首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Selenium speciation in human urine samples by LC- and CE-ICP-MS―separation and identification of selenosugars
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Selenium speciation in human urine samples by LC- and CE-ICP-MS―separation and identification of selenosugars

机译:LC-CE-ICP-MS法测定人尿中硒的形态—硒糖的分离鉴定

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Human urine samples were analysed by a reversed-phase chromatographic system and an ion-pair chromatographic system. The chromatographic system was connected to the ICP-MS either by a microconcentric nebulizer (MCN) in combination with a cyclonic spraychamber or by a modified direct injection nebulizer (MDIN). The sensitivity of the latter was better than the sensitivity of the MCN, which on the other hand was more robust for the analysis of samples with high concentrations of dissolved solids. Urine sample composition did not seem to change when urine was exposed to evaporation under nitrogen at ambient temperature and methanol extraction. A pre-concentration factor of 10 was achieved with this procedure. On occasions when a pre-concentration factor of 100 was obtained by lyophilsation and methanol extraction, at least 10 selenium compounds were separated in the urine sample. Urine samples were collected from two healthy volunteers who had been supplied with 1000 μg and 2000 μg of selenium, respectively, in the form of selenized yeast. When samples were spiked with 8 different standards, only two standards co-eluted with compounds in urine in-both chromatographic systems: the major urinary metabolite Se-methyl-N-acetylgalactosamine and Se-methyl-N-acetylglucosamine. The presence of Se-methyl-N-acetylglucosamine in urine was verified by co-migration with the standard in capillary electrophoresis after fractionation by preparative reversed-phase chromatography. Se-methyl-N-acetylglucosamine is only a minor metabolite as its concentration was less than 2% of the concentration of Se-methyl-N-acetylgalactosamine. The presence of this metabolite in urine has, to our knowledge, not been suggested before. Trimethylselenonium, selenomethionine, Se-methylselenocysteine, Se-methylselenomethionine and selenocystamine were not detected in these samples.
机译:通过反相色谱系统和离子对色谱系统分析人尿样品。色谱系统通过微同心雾化器(MCN)与旋风雾化室组合或通过改进的直接注入雾化器(MDIN)连接到ICP-MS。后者的灵敏度优于MCN的灵敏度,而MCN的灵敏度在分析高浓度溶解固体样品时更为稳定。当尿液在环境温度下的氮气和甲醇萃取条件下暴露于蒸发中时,尿液样品成分似乎没有变化。通过此程序可达到10的预浓缩系数。通过冻干和甲醇萃取获得的预浓缩因子为100的情况下,尿液样品中至少会分离出10种硒化合物。从两名健康志愿者收集尿液样本,他们分别以硒化酵母的形式提供了1000μg和2000μg硒。当样品中掺有8种不同的标准品时,两种色谱系统中的尿液中只有两种标准品与化合物共同洗脱:主要的尿代谢产物Se-甲基-N-乙酰基半乳糖胺和Se-甲基-N-乙酰基葡糖胺。通过制备型反相色谱分离后,通过与毛细管电泳中的标准品共迁移,验证了尿液中Se-甲基-N-乙酰氨基葡萄糖的存在。 Se-甲基-N-乙酰氨基葡糖胺仅是次要的代谢产物,因为其浓度小于Se-甲基-N-乙酰基半乳糖胺浓度的2%。据我们所知,尿液中不存在这种代谢物。在这些样品中未检出三甲基硒鎓,硒代蛋氨酸,硒代甲基硒代半胱氨酸,硒代甲基硒代蛋氨酸和硒代半胱胺。

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