School of Ocean Sciences, China University of Geosciences (Beijing), Beijing 100083, China.
Division of Chemical Metrology and Analytical Science, National Institute of Metrology, Beijing 100029, China.
Molecules. 2024 Jan 1;29(1):235. doi: 10.3390/molecules29010235.
Selenium-enriched yeast possesses the unique ability of transforming chemical selenium, such as sodium selenite, into a biologically active form, which mitigates its toxic effects on the human body. The transformation product of this process, selenomethionine, can be safely and effectively absorbed and utilized by the human body; hence, it has been spiked into a selenium-enriched supplement. This study employs two distinct measurement strategies to determine the selenomethionine content in two candidate reference materials, a selenium-enriched yeast powder and supplement, using both organic and inorganic mass spectrometry. The concentrations of selenomethionine in the selenium-enriched yeast were determined using HPLC-ICP-MS and HPLC- ESI-MS/MS, with mass fractions measured at 718 mg SeMet kg and 715 mg SeMet kg, respectively. Notably, both methods yielded consistent results for the selenium supplement, with a selenomethionine mass fraction of 59 mg SeMet kg. Ultimately, the certified values of these candidate reference materials were determined as 716 mg kg and 59 mg SeMet kg with expanded uncertainties of 36 mg SeMet kg ( = 2) and 5 mg SeMet kg ( = 2), respectively. The development of these candidate reference materials serves as a valuable reference for diverse methods aiming to determine the value of organic selenium speciation in complex food substrates.
富硒酵母具有将化学硒(如亚硒酸钠)转化为生物活性形式的独特能力,从而减轻其对人体的毒性作用。这一过程的转化产物硒代蛋氨酸可以被人体安全有效地吸收和利用;因此,它已被添加到富硒补充剂中。本研究采用两种不同的测量策略,使用有机和无机质谱法,分别对两种候选参比材料(富硒酵母粉和补充剂)中的硒代蛋氨酸含量进行了测定。使用 HPLC-ICP-MS 和 HPLC-ESI-MS/MS 测定富硒酵母中的硒代蛋氨酸浓度,质量分数分别为 718mg SeMet kg 和 715mg SeMet kg。值得注意的是,这两种方法对硒补充剂的结果一致,硒代蛋氨酸的质量分数为 59mg SeMet kg。最终,这些候选参比材料的认证值分别确定为 716mg kg 和 59mg SeMet kg,扩展不确定度分别为 36mg SeMet kg( = 2)和 5mg SeMet kg( = 2)。这些候选参比材料的开发为旨在确定复杂食物基质中有机硒形态价值的多种方法提供了有价值的参考。