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Identification and Determination of Selenoneine 2-Selenyl-Nα Nα Nα-Trimethyl-l-Histidine as the Major Organic Selenium in Blood Cells in a Fish-Eating Population on Remote Japanese Islands

机译:日本偏远岛上以鱼为食的人群血细胞中主要有机硒中硒硒酮2-硒烯基-NαNαNα-三甲基-1-组氨酸的鉴定与测定

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摘要

Selenoneine is the major selenium compound in fish muscles, and fish appears to be an important source of selenium in the fish-eating population. Selenoneine has strong antioxidant activity and a detoxifying function against methylmercury (MeHg) toxicity. Dietary intake, bioaccumulation, and metabolism of selenoneine have not been characterized in humans. A nutritional survey was conducted in remote islands of the Kagoshima Prefecture in Japan. To evaluate the potential risks and benefits of fish consumption for health, we measured concentrations of selenoneine, total selenium, MeHg, inorganic mercury, and polyunsaturated fatty acid (LC-PUFA) in the blood of a fish-eating human population. The erythrocyte, leukocyte, and platelet residues following removal of serum (cellular fraction) contained 0.510 μg Se/g, 0.212 μg selenoneine Se/g, and 0.262 μg Se-containing proteins Se/g, whereas the serum contained 0.174 μg total Se/g. Selenoneine was highly concentrated in the cellular fraction in a manner that was dependent on subjects' frequency of fish consumption. Concentrations of selenoneine were closely correlated with concentrations of MeHg in the cellular fraction. Selenoneine is the major chemical form of selenium in the blood cells of this fish-eating human population and may be an important biomarker for selenium redox status.
机译:硒酮是鱼肉中主要的硒化合物,鱼似乎是食鱼人群中硒的重要来源。硒酮具有强大的抗氧化活性和对甲基汞(MeHg)毒性的解毒功能。硒代酮的饮食摄入,生物蓄积和代谢在人类中尚无特征。在日本鹿儿岛县的偏远岛屿进行了营养调查。为了评估食用鱼对健康的潜在风险和益处,我们测量了以鱼为食的人群血液中硒硒酮,总硒,甲基汞,无机汞和多不饱和脂肪酸(LC-PUFA)的浓度。去除血清(细胞部分)后的红细胞,白血球和血小板残留分别为0.510μgSe / g,0.212μg硒硒酸Se / g和0.262μgSe含硒蛋白/ g,而血清总Se / 0.174μg G。硒硒酸高度集中于细胞部分,其方式取决于受试者的鱼类食用频率。硒酮浓度与细胞级分中的MeHg浓度密切相关。硒酮是该鱼类食用人群血细胞中硒的主要化学形式,并且可能是硒氧化还原状态的重要生物标志物。

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