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Effects of DeBDE and PCB-126 on Hepatic Concentrations of PBDEs and Methoxy-PBDEs in Atlantic Tomcod

机译:DeBDE和PCB-126对大西洋Tomcod中PBDEs和甲氧基-PBDEs肝脏浓度的影响

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摘要

The biotransformation of high bromosubstituted poly-brominated diphenyl ethers (PBDEs)congeners contained in a commercial deca mixture (DeBDE)is of environmental concern because it might lead to the increase of toxic low brominated PBDEs in biota.A few studies have reported that freshwater fish dietary exposed to DeBDE or its main constituent,decabrominated PBDE congener (BDE-209),had their tissues enriched with PBDEs not initially present in fish or feed.In the present study,Atlantic tomcod (Microgadus tomcod)were intraperitoneally (IP)injected with DeBDE to assess hepatic concentration changes of PBDEs and methoxy polybrominated diphenyl ethers (MeO-PBDEs)in a marine fish species.Tomcod were also IP injected with polychlorinated biphenyl (PCB)-126 to evaluate the impact of cytochrome P4501A (CYP1A)induction on the biotransformation of injected PBDEs contained in DeBDE and PBDEs initially present in fish.Besides BDE-209,concentrations of BDE-203 and three other unidentified octabrominated PBDEs and the nonabrominated PBDEs (BDE-206,-207,and -208)were enriched in the liver of fish injected with DeBDE.All these PBDE congeners,essentially absent in control fish,were identified as impurities in DeBDE,and,thus,their presence could not be attributed exclusivelyto biotransformation.Despite a 4.3 times increase of EROD activity in the liver of tomcod injected with both PCB-126 and DeBDE,compared to DeBDE alone,no further increases of PBDE hepatic concentrations were observed.However,depleted concentrations of BDE-17 (x 1.5)and 6-Me0-BDE-47 (x 1.4)were found in fish IP injected with DeBDE compared to control fish,likely due to activated hepatic metabolic enzymes other than CYP1A.Fish injected with PCB-126 showed an even more significant depletion of BDE-17 hepatic concentrations (x 3.5)than the one associated with the DeBDE treatment and a significantly lower proportion of fish with quantifiable concentrations of BDE-203.Thus,CYP1A inducers can promote the biotransformation of PBDEs in fish liver.This study shows that exposure of fish to DeBDE is expected to result in the enrichment of high brominated PBDEs in fish liver and that metabolic activities in fish can affect their PBDE bioaccumulation pattern and possibly the toxicity of PBDEs to fish.
机译:商业化十足混合物(DeBDE)中所含的高溴取代多溴二苯醚(PBDEs)同源物的生物转化引起环境关注,因为它可能导致生物区系中有毒的低溴化PBDEs增加。一些研究报告说,淡水鱼暴露于DeBDE或其主要成分,十溴化PBDE同源物(BDE-209)的饮食中,其组织中富含最初不存在于鱼类或饲料中的PBDEs。在本研究中,腹膜内(IP)注射了腹腔注射Tomcod(Microgadus tomcod)。用DeBDE评估海水鱼类中PBDEs和甲氧基多溴联苯醚(MeO-PBDEs)的肝浓度变化。还给Tomcod腹膜内注射多氯联苯(PCB)-126,以评估细胞色素P4501A(CYP1A)诱导对肝脏的影响注入的多溴二苯醚和最初存在于鱼类中的多溴二苯醚的生物转化。除BDE-209外,BDE-203的浓度和其他三种身份不明的八溴注射DeBDE的鱼类的肝脏中富含可食用的PBDEs和未溴化的PBDEs(BDE-206,-207和-208)。所有这些PBDE同源物(对照鱼中基本不存在)被鉴定为DeBDE中的杂质,因此尽管单独注射DeBDE相比,注射PCB-126和DeBDE的tomcod肝脏的EROD活性增加了4.3倍,但未观察到PBDE肝浓度的进一步增加。与对照鱼相比,注射DeBDE的鱼IP中发现了BDE-17(x 1.5)和6-Me0-BDE-47(x 1.4)的浓度,这可能是由于CYP1A以外的肝代谢酶被激活引起的。 126表明,BDE-17肝脏的耗竭甚至比与DeBDE处理有关的肝脏耗竭更为显着(x 3.5),并且具有可定量BDE-203浓度的鱼类比例显着降低。因此,CYP1A诱导剂可以促进生物转化。这项研究表明,将鱼暴露于DeBDE中有望导致鱼肝中高溴化PBDEs的富集,鱼中的代谢活动会影响其PBDEs的生物积累模式,并可能影响PBDEs对鱼的毒性。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第10期|p.3211-3216|共6页
  • 作者单位

    Department of Fisheries and Oceans,Maurice Lamontagne Institute,P.O.Box 1000,Mont-Joli,Quebec,Canada G5H 3Z4;

    Department of Fisheries and Oceans,Maurice Lamontagne Institute,P.O.Box 1000,Mont-Joli,Quebec,Canada G5H 3Z4;

    Department of Fisheries and Oceans,Maurice Lamontagne Institute,P.O.Box 1000,Mont-Joli,Quebec,Canada G5H 3Z4;

    Department of Fisheries and Oceans,Maurice Lamontagne Institute,P.O.Box 1000,Mont-Joli,Quebec,Canada G5H 3Z4;

  • 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 环境化学;
  • 关键词

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