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齿鲸肌肉中的汞形态与硒

Mercury speciation and selenium in toothed-whale muscles.

作者信息

Sakamoto Mineshi, Itai Takaaki, Yasutake Akira, Iwasaki Toshihide, Yasunaga Genta, Fujise Yoshihiro, Nakamura Masaaki, Murata Katsuyuki, Chan Hing Man, Domingo José L, Marumoto Masumi

机构信息

National Institute for Minamata Disease, Hama 4058-18, Minamata, Kumamoto 867-0008, Japan.

Ehime University, Bunkyo 2-5, Matsuyama 790-8755, Japan.

出版信息

Environ Res. 2015 Nov;143(Pt A):55-61. doi: 10.1016/j.envres.2015.09.010. Epub 2015 Oct 2.

DOI:10.1016/j.envres.2015.09.010
PMID:26436307
Abstract

Mercury accumulates at high levels in marine mammal tissues. However, its speciation is poorly understood. The main goal of this investigation was to establish the relationships among mercury species and selenium (Se) concentrations in toothed-whale muscles at different mercury levels. The concentrations of total mercury (T-Hg), methylmercury (MeHg), inorganic mercury (I-Hg) and Se were determined in the muscles of four toothed-whale species: bottlenose dolphins (n=31), Risso's dolphins (n=30), striped dolphins (n=29), and short-finned pilot whales (n=30). In each species, the MeHg concentration increased with increasing T-Hg concentration, tending to reach a plateau. In contrast, the proportion of MeHg in T-Hg decreased from 90-100% to 20-40%. The levels of T-Hg and Se showed strong positive correlations. Se/I-Hg molar ratios rapidly decreased with the increase of I-Hg and reached almost 1 in all species. These results suggested that the demethylated MeHg immediately formed Se/I-Hg equimolar complex of mercury selenide (HgSe) in their muscles. In addition, an X-ray absorption fine structure analysis (XAFS) of a bottlenose dolphin muscle confirmed that the dominant chemical form of the Se/I-Hg equimolar complex was HgSe. HgSe was mainly localized in cells near the endomysium using electron probe microanalysis (EPMA). These results suggested that the demethylated MeHg finally deposits within muscle cells of bottlenose dolphin as an inert HgSe.

摘要

汞在海洋哺乳动物组织中大量蓄积。然而,其形态却鲜为人知。本研究的主要目的是确定不同汞含量水平下齿鲸肌肉中汞形态与硒(Se)浓度之间的关系。测定了四种齿鲸肌肉中的总汞(T-Hg)、甲基汞(MeHg)、无机汞(I-Hg)和硒的浓度,这四种齿鲸分别是宽吻海豚(n = 31)、里氏海豚(n = 30)、条纹海豚(n = 29)和短鳍领航鲸(n = 30)。在每个物种中,MeHg浓度随T-Hg浓度的增加而升高,趋于达到一个平台期。相反,MeHg在T-Hg中的比例从90 - 100%降至20 - 40%。T-Hg和Se的水平呈现出强正相关。Se/I-Hg摩尔比随着I-Hg的增加而迅速下降,在所有物种中几乎都达到1。这些结果表明,脱甲基的MeHg在其肌肉中立即形成了汞硒(HgSe)的Se/I-Hg等摩尔络合物。此外,对宽吻海豚肌肉进行的X射线吸收精细结构分析(XAFS)证实,Se/I-Hg等摩尔络合物的主要化学形式是HgSe。利用电子探针微分析(EPMA)发现HgSe主要定位于肌内膜附近的细胞中。这些结果表明,脱甲基的MeHg最终以惰性的HgSe形式沉积在宽吻海豚的肌肉细胞内。

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