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  • 标题:PCB-Related Alteration of Thyroid Hormones and Thyroid Hormone Receptor Gene Expression in Free-Ranging Harbor Seals (Phoca vitulina)
  • 作者:Maki Tabuchi ; Nik Veldhoen ; Neil Dangerfield
  • 期刊名称:Environmental Health Perspectives
  • 印刷版ISSN:0091-6765
  • 电子版ISSN:1552-9924
  • 出版年度:2006
  • 卷号:114
  • 期号:7
  • 页码:1024-1031
  • DOI:10.1289/ehp.8661
  • 语种:English
  • 出版社:OCR Subscription Services Inc
  • 摘要:Persistent organic pollutants are environmental contaminants that, because of their lipophilic properties and long half-lives, bioaccumulate within aquatic food webs and often reach high concentrations in marine mammals, such as harbor seals ( Phoca vitulina ). Exposure to these contaminants has been associated with developmental abnormalities, immunotoxicity, and reproductive impairment in marine mammals and other high-trophic-level wildlife, mediated via a disruption of endocrine processes. The highly conserved thyroid hormones (THs) represent one vulnerable endocrine end point that is critical for metabolism, growth, and development in vertebrates. We characterized the relationship between contaminants and specific TH receptor ( TR ) gene expression in skin/blubber biopsy samples, as well as serum THs, from free-ranging harbor seal pups ( n = 39) in British Columbia, Canada, and Washington State, USA. We observed a contaminant-related increase in blubber TR- α gene expression [total polychlorinated biphenyls (∑PCBs); r = 0.679; p < 0.001] and a concomitant decrease in circulating total thyroxine concentrations (∑PCBs; r = −0.711; p < 0.001). Consistent with results observed in carefully controlled laboratory and captive feeding studies, our findings suggest that the TH system in harbor seals is highly sensitive to disruption by environmental contaminants. Such a disruption not only may lead to adverse effects on growth and development but also could have important ramifications for lipid metabolism and energetics in marine mammals.
  • 关键词:endocrine disruption; gene expression; marine mammal; PCBs; persistent organic pollutant; polychlorinated biphenyls; POP; seal; thyroid; thyroid hormone receptor
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