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首页> 外文期刊>International Journal of Food Sciences and Nutrition >Bioavailability of selenium from selenium-enriched green onions (Allium fistulosum) and chives (Allium schoenoprasum) after 'in vitro' gastrointestinal digestion.
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Bioavailability of selenium from selenium-enriched green onions (Allium fistulosum) and chives (Allium schoenoprasum) after 'in vitro' gastrointestinal digestion.

机译:在“体外”胃肠道消化后,富硒大葱(葱属葱)和细香葱(葱属葱)中硒的生物利用度。

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摘要

Three sample preparation methods - proteolysis to determine the initial species distribution, and an in vitro gastric and gastrointestinal digestion to assess the bioavailability of selenium - were applied to extract the selenium from selenized green onion and chive samples. Ion exchange chromatography was coupled to a high-performance liquid chromatography-ICP-MS system to analyze the selenium species of Allium samples. The difference in the selenium accumulation capability of green onions and chives was significant. Chive accumulated a one order of magnitude higher amount of selenium than did green onion. After proteolysis of both types of Allium plants, high amounts of organic selenium species such as MeSeCys, SeCys2 and SeMet became accessible. In the case of Se(VI)-enrichment, selenate was the main species in the proteolytic extract. After simulating the human digestion, the organic species were just slightly bioavailable compared with the results from proteolysis. The inorganic selenium content of the selenized samples increased significantly and SeOMet could be detected from the extracts. As an effect of the significant pH change between the gastric and the intestinal tracts, two oxidation processes took place: selenite oxidized to selenate, while SeMet oxidized to SeOMet..
机译:三种样品制备方法-通过蛋白水解来确定初始物种分布,以及通过体外胃和胃肠道消化来评估硒的生物利用度-被用于从硒化葱和细香葱样品中提取硒。离子交换色谱与高效液相色谱-ICP-MS系统耦合以分析葱属样品中的硒种类。葱和细香葱的硒积累能力差异很大。韭菜比硒葱积累的硒含量高一个数量级。对两种类型的葱属植物进行蛋白水解后,即可获得大量的有机硒物种,例如MeSeCys,SeCys2和SeMet。在富集硒(VI)的情况下,硒酸盐是蛋白水解提取物中的主要物种。模拟人体消化后,与蛋白水解的结果相比,有机物的生物利用度略高。硒化样品中的无机硒含量显着增加,并且可以从提取物中检测出SeOMet。由于胃和肠道之间的pH值发生显着变化,因此发生了两个氧化过程:亚硒酸盐氧化成硒酸盐,而SeMet氧化成SeOMet。

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