Grape peel powder promotes intestinal barrier homeostasis in acute TNBS-colitis: A major role for dietary fiber and fiber-bound polyphenols

封堵器 结肠炎 多酚 化学 势垒函数 食品科学 纤维 生物化学 下调和上调 紧密连接 内科学 抗氧化剂 医学 细胞生物学 生物 有机化学 基因
作者
Luana Haselein Maurer,Cínthia Baú Betim Cazarin,Andréia Quatrin,Natália Machado Minuzzi,Eduarda Costa,Joseane Morari,Lı́cio A. Velloso,Raquel Franco Leal,Eliseu Rodrigues,Vivian Caetano Bochi,Mário Roberto Maróstica,Tatiana Emanuelli
出处
期刊:Food Research International [Elsevier BV]
卷期号:123: 425-439 被引量:71
标识
DOI:10.1016/j.foodres.2019.04.068
摘要

Inflammatory bowel diseases are characterized by impaired intestinal barrier function. This study aimed to evaluate the effects of grape peel powder (GPP) and its bioactive rich-fractions on the barrier function and colonic injury in a model of colitis induced by 2,4,6 trinitrobenzene sulfonic acid (TNBS). Wistar rats received diets supplemented with either GPP (8%), extractable polyphenols (EP), non-extractable polyphenols-rich fraction (NEP-F), or polyphenols-poor, fiber-rich fraction (F) from grapes at amounts equivalent to the GPP group during 15 days before and for 7 days after colitis induction. NEP-F has decreased the extension of colonic lesion but the other grape peel bioactive fractions did not protect against macroscopic or microscopic colonic damage, EP diet increased macroscopic colonic damage. GPP, EP, and NEP-F reduced claudin-2 mRNA expression, whereas GPP and F fraction increased occludin and ZO-1 mRNA expression. All experimental diets reduced the colitis-triggered increase of MMP-9 mRNA expression. Colitis reduced by 30% the production of cecal short-chain fatty acids (SCFA). GPP and NEP-F completely protected against this effect, whereas F fraction was ineffective. Only GPP and NEP-F were able to decrease the upregulation of GRP94 mRNA triggered by colitis. Dietary fiber seems to reestablish the intestinal barrier function, whereas fiber-bound phenolics were able to restore cecal metabolism to produce beneficial metabolites like SCFA and to reduce the activation of the unfolded protein response.

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