首页> 外文期刊>Journal of Agricultural and Food Chemistry >Structural Stability and Prebiotic Properties of Resistant Starch Type 3 Increase Bile Acid Turnover and Lower Secondary Bile Acid Formation
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Structural Stability and Prebiotic Properties of Resistant Starch Type 3 Increase Bile Acid Turnover and Lower Secondary Bile Acid Formation

机译:抗性3型淀粉的结构稳定性和益生元特性增加了胆汁酸的转化率并降低了次生胆汁酸的形成

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Microbial metabolism is essential in maintaining a healthy mucosa in the large bowel,preferentially through butyrate specific mechanisms.This system depends on starch supply.Two structurally different resistant starches type 3(RS3)have been investigated with respect to their resistance to digestion,fermentability,and their effects on the composition and turnover of bile acids in rats.RSA(a mixture of retrograded maltodextrins and branched high molecular weight polymers),which is more resistant than RSB(a retrograded potato starch),increased the rate of fermentation accompanied by a decrease of pH in cecum,colon,and feces.Because they were bound to RS3,less bile acids were reabsorbed,resulting in a higher turnover through the large bowel.Because of the rise of volume,the bile acid level was unchanged and the formation of secondary bile acids was partly suppressed.The results proved a strong relation between RS3,short chain fatty acid production,and microflora.However,butyrate specific benefits are only achieved by an intake of RS3 that result in good fermentation properties,which depend on the kind of the resistant starch structures.
机译:微生物代谢对于维持大肠的黏膜健康至关重要,这主要是通过丁酸特有的机制。该系统取决于淀粉的供应。已经研究了两种结构不同的抗性淀粉3(RS3),它们具有抗消化性,发酵性,及其对大鼠胆汁酸组成和代谢的影响。RSA(一种还原麦芽糖糊精和支链高分子量聚合物的混合物)比RSB(一种还原马铃薯淀粉)具有更强的抵抗力,提高了发酵速率并伴有盲肠,结肠和粪便的pH降低。由于它们与RS3结合,因此胆汁酸的吸收减少,通过大肠导致更高的周转率。由于体积的增加,胆汁酸水平没有改变,并且形成结果表明,RS3,短链脂肪酸的产生与微生物区系之间存在很强的关系。只能通过摄入具有良好发酵特性的RS3来获得益处,这取决于抗性淀粉结构的种类。

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