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饮食干预的治疗潜力:基于色氨酸衍生物——吲哚丙酸对代谢紊乱的作用机制

The therapeutic potential of dietary intervention: based on the mechanism of a tryptophan derivative-indole propionic acid on metabolic disorders.

作者信息

Niu Ben, Pan Tong, Xiao Yue, Wang Hongchao, Zhu Jinlin, Tian Fengwei, Lu Wenwei, Chen Wei

机构信息

State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi, China.

School of Food Science and Technology, Jiangnan University, Wuxi, China.

出版信息

Crit Rev Food Sci Nutr. 2025;65(9):1729-1748. doi: 10.1080/10408398.2023.2299744. Epub 2024 Jan 8.

Abstract

Tryptophan (TRP) contributes to individual immune homeostasis and good condition three complex metabolism pathways (5-hydroxytryptamine (5-HT), kynurenine (KP), and gut microbiota pathway). Indole propionic acid (IPA), one of the TRP derivatives of the microbiota pathway, has raised more attention because of its impact on metabolic disorders. Here, we retrospect increasing evidence that TRP metabolites/IPA derived from its proteolysis impact host health and disease. IPA can activate the immune system through aryl hydrocarbon receptor (AHR) and/or Pregnane X receptor (PXR) as a vital mediator among diet-caused host and microbe cross-talk. Different levels of IPA in systemic circulation can predict the risk of NAFLD, T2DM, and CVD. IPA is suggested to alleviate cognitive impairment from oxidative damage, reduce gut inflammation, inhibit lipid accumulation and attenuate the symptoms of NAFLD, putatively enhance the intestinal epithelial barrier, and maintain intestinal homeostasis. Now, we provide a general description of the relationships between IPA and various physiological and pathological processes, which support an opportunity for diet intervention for metabolic diseases.

摘要

色氨酸(TRP)通过三种复杂的代谢途径(5-羟色胺(5-HT)、犬尿氨酸(KP)和肠道微生物群途径)维持个体免疫稳态并保持良好状态。吲哚丙酸(IPA)是微生物群途径中TRP的衍生物之一,因其对代谢紊乱的影响而备受关注。在此,我们回顾了越来越多的证据,表明TRP蛋白水解产生的代谢产物/IPA会影响宿主健康和疾病。IPA可作为饮食引起的宿主与微生物相互作用的重要介质,通过芳烃受体(AHR)和/或孕烷X受体(PXR)激活免疫系统。全身循环中不同水平的IPA可以预测非酒精性脂肪性肝病(NAFLD)、2型糖尿病(T2DM)和心血管疾病(CVD)的风险。IPA被认为可以减轻氧化损伤引起的认知障碍,减轻肠道炎症,抑制脂质积累并减轻NAFLD的症状,推测还可以增强肠道上皮屏障并维持肠道稳态。现在,我们对IPA与各种生理和病理过程之间的关系进行了概述,这为代谢疾病的饮食干预提供了机会。

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