An Integrative Approach Combining Passive Sampling, Bioassays, and Effect-Directed Analysis to Assess the Impact of Wastewater Effluent

机译:一种将被动采样,生物测定和效果导向分析相结合的综合方法,以评估废水的影响

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Wastewater treatment plant (WWTP) effluents are major sources of endocrine-disrupting chemicals (EDCs) and other chemicals of toxicological concern for the aquatic environment. In the present study, we used an integrated strategy combining passive sampling (Chemcatcher (R)), developmental toxicity, and mechanism-based in vitro and in vivo bioassays to monitor the impacts of a WWTP on a river. In vitro screening revealed the WWTP effluent as a source of estrogen, glucocorticoid, and aryl hydrocarbon (AhR) receptor-mediated activities impacting the downstream river site where significant activities were also measured, albeit to a lesser extent than in the effluent. Effect-directed analysis of the effluent successfully identified the presence of potent estrogens (estrone, 17-ethinylestradiol, and 17-estradiol) and glucocorticoids (clobetasol propionate and fluticasone propionate) as the major contributors to the observed in vitro activities, even though other unidentified active chemicals were likely present. The impact of the WWTP was also assessed using zebrafish embryo assays, highlighting its ability to induce estrogenic response through up-regulation of the aromatase promoter-dependent reporter gene in the transgenic (cyp19a1b-green fluorescent protein [GFP]) zebrafish assay and to generate teratogenic effects at nonlethal concentrations in the zebrafish embryo toxicity test. The present study argues for the use of such an integrated approach, combining passive sampling, bioassays, and effect-directed analysis, to comprehensively identify endocrine active compounds and associated hazards of WTTP effluents. Environ Toxicol Chem 2018;37:2079-2088. (c) 2018 SETAC
机译:废水处理厂(WWTP)的废水是破坏内分泌的化学物质(EDC)和其他对水生环境具有毒理学意义的化学物质的主要来源。在本研究中,我们采用了一种综合策略,将被动采样(Chemcatcher(R)),发育毒性以及基于机理的体外和体内生物测定相结合,以监测WWTP对河流的影响。体外筛选显示,污水处理厂废水是雌激素,糖皮质激素和芳烃(AhR)受体介导的活动的来源,影响下游河流站点,在那里也测得了重要的活动,尽管程度不及废水中。废水的效果导向分析成功地确定了强效雌激素(雌酮,17-乙炔雌二醇和17-雌二醇)和糖皮质激素(氯倍他索丙酸酯和氟替卡松丙酸酯)的存在,尽管观察到的其他不确定的原因可能存在活性化学品。还使用斑马鱼胚胎测定法评估了WWTP的影响,强调了它通过上调转基因(cyp19a1b-绿色荧光蛋白[GFP])斑马鱼测定法中芳香化酶启动子依赖性报告基因的表达来诱导雌激素反应的能力,并产生了斑马鱼胚胎毒性试验中非致死浓度下的致畸作用。本研究主张使用这种综合方法,结合被动采样,生物测定和效果导向分析,以全面识别内分泌活性化合物和WTTP废水的相关危害。 Environ Toxicol Chem 2018; 37:2079-2088。 (c)2018年SETAC

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