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从胡萝卜膳食纤维中释放和代谢结合多酚及其在体外消化和结肠发酵中的潜在活性。

Release and metabolism of bound polyphenols from carrot dietary fiber and their potential activity in in vitro digestion and colonic fermentation.

机构信息

State Key Laboratory of Food Science and Technology, China-Canada Joint Lab of Food Science and Technology (Nanchang), Nanchang University, 235 Nanjing East Road, Nanchang 330047, China.

出版信息

Food Funct. 2020 Jul 1;11(7):6652-6665. doi: 10.1039/d0fo00975j. Epub 2020 Jul 13.

Abstract

Dietary fiber is a carrier of abundant polyphenols and the potential benefits have attracted increasing attention. In this study, we performed in vitro simulated digestion in the oral, gastric and intestinal phases, and colonic fermentation with human fecal microbes, to explore the release and metabolism of bound polyphenols from carrot dietary fiber (CDF) and the potential activity. The results indicate that the bound polyphenols released by the fecal fermentation process (30.43%) from CDF were higher than in the digestion process (0.89%); 26 polyphenols and their catabolites were detected and the microbial pathways of primary polyphenols were proposed. The significant disintegration of the sheet-like structure of CDF after the in vitro fermentation was comparable to that of the digestion treatment. The released polyphenols exhibited antioxidant capacity and α-glucosidase inhibitory activity. The microbe community structure was regulated by the fecal-fermented CDF through decreasing the Firmicutes to Bacteroidetes ratio, improving the relative abundance (RA) of the beneficial microbiota and suppressing the RA of various harmful microbiota. Overall, this study suggests that the bound polyphenols might exert potential benefits in the gastrointestinal and colonic health of the CDF.

摘要

膳食纤维是丰富多酚类物质的载体,其潜在益处引起了越来越多的关注。本研究通过体外模拟口腔、胃和肠道消化以及与人体粪便微生物的结肠发酵,探索了胡萝卜膳食纤维(CDF)中结合型多酚的释放和代谢及其潜在活性。结果表明,粪便发酵过程中从 CDF 释放的结合型多酚(30.43%)高于消化过程(0.89%);检测到 26 种多酚及其代谢物,并提出了主要多酚的微生物途径。体外发酵后 CDF 片状结构的显著崩解与消化处理相当。释放的多酚具有抗氧化能力和α-葡萄糖苷酶抑制活性。发酵后的 CDF 通过降低厚壁菌门到拟杆菌门的比例、提高有益微生物的相对丰度(RA)和抑制各种有害微生物的 RA 来调节微生物群落结构。总体而言,本研究表明 CDF 中的结合型多酚可能对胃肠道和结肠健康发挥潜在益处。

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