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Hypoxia Does Not Influence The Response Of Fish To A Mixture Of Estrogenic Chemicals

机译:缺氧不会影响鱼类对雌激素化合物混合物的反应

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Chemical risk assessment procedures assign a major role to standardized toxicity tests, in which the response of a particular organism to a single test substance is determined under otherwise constant and favorable conditions in the laboratory. This approach fails to consider the potential for chemical interactions, as well as failing to consider how the toxicological response varies, depending on the conditions of exposure. As yet, the issue of confounding factors on chemically mediated effects in wildlife has received little attention, despite the fact that a range of physicochemical parameters, including temperature, water quality, and pH, are known to modify chemical toxicity. Here, we consider how the estrogenic response of fish varies with regard to hypoxia. Fathead minnows(Pimephales promelas) were exposed to a mixture of estrogenic chemicals under hypoxic or normoxic conditions. Their estrogenic response was characterized using an in vivo assay, involving the analysis of the egg yolk protein, vitellogenin (VTG). The results revealed that there was no effect of hypoxia on the VTG response in either treatment group at the end of the exposure period. This suggests that this end point is robust and relatively insensitive to the effects of any physiological changes that arise as a result of hypoxia. The implications of these negative findings are discussed in terms of their relevance with regard to the development of risk assessment policy.
机译:化学风险评估程序在标准化毒性测试中起主要作用,在这种毒性测试中,特定生物对单一测试物质的反应是在实验室中其他恒定且有利的条件下确定的。该方法没有考虑化学相互作用的可能性,也没有考虑毒理学响应如何变化,这取决于暴露条件。到目前为止,尽管已知许多物理化学参数(包括温度,水质和pH值)会改变化学毒性,但野生生物中化学介导作用的混杂因素问题却鲜为人知。在这里,我们考虑鱼类的雌激素反应如何随缺氧而变化。在缺氧或常氧条件下,黑头now(Pimephales promelas)暴露于雌激素化学物质的混合物中。使用体内测定法对它们的雌激素反应进行了表征,包括对蛋黄蛋白黄体生成素(VTG)的分析。结果表明,在暴露期结束时,任一处理组的低氧血症对VTG反应均无影响。这表明该终点是健壮的,并且对由缺氧引起的任何生理变化的影响相对不敏感。这些负面发现的含义将根据其与风险评估政策制定的相关性进行讨论。

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