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Polychlorinated Biphenyls and Biotransformation Enzymes in Three Species of Sea Turtles from the Baja California Peninsula of Mexico

机译:墨西哥下加利福尼亚半岛的三种海龟中的多氯联苯和生物转化酶

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摘要

Concentrations of polychlorinated biphenyls (PCBs) as well as the expression patterns of cytochrome P450 (CYP) enzymes and glutathione-S-transferase (GST) activities were measured in livers of loggerhead (Caretta caretta), green (Chelonia mydas), and olive ridley (Lepidocheyls olivacea) sea turtles from the Baja California peninsula of Mexico. The mean concentrations of total PCBs were 18.1, 10.5, and 15.2 ng/g wet weight (ww) respectively for the three species and PCB 153 was the dominant congener in all samples. Total PCB concentrations were dominated by penta- and hexa-chlorinated biphenyls. The mean estimated TEQs were 42.8, 22.9, and 10.4 pg/g (ww) for loggerhead, green, and olive ridley, respectively, and more than 70% was accounted for by non-ortho PCBs. Western blots revealed the presence of hepatic microsomal proteins that cross-reacted with anti-CYP2K1 and anti-CYP3A27 antibodies but not with anti-CYP1A antibody. There were no significant differences in GST activities between species. Grouping congeners based on structure–activity relationships for CYP isoenzymes suggested limited activity of CYP1A contribution to PCB biotransformation in sea turtles. These results suggest potential accumulation of PCBs that are CYP1A substrates and provide evidence for biotransformation capacity, which differs from known animal models, highlighting the need for further studies in reptiles, particularly those threatened with extinction.
机译:测量了鱼(Caretta caretta),绿色(Chelonia mydas)和Olive ridley肝脏中的多氯联苯(PCBs)浓度以及细胞色素P450(CYP)酶和谷胱甘肽S-转移酶(GST)的表达模式。 (Lepidocheyls olivacea)来自墨西哥下加利福尼亚半岛的海龟。这三种物质的总PCB的平均浓度分别为18.1、10.5和15.2ng / g湿重(ww),PCB 153是所有样品中的主要同源物。五氯联苯和六氯联苯占多氯联苯的总浓度。 logger,绿色和橄榄色的平均估计TEQs分别为42.8、22.9和10.4 pg / g(ww),并且超过70%的非传统PCB占TEQs。 Western印迹显示存在与抗CYP2K1和抗CYP3A27抗体交叉反应但未与抗CYP1A抗体交叉反应的肝微粒体蛋白。物种之间的GST活性没有显着差异。根据CYP同工酶的构效关系对同类物进行分组表明,CYP1A对海龟中PCB生物转化的贡献有限。这些结果表明,作为CYP1A底物的PCB可能会积累,并提供了生物转化能力的证据,这与已知的动物模型不同,这突出表明有必要对爬行动物,尤其是那些濒临灭绝的爬行动物进行进一步研究。

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