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Effects of methyl-, phenyl-, ethylmercury and mercurychlorid on immune cells of harbor seals (Phoca vitulina)
作者姓名:Antje Kakuschke  Elizabeth Valentine-Thon  Sonja Fonfar  Katharina Kramer  Andreas Prange
作者单位:Antje Kauschke,Sonja Fonfara,Katharina Kramer,Andreas Prange(GKSS Research Center,Institute for Coastal Research,Max-Planck-Strasse 1,21502 Geesthacht,Germany);Elizabeth Valentine-thon(Department of Immunology,Laboratory Center Bremen,Friedrich-Karl-Strasse 22,28205 Bremen,Germany) 
基金项目:The authors wish to thank Bianca Sch¨uttpelz and Thomas Weigel from the Laboratory Center Bremen. Thank you to all participants of the seal catches (e.g., Research and Technology Center B¨usum, Seal Center Friedrichskoog, Amt f¨ur l¨andliche R¨aume, Schle
摘    要:

关 键 词:免疫细胞  斑海豹  乙基汞  人淋巴细胞  转化生长因子β  汞化合物  海洋哺乳动物  免疫系统
收稿时间:1/8/2009 12:00:00 AM
修稿时间:11 August 2009

Effects of methyl-, phenyl-, ethylmercury and mercurychlorid on immune cells of harbor seals (Phoca vitulina)
Antje Kakuschke,Elizabeth Valentine-Thon,Sonja Fonfar,Katharina Kramer,Andreas Prange.Effects of methyl-, phenyl-, ethylmercury and mercurychlorid on immune cells of harbor seals (Phoca vitulina)[J].Journal of Environmental Sciences,2009,21(12):1716-1721.
Authors:Antje Kakuschke  Elizabeth Valentine-Thon  Sonja Fonfar  Katharina Kramer and Andreas Prange
Institution:1. GKSS Research Center,Institute for Coastal Research,Max-Planck-Strasse 1,21502 Geesthacht,Germany
2. Department of Immunology,Laboratory Center Bremen,Friedrich-Karl-Strasse 22,28205 Bremen,Germany
Abstract:Mercury (Hg) is present in the marine environment as a natural metal often enhanced through human activities. Depending on its chemical form, Hg can cause a wide range of immunotoxic e ects. In this study, the influence of methyl-, ethyl- and phenylmercury as well as mercurychloride on immune functions was evaluated. Two parameters of cellular immunity, proliferation and mRNA cytokine expression of interleukin-2, -4, and transforming growth factor , were investigated in harbor seal lymphocytes after in vitro exposure to Hg compounds. While all Hg compounds had a suppressive e ect on proliferation, di erences between juvenile and adult seals were found. Lymphocytes from juveniles showed a higher susceptibility to the toxic e ect compared to lymphocytes from adults. Furthermore, the degree of inhibition of proliferation varied among the four Hg compounds. The organic compounds seem to be more immunotoxic than the inorganic compound. Finally, for the cytokine expression of methylmercury-incubated lymphocytes, timedependent changes were observed, but no dose-dependency was found. Marine mammals of the North Sea are burdened with Hg, and lymphocytes of harbor seals may be functionally impaired by this metal. The present in vitro study provides baseline information for future studies on the immunotoxic e ects of Hg on cellular immunity of harbor seals.
Keywords:harbor seal  mercury  lymphocyte proliferation  cytokine expression  North Sea
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