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Spatial variability in selenium and mercury interactions in a key recreational fish species: Implications for human health and environmental monitoring

机译:关键休闲鱼类中硒和汞相互作用的空间变异性:对人类健康和环境监测的意义

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Selenium's (Se) protective effects against mercury (Hg) toxicity have been demonstrated; however, this is seldom considered in health assessments, where dietary exposure is still evaluated by Hg concentration alone. Se:Hg ratios and selenium health benefit values (Se HBVs) offer a more comprehensive seafood safety model. Here we describe total mercury (THg), methylmercury (MeHg) and Se concentrations in fish from a Hg-polluted estuary. Spatial variation in THg, MeHg and Se was evident, though all regions maintained Se:Hg ratio values >1. Se HBV varied between regions and in one region mean negative values (-5.17) were evident. This study provides the first evidence that quoting a single all-encompassing Se HBV is not appropriate when species demonstrate strong site fidelity. It highlights the need for research into Se-Hg relationships in environments with established Hg pollution and reinforces the assertion that Se concentration be considered in assessments of human health risk to Hg exposure.
机译:硒对汞(Hg)毒性的保护作用已得到证明;但是,在健康评估中很少考虑到这一点,在饮食评估中仍仅通过汞浓度来评估饮食摄入量。硒:汞比和硒健康效益值(Se HBV)提供了更全面的海鲜安全模型。在这里,我们描述了汞污染河口的鱼类中的总汞(THg),甲基汞(MeHg)和Se浓度。尽管所有区域的硒:汞比值均> 1,但THg,MeHg和Se的空间变化明显。 Se HBV在区域之间变化,并且在一个区域中的平均值为负值(-5.17)。这项研究提供了第一个证据,即当物种表现出较强的位点保真度时,引用一个单一的全能性HBV是不合适的。它强调了在汞污染已建立的环境中研究硒-汞关系的必要性,并进一步证明了在评估人体对汞暴露的健康风险时应考虑硒的浓度。

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