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Novel physiological function of fructooligosaccharides

机译:果寡糖的新型生理功能

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Two key properties of short chain fructooligosaccharides (sc-FOS) which lead to physiological functions are indigestibility in the small intestine and fermentability in the colon. Sc-FOS is converted into short chain fatty acids (SCFAs) by intestinal bacteria in the colon and absorbed. Through the metabolic pathway, sc-FOS improves gastrointestinal (GI) condition such as relief from constipation, formation of preferable intestinal microflora and intestinal immunomodulation those are known as prebiotics' function. Besides improvement of GI condition, dietary sc-FOS influences on calcium and magnesium absorption in the colon. A major mineral absorption site is the small intestine, but the colon also works as a Ca and Mg absorption site with an aid of SCFAs made from sc-FOS. Furthermore dietary sc-FOS influences on bioavailability of soy-isoflavones. Plasma and urinal concentration of Genistein and Daidzein, aglycones of Daidzin and Genistin, are higher in the rat fed with sc-FOS than the control rat. An additive effect of dietary isoflavone and sc-FOS was observed on the bone mineral density in OVX mice and moreover sc-FOS increased ceacal β-glycosidase activity and equol production. These results suggest that FOS increase the bioavailability of isoflavones.
机译:短链果糖的两种关键特性导致生理功能的含量在结肠中的小肠和发酵性中是消化性。 SC-FOS通过结肠中的肠细菌转化为短链脂肪酸(SCFA)并被吸收。通过代谢途径,SC-FOS改善了胃肠道(GI)条件,例如浮雕易于便秘,形成优选的肠道微生物和肠免疫调节,称为益生元的功能。除了提高GI条件,膳食SC-FOS对结肠中的钙和镁吸收的影响。主要的矿物吸收位点是小肠,但是结肠还用SC-FOS制成的SCFA作为Ca和Mg吸收部位。此外,膳食SC-FOS对大豆异黄酮的生物利用度影响。 Genistein和Daidzein的血浆和小便池,蛋白质和甘氨酸的糖基,含有SC-FOS的大鼠比对照大鼠更高。在OVX小鼠的骨矿物质密度观察到膳食异黄酮和SC-FOS的添加剂效果,而且SC-FOS增加了CEACALβ-糖苷酶活性和等酚的生产。这些结果表明FOS增加异黄酮的生物利用度。

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