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Selenium/mercury molar ratios in freshwater,marine, and commercial fish from the USA:variation, risk, and health management

机译:美国淡水,海洋和商业鱼类中硒/汞的摩尔比:变异,风险和健康管理

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摘要

Fish provide healthy protein as well as recreational and cultural benefits, but can also contain mercury (Hg), polychlorinated biphenyls (PCBs), and other contaminants that have adverse effects on humans and other organisms, particularly developing fetuses. Recently, some authors have suggested that a molar excess of selenium (Se) [e.g., selenium/mercury (Se/Hg) molar ratio >1] confers protection from Hg toxicity derived from fish consumption. Herein, we review our studies of Hg and Se in freshwater, marine, and commercial fish (mainly marine), examining the following: (1) whether and how Se/Hg molar ratios vary among species; (2) whether and how the molar ratios vary within species; (3) whether the molar ratios differ between freshwater and saltwater fish; (4) whether mean molar ratio values provide a reliable indication of potential risk to fish consumers; and (5) whether mean Se/Hg molar ratios are sufficiently constant (e.g., low variation) to allow for use in risk assessment, risk management, or risk communication. In saltwater fish, mean Se/Hg molar ratios varied from 0.3 in mako shark to 68.1 in whiting. For freshwater fish, the mean ratios varied from 0.68 in bowfin to 20.8 in black crappie. Commercial seafood (mainly saltwater) showed great variation in ratios; shrimp and scallops had very high ratios. There was somewhat less variability in the ratios for freshwater fish compared with the fish from saltwater, but there was no overall predictable difference in variation in Se/ Hg molar ratios. For both saltwater and freshwater fish, some species with mean molar ratios above 1 had a significant proportion of individual fish with molar ratios below 1. Overall, this indicates great variation in measures of central tendencies and in measures of dispersion. We suggest that relying on the Se/Hg molar ratio as a method of predicting reduced risk from Hg toxicity is problematic because of the great variation among and within fish species, and the variation is not predictable because Hg varies by season, size of the fish, and location of the fish (which is not available for commercial fish). With the high variation in ratios, and low predictability, the ratios are currently not useful for risk assessment and risk management, and vulnerable individuals cannot rely on mean Se/ Hg molar ratios for protection from Hg toxicity.
机译:鱼类不仅提供健康的蛋白质,而且还具有娱乐和文化益处,但也可能含有汞(Hg),多氯联苯(PCB)和其他对人类和其他生物(特别是发育中的胎儿)有不利影响的污染物。最近,一些作者建议,摩尔过量的硒(Se)(例如硒/汞(Se / Hg)摩尔比> 1]可以防止鱼类食用引起的Hg毒性。本文中,我们回顾了我们在淡水,海水和商业鱼类(主要是海洋鱼类)中对Hg和Se的研究,并研究了以下内容:(1)Se / Hg摩尔比在物种之间是否以及如何变化; (2)摩尔比在物种内是否以及如何变化; (3)淡水鱼和咸水鱼之间的摩尔比是否不同; (4)平均摩尔比值是否能可靠地表明鱼类消费者的潜在风险; (5)Se / Hg的平均摩尔比是否足够恒定(例如,低变化)以允许用于风险评估,风险管理或风险交流中。在咸水鱼中,平均硒/汞摩尔比从鲨鱼的0.3至白鲸的68.1不等。对于淡水鱼,平均比例从bow鱼的0.68到黑鱼的20.8不等。商业海鲜(主要是盐水)的比例差异很大;虾和扇贝的比例很高。与淡水鱼相比,淡水鱼的比例变化较小,但硒/汞摩尔比变化总体上没有可预测的差异。对于海水鱼和淡水鱼,平均摩尔比高于1的某些物种的摩尔比低于1的单条鱼占很大比例。总体而言,这表明中心趋势和分散度的测量方法差异很大。我们建议依靠Se / Hg摩尔比作为预测降低Hg毒性风险的方法是有问题的,因为鱼种之间和内部的变化很大,并且由于Hg随季节,鱼的大小而变化,因此变化是不可预测的,以及鱼的位置(不适用于商业鱼)。由于比率的高变化和低可预测性,该比率目前无法用于风险评估和风险管理,脆弱人群无法依靠平均硒/汞摩尔比保护汞免受毒性。

著录项

  • 来源
    《Reviews on environmental health》 |2013年第3期|129-143|共15页
  • 作者单位

    Division of Life Sciences, Rutgers University, 604 Allison Road, Piscataway, NJ 08854, USA, Environmental and Occupational Health Sciences Institute, Rutgers University, Piscataway, NJ, USA Consortium for Risk Evaluation with Stakeholder Participation, Rutgers University, Piscataway, NJ, USA;

    Environmental and Occupational Health Sciences Institute, Rutgers University, Piscataway, NJ, USA Consortium for Risk Evaluation with Stakeholder Participation, Rutgers University, Piscataway, NJ, USA Environmental and Occupational Medicine, Robert Wood Johnson Medical School, Rutgers University, Piscataway, NJ, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fish; mercury; risk; risk assessment; risk management; selenium; selenium/mercury molar ratios; thresholds; variation;

    机译:鱼;汞;风险;风险评估;风险管理;硒;硒/汞摩尔比;门槛;变异;
  • 入库时间 2022-08-17 23:06:42

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