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Environmental pollution (Barking, Essex : 1987). 2010 Dec;158(12):3527-33. doi: 10.1016/j.envpol.2010.08.021 Q17.32025

Dietary exposure of juvenile common sole (Solea solea L.) to polybrominated diphenyl ethers (PBDEs): Part 2. Formation, bioaccumulation and elimination of hydroxylated metabolites

亚口鱼(Solea soleaa)幼鱼接触多溴联苯醚(PBDEs)的饮食暴露:第2部分. 羟基代谢物的生成、生物积累和消除 翻译改进

C Munschy  1, K Héas-Moisan, C Tixier, G Pacepavicius, M Alaee

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  • 1 Institut Français de Recherche pour l'Exploitation de la Mer (IFREMER), Laboratory of Biogeochemistry of Organic Contaminants, Rue de l'Ile d'Yeu, BP 21105, 44311 Nantes, Cedex 3, France. cmunschy@ifremer.fr
  • DOI: 10.1016/j.envpol.2010.08.021 PMID: 20864231

    摘要 Ai翻译

    The uptake, elimination and transformation of six PBDE congeners (BDE-28, -47, -99, -100, -153, -209) were studied in juvenile common sole (Solea solea L.) exposed to spiked contaminated food over a three-month period, and then depurated over a five-month period. Methoxylated (MeO-) and hydroxylated (OH-) PBDEs were determined in fish plasma exposed to PBDEs and compared to those obtained in control fish. While all MeO- and some OH- congeners identified in fish plasma were found to originate from non-metabolic sources, several OH- congeners, i.e., OH-tetraBDEs and OH-pentaBDEs, were found to originate from fish metabolism. Among these, 4'-OH-BDE-49 was identified as a BDE-47 metabolite. Congener 4'-OH-BDE-101, identified here for the first time, may be the result of BDE-99 metabolic transformation. Our results unequivocally showed that PBDEs are metabolised in juvenile sole via the formation of OH- metabolites. However, this was not a major biotransformation route compared to biotransformation through debromination.

    Keywords:dietary exposure; polybrominated diphenyl ethers; hydroxylated metabolites

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    期刊名:Environmental pollution

    缩写:ENVIRON POLLUT

    ISSN:0269-7491

    e-ISSN:1873-6424

    IF/分区:7.3/Q1

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    Dietary exposure of juvenile common sole (Solea solea L.) to polybrominated diphenyl ethers (PBDEs): Part 2. Formation, bioaccumulation and elimination of hydroxylated metabolites