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首页> 外文期刊>International Journal of Food Sciences and Nutrition >Characteristic hydrolyzing of megalosaccharide by human salivary alpha-amylase and small intestinal enzymes, and its bioavailability in healthy subjects
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Characteristic hydrolyzing of megalosaccharide by human salivary alpha-amylase and small intestinal enzymes, and its bioavailability in healthy subjects

机译:人唾液α-淀粉酶和小肠酶对大糖的特征水解及其在健康受试者中的生物利用度

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摘要

The digestibility of Megalosaccharide (R) (newly developed carbohydrate comprising alpha-1,4-glucosaccharide) was investigated in vitro and in vivo. Isomaltosyl-megalosaccharide (R) (IMS) and nigerosyl-megalosaccharide (R) (NMS) contain 20% and 50% of the megalosaccharide fraction (degree of polymerization (DP) 10-35), respectively. IMS was hydrolyzed readily by alpha-amylase to oligosaccharides (DP <= 7), and a small amount of glucose was produced from oligosaccharides by small intestinal enzymes (SIEs). NMS was partially hydrolyzed by alpha-amylase to oligosaccharides, and a small amount of glucose produced by SIEs. When IMS and NMS were treated by SIEs after treatment with human saliva alpha-amylase for a few minutes, IMS and NMS were hydrolyzed readily to glucose. Plasma levels of glucose and insulin upon ingestion of 50 g of IMS or NMS were elevated the same as those for 50 g of glucose, and breath hydrogen was not excreted. These results suggest that IMS and NMS are digestible carbohydrates.
机译:在体外和体内研究了巨糖(R)(新开发的包含α-1,4-葡萄糖的碳水化合物)的消化率。异麦芽糖基巨糖(R)(IMS)和黑麦芽糖基巨糖(R)(NMS)分别包含20%和50%的巨糖馏分(聚合度(DP)10-35)。 IMS容易被α-淀粉酶水解成寡糖(DP <= 7),并且通过小肠酶(SIE)从寡糖中产生了少量的葡萄糖。 NMS被α-淀粉酶部分水解为寡糖,SIE产生少量葡萄糖。当用人唾液α-淀粉酶处理几分钟后,通过SIE对IMS和NMS进行处理时,IMS和NMS容易水解为葡萄糖。摄入50克IMS或NMS时,血浆葡萄糖和胰岛素的水平与摄入50克葡萄糖时的水平相同,并且没有排出呼吸氢。这些结果表明IMS和NMS是可消化的碳水化合物。

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