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Significance of metallothioneins in differential cadmium accumulation kinetics between two marine fish species

机译:金属硫蛋白在两种海洋鱼类之间差异镉积累动力学中的意义

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摘要

Impacted marine environments lead to metal accumulation in edible marine fish, ultimately impairing human health. Nevertheless, metal accumulation is highly variable among marine fish species. In addition to ecological features, differences in bioaccumulation can be attributed to species-related physiological processes, which were investigated in two marine fish present in the Canary Current Large Marine Ecosystem (CCLME), where natural and anthropogenic metal exposure occurs. The European sea bass Dicentrarchus labrax and Senegalese sole Solea senegalensis were exposed for two months to two environmentally realistic dietary cadmium (Cd) doses before a depuration period. Organotropism (i.e., Cd repartition between organs) was studied in two storage compartments (the liver and muscle) and in an excretion vector (bile). To better understand the importance of physiological factors, the significance of hepatic metallothionein (MT) concentrations in accumulation and elimination kinetics in the two species was explored. Accumulation was faster in the sea bass muscle and liver, as inferred by earlier Cd increase and a higher accumulation rate. The elimination efficiency was also higher in the sea bass liver compared to sole, as highlighted by greater biliary excretion. In the liver, no induction of MT synthesis was attributed to metal exposure, challenging the relevance of using MT concentration as a biomarker of metal contamination. However, the basal MT pools were always greater in the liver of sea bass than in sole. This species-specific characteristic might have enhanced Cd biliary elimination and relocation to other organs such as muscle through the formation of more Cd/MT complexes. Thus, MT basal concentrations seem to play a key role in the variability observed in terms of metal concentrations in marine fish species. (C) 2018 Elsevier Ltd. All rights reserved.
机译:受到影响的海洋环境导致食用海洋鱼类中金属的积累,最终损害人类健康。然而,海洋鱼类之间的金属积累变化很大。除了生态特征之外,生物积累的差异还可以归因于物种相关的生理过程,该过程在金丝雀流大型海洋生态系统(CCLME)中存在的两种海水鱼中进行了调查,其中发生了自然和人为金属暴露。在净化期之前,欧洲鲈鱼Dicentrarchus labrax和塞内加尔唯一的Solea senegalensis暴露于两个环境上现实的膳食镉(Cd)剂量下两个月。在两个储藏室(肝脏和肌肉)和排泄载体(胆汁)中研究了趋有机性(即器官之间的Cd重分配)。为了更好地了解生理因素的重要性,探讨了肝金属硫蛋白(MT)浓度在两个物种的积累和消除动力学中的重要性。由于较早的Cd升高和较高的积累速率可以推断出,鲈鱼肌肉和肝脏中的积累更快。鲈鱼肝脏的排泄效率也比单独的更高,这是胆汁排泄量更大的结果。在肝脏中,没有MT诱导归因于金属暴露,这挑战了将MT浓度用作金属污染的生物标志物的相关性。但是,海鲈肝脏中的基础MT池总是比单独的更大。通过形成更多的Cd / MT复合物,这种特定于物种的特征可能增强了Cd胆汁的消除和向其他器官(如肌肉)的迁移。因此,就海洋鱼类中金属浓度而言,MT的基础浓度似乎在观察到的变异性中起关键作用。 (C)2018 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Environmental pollution》 |2018年第5期|462-476|共15页
  • 作者单位

    UBO, CNRS, UMR 6539, Lab Sci Environm Marin LEMAR,IRD,IFREMER, BP 70, F-29280 Plouzane, France;

    Ctr Documentat Res & Expt Accidental Water Pollut, 715 Rue Alain Colas,CS 41836, F-29218 Brest 2, France;

    UBO, CNRS, UMR 6539, Lab Sci Environm Marin LEMAR,IRD,IFREMER, BP 70, F-29280 Plouzane, France;

    Ctr Documentat Res & Expt Accidental Water Pollut, 715 Rue Alain Colas,CS 41836, F-29218 Brest 2, France;

    UBO, CNRS, UMR 6539, Lab Sci Environm Marin LEMAR,IRD,IFREMER, BP 70, F-29280 Plouzane, France;

    UBO, CNRS, UMR 6539, Lab Sci Environm Marin LEMAR,IRD,IFREMER, BP 70, F-29280 Plouzane, France;

    UBO, CNRS, UMR 6539, Lab Sci Environm Marin LEMAR,IRD,IFREMER, BP 70, F-29280 Plouzane, France;

    UBO, CNRS, UMR 6539, Lab Sci Environm Marin LEMAR,IRD,IFREMER, BP 70, F-29280 Plouzane, France;

    UBO, CNRS, UMS 3113, IUEM, F-29280 Plouzane, France;

    IFREMER, Unite Physiol Fonct Organismes Marins, LEMAR UMR 6539, Ctr Brest,Lab PFOM ARN, BP 70, F-29280 Plouzane, France;

    UBO, CNRS, UMR 6539, Lab Sci Environm Marin LEMAR,IRD,IFREMER, BP 70, F-29280 Plouzane, France;

    UBO, CNRS, UMR 6539, Lab Sci Environm Marin LEMAR,IRD,IFREMER, BP 70, F-29280 Plouzane, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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

    Metal; Trace element; Dicentrarchus labrax; Solea senegalensis; Chronic dietary exposure;

    机译:金属;痕量元素;香茅;塞内加尔茄;慢性饮食接触;
  • 入库时间 2022-08-17 13:25:48

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