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Mercury distribution in key tissues of fish (Liza aurata) inhabiting a contaminated estuary-implications for human and ecosystem health risk assessment

机译:汞在被污染河口的鱼类(Liza aurata)关键组织中的分布对人类和生态系统健康风险的评估

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摘要

This study brings a new viewpoint based on multiple-tissue analyses to form the basis for a predictive mode of mercury accumulation dynamics in fish body under field conditions. Total mercury (T–Hg) was determined in key tissues of Liza aurata captured along an estuarine contamination gradient, displaying the following hierarchy: kidney > liver > muscle > brain > gills > blood. Brain was the tissue that better reflected the mercury contamination extent, closely followed by liver and muscle. Organic mercury (O–Hg) measured in muscle and liver represented more than 85% and less than 30% of the T–Hg, respectively. The lowest O–Hg percentage was found in the most contaminated area, for both muscle and liver. Mercury distribution and accumulation patterns showed dependence on the specific tissue. The high mercury levels found in organs involved in vital physiological processes point out the risk to autochthonous fish fauna. Human risk associated to the ingestion of fish living in the surveyed areas cannot be excluded.
机译:这项研究为基于多组织分析的新观点提供了依据,为田间条件下鱼体内汞积累动态的预测模式奠定了基础。测定了沿河口污染梯度捕获的丽莎金枪鱼关键组织中的总汞(T-Hg),显示以下层次结构:肾脏>肝脏>肌肉>脑>腮>血液。脑是可以更好地反映汞污染程度的组织,其次是肝脏和肌肉。肌肉和肝脏中的有机汞(O–Hg)分别占T–Hg的85%以上和30%以下。在受污染最严重的地区,肌肉和肝脏的O-Hg百分比最低。汞的分布和积累方式显示出对特定组织的依赖性。在参与重要生理过程的器官中发现的高汞含量表明存在对本地鱼类的危险。不能排除与被调查地区的鱼类摄食有关的人为风险。

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