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肠道微生物对硫代葡萄糖苷的代谢。

The Metabolism of Glucosinolates by Gut Microbiota.

机构信息

Fruit and Vegetables Storage and Processing Department, Division of Fruit and Vegetable Storage and Postharvest Physiology, The National Institute of Horticultural Research, Pomologiczna 13a Street, 96-100 Skierniewice, Poland.

Medical, Natural and Technical College, Institute of Health Sciences, Stefan Batory State University, Batorego 64c Street, 96-100 Skierniewice, Poland.

出版信息

Nutrients. 2021 Aug 10;13(8):2750. doi: 10.3390/nu13082750.

Abstract

Glucosinolates (GLS) and their derivatives are secondary plant metabolites abundant in . Due to the enzymatic reaction between GLS and myrosinase enzyme, characteristic compounds with a pungent taste are formed, used by plants to defend themselves against insect herbivores. These GLS derivatives have an important impact on human health, including anti-inflammation and anti-cancer effects. However, GLS derivatives' formation needs previous enzymatic reactions catalyzed by myrosinase enzyme. Many of the brassica-based foods are processed at a high temperature that inactivates enzymes, hindering its bioavailability. In the last decade, several studies showed that the human gut microbiome can provide myrosinase activity that potentially can raise the beneficial effects of consumption of vegetables rich in GLS. The variability of the human gut microbiome (HGM) in human populations and the diverse intake of GLS through the diet may lead to greater variability of the real dose of pro-healthy compounds absorbed by the human body. The exploitation of the genetic and biochemical potential of HGM and correct ecological studies of both isolated strains and mixed population are of great interest. This review focuses on the most recent advances in this field.

摘要

硫代葡萄糖苷(GLS)及其衍生物是植物次生代谢产物,在 中含量丰富。由于 GLS 与黑芥子酶之间的酶促反应,形成了具有刺激性味道的特征化合物,植物以此来抵御昆虫食草动物的侵害。这些 GLS 衍生物对人类健康有重要影响,包括抗炎和抗癌作用。然而,GLS 衍生物的形成需要黑芥子酶酶促反应的先前酶反应。许多基于 Brassica 的食物经过高温加工,使酶失活,从而阻碍了其生物利用度。在过去的十年中,多项研究表明,人类肠道微生物组可以提供黑芥子酶活性,这可能会提高富含 GLS 的蔬菜的消费的有益效果。人类肠道微生物组(HGM)在人群中的变异性以及通过饮食摄入的 GLS 的多样性,可能导致人体吸收的有益化合物的实际剂量的变异性更大。开发 HGM 的遗传和生化潜力,以及对分离菌株和混合种群的正确生态学研究,具有重要意义。本文综述了该领域的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/551a/8401010/1415b4553aed/nutrients-13-02750-g001.jpg

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