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An Integrated Approach for Identifying Priority Contaminant in the Great Lakes Basin – Investigations in the Lower Green Bay/Fox River and Milwaukee Estuary Areas of Concern

机译:识别大湖流域主要污染物的一种综合方法–对下格林湾/福克斯河和密尔沃基河口地区的调查

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摘要

Environmental assessment of complex mixtures typically requires integration of chemical and biological measurements. This study demonstrates the use of a combination of instrumental chemical analyses, effects-based monitoring, and bio-effects prediction approaches to help identify potential hazards and priority contaminants in two Great Lakes Areas of Concern (AOCs), the Lower Green Bay/Fox River located near Green Bay, WI, USA and the Milwaukee Estuary, located near Milwaukee, WI, USA. Fathead minnows were caged at four sites within each AOC (eight sites total). Following 4 d of in situ exposure, tissues and biofluids were sampled and used for targeted biological effects analyses. Additionally, 4 d composite water samples were collected concurrently at each caged fish site and analyzed for 132 analytes as well as evaluated for total estrogenic and androgenic activity using cell-based bioassays. Of the analytes examined, 75 were detected in composite samples from at least one site. Based on multiple analyses, one site in the East River and another site near a paper mill discharge in the Lower Green Bay/Fox River AOC, were prioritized due to their estrogenic and androgenic activity, respectively. The water samples from other sites generally did not exhibit significant estrogenic or androgenic activity, nor was there evidence for endocrine disruption in the fish exposed at these sites as indicated by the lack of alterations in ex vivo steroid production, circulating steroid concentrations, or vitellogenin mRNA expression in males. Induction of hepatic cyp1a mRNA expression was detected at several sites, suggesting the presence of chemicals that activate the Ah receptor. To expand the scope beyond targeted investigation of endpoints selected a priori, several bio-effects prediction approaches were employed to identify other potentially disturbed biological pathways and related chemical constituents that may warrant future monitoring at these sites. For example, several chemicals such as diethylphthalate and naphthalene, and genes and related pathways, such as cholinergic receptor muscarinic 3 (CHRM3), estrogen receptor alpha1 (esr1), chemokine ligand 10 protein (CXCL10), tumor protein p53 (p53), and monoamine oxidase B (Maob), were identified as candidates for future assessments at these AOCs. Overall, this study demonstrates that a better prioritization of contaminants and associated hazards can be achieved through integrated evaluation of multiple lines of evidence. Such prioritization can guide more comprehensive follow-up risk assessment efforts.
机译:复杂混合物的环境评估通常需要化学和生物学测量的整合。这项研究表明,结合使用仪器化学分析,基于效果的监测和生物效果预测方法,可以帮助识别两个大湖区(AOC),下绿湾/福克斯河的潜在危害和优先污染物位于美国威斯康星州格林贝市和密尔沃基河口附近,位于美国威斯康星州密尔沃基市附近。 head头min鱼被关在每个AOC的四个地点(总共八个地点)中。在原位暴露4天后,对组织和生物流体进行采样,并用于靶向生物学效应分析。此外,在每个网箱养鱼场同时采集了4天的复合水样本,并分析了132种分析物,并使用基于细胞的生物测定法评估了其总雌激素和雄激素活性。在检查的分析物中,从至少一个位置的复合样品中检测到75种。根据多项分析,分别将东部河中的一个地点和下格林湾/福克斯河AOC中的造纸厂排放口附近的另一个地点的雌激素和雄激素活性分别作为优先事项。来自其他场所的水样通常没有表现出明显的雌激素或雄激素活性,也没有证据表明暴露于这些场所的鱼的内分泌受到破坏,如离体类固醇生产,循环类固醇浓度或卵黄蛋白原mRNA缺乏变化所表明的。在男性中表达。在几个位点检测到肝cyp1a mRNA的诱导,表明存在激活Ah受体的化学物质。为了扩大范围,不仅仅针对事先选定的终点进行有针对性的调查,还采用了几种生物效应预测方法来识别其他可能受到干扰的生物途径和相关化学成分,从而有可能在这些场所进行未来的监测。例如,几种化学物质,例如邻苯二甲酸二乙酯和萘,以及基因和相关途径,例如胆碱能受体毒蕈碱3(CHRM3),雌激素受体α1(esr1),趋化因子配体10蛋白(CXCL10),肿瘤蛋白p53(p53)和单胺氧化酶B(Maob)被确定为这些AOC未来评估的候选对象。总的来说,这项研究表明,通过综合评估多条证据可以更好地确定污染物和相关危害的优先级。这样的优先次序可以指导更全面的后续风险评估工作。

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