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Methylmercury and selenium in vitro effects on harbor seal (Phoca vitulina) lymphocytes : a multidisciplinary approach

机译:甲基汞和硒对斑海豹(Phoca vitulina)淋巴细胞的体外影响:多学科方法

摘要

Methylmercury (MeHg) bioaccumulates along the food web, leading to the highest levels in tissues of predatory species. It constitutes the predominant form present in the blood of marine mammals. The blood cells, including the immune cells, are therefore exposed to the toxic properties of that chemical. Nevertheless, selenium (Se) is an essential element absorbed concomitantly to MeHg which seems to modulate this toxicity. The goal of this study is to evaluate the immunotoxicity of MeHg on the harbor seal (Phoca vitulina) T lymphocytes, highly important in the adaptive immune response, and to investigate the modulating effect of Se on that toxicity. In parallel, the concentrations of MeHg, total mercury (T-Hg) and Se are determined in free-ranging harbour seal blood in order to follow their contamination levels.The T lymphocytes were isolated from the whole blood, exposed to various MeHg and Se concentrations and the exposure effects were estimated by functional tests including the evaluation of viability, proliferation, metabolic activity, DNA and protein synthesis, and by morphological analysis by transmission electron microscopy.The mean T-Hg concentration was 172 ± 143 µg/l of whole blood. The T lymphocytes cultures in vitro displayed a decreasing number of viable cells with increasing concentrations of MeHg, and numerous ultrastructural defects. The cells exposed to MeHg notably displayed distortion of the plasmic membrane, nucleus fragmentations, chromatin compaction, swelling mitochondrias and cytoplasmic vacuolisations.Those results highlighted various immunotoxic effects of MeHg, both at the functional and ultrastructural levels. The antagonistic role of Se on MeHg immunotoxicity is discussed.
机译:甲基汞(MeHg)沿食物网生物富集,导致捕食物种组织中的最高含量。它构成了海洋哺乳动物血液中的主要形式。因此,包括免疫细胞在内的血细胞暴露于该化学物质的毒性。然而,硒是与MeHg一起吸收的必需元素,而MeHg似乎可以调节这种毒性。这项研究的目的是评估MeHg对斑海豹(Phoca vitulina)T淋巴细胞的免疫毒性,这在适应性免疫反应中非常重要,并研究Se对这种毒性的调节作用。同时,在自由放养的海豹血液中测定MeHg,总汞(T-Hg)和Se的浓度,以跟踪其污染水平。从全血中分离出T淋巴细胞,暴露于各种MeHg和Se T-Hg的平均浓度为172±143 µg / l,通过功能性测试进行评估,包括存活力,增殖,代谢活性,DNA和蛋白质合成的评估,以及透射电子显微镜的形态分析。血液。体外T淋巴细胞培养显示,随着MeHg浓度的增加,活细胞数量减少,并且存在许多超微结构缺陷。暴露于MeHg的细胞尤其表现出质膜变形,细胞核碎裂,染色质紧实,线粒体肿胀和细胞质空泡化。这些结果突出了MeHg在功能和超微结构水平上的各种免疫毒性作用。讨论了硒对MeHg免疫毒性的拮抗作用。

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