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首页> 外文期刊>Ecotoxicology and Environmental Safety >Assessment of metal, metalloid, and radionuclide bioaccessibility from mussels to human consumers, using centrifugation and simulated digestion methods coupled with radiotracer techniques
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Assessment of metal, metalloid, and radionuclide bioaccessibility from mussels to human consumers, using centrifugation and simulated digestion methods coupled with radiotracer techniques

机译:使用离心和模拟消化方法以及放射性示踪技术,评估贻贝对人类消费者的金属,准金属和放射性核素的生物可及性

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摘要

The dietary bioaccessibility of seven elements (~(241)Am, Cd, Co, Cs, Mn, Se, and Zn) in the Mediterranean mussels Mytilus galloprovincialis (Lamarck, 1819) was assessed for human consumers. In this respect, we assessed and compared the proportion of elements associated with the cellular cytosolic ("soluble") fraction vs. the bioaccessible fraction derived, respectively, from (1) the differential centrifugation method and (2) the simulated digestion method. Comparisons were carried out on both raw and cooked mussels. Results showed that (1) the centrifugation method systematically underestimated (up to a factor 4) element bioaccessibility in raw mussels compared with the in vitro digestion method (e.g., 10% vs. 42% for ~(241)Am), and (2) the cooking process (5 min at 200 ℃) leads to concentrating the elements in mussel tissues (e.g., by a factor 2 for Zn) and reducing their bioaccessibility. Overall, the simulated in vitro digestion method appears as a powerful tool for seafood safety assessment and cooking could contribute in reducing substantially the global trace element intake from mussel tissues (up to 65% for Cd and Cs).
机译:为人类消费者评估了地中海贻贝Mytilus galloprovincialis(Lamarck,1819)中七个元素(〜(241)Am,Cd,Co,Cs,Mn,Se和Zn)的饮食生物可及性。在这方面,我们评估并比较了分别来自(1)差速离心法和(2)模拟消化法的细胞胞质(“可溶性”)级分与生物可及级分相关元素的比例。比较了生贻贝和煮熟的贻贝。结果表明:(1)离心法与体外消化法相比,系统地低估了贻贝中生贻贝的生物可及性(最高为4倍)(例如,〜(241)Am为10%对42%),和(2 )(在200℃下5分钟)的烹饪过程会导致贻贝组织中的元素浓缩(例如,锌的2倍)并降低其生物利用度。总体而言,模拟的体外消化方法似乎是评估海鲜安全性的有力工具,并且烹煮可以大大减少贻贝组织中的微量元素摄入总量(镉和铯的含量最高可达65%)。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2009年第5期|1499-1502|共4页
  • 作者单位

    International Atomic Energy Agency, Marine Environment Laboratories (IAEA-MEL), Principality of Monaco Littoral, Environnement et Societes (LIENSs), UMR 6250, CNRS-Universite de La Rochelle, France;

    Nantes Atlantique Universites, Molecules Mer et Sante, EA2J60, Universite de Nantes, France;

    International Atomic Energy Agency, Marine Environment Laboratories (IAEA-MEL), Principality of Monaco;

    Littoral, Environnement et Societes (LIENSs), UMR 6250, CNRS-Universite de La Rochelle, France;

    International Atomic Energy Agency, Marine Environment Laboratories (IAEA-MEL), Principality of Monaco;

    Nantes Atlantique Universites, Molecules Mer et Sante, EA2J60, Universite de Nantes, France;

    International Atomic Energy Agency, Marine Environment Laboratories (IAEA-MEL), Principality of Monaco LIENSs, UMR 6250, CNRS-Universite de La Rochelle, 2 rue Olympe de Gouges, F-17042 La Rochelle Cedex 01, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bioavailability; seafood; digestion simulation; differential centrifugation; seafood safety;

    机译:生物利用度海鲜;消化模拟;差速离心海鲜安全;

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