Regulatory Effect of Mung Bean Peptide on Prediabetic Mice Induced by High-Fat Diet

阿克曼西亚 糖尿病前期 肠道菌群 内分泌学 毛螺菌科 生物 内科学 胰岛素抵抗 厚壁菌 乳酸菌 胰岛素 生物化学 2型糖尿病 医学 糖尿病 基因 发酵 16S核糖体RNA
作者
Lina Li,Yu Tian,Shu Zhang,Yu‐Long Feng,Haoyu Wang,Xiaoyu Cheng,Yantao Ma,Rui Zhang,Changyuan Wang
出处
期刊:Frontiers in Nutrition [Frontiers Media SA]
卷期号:9 被引量:6
标识
DOI:10.3389/fnut.2022.913016
摘要

Dietary supplementation with mung bean peptides (MBPs) has several health benefits. However, the effect of MBPs on prediabetes and gut microbiota imbalance caused by a high-fat diet (HFD) has not been thoroughly studied. In this study, dietary supplementation with MBPs for 5 weeks significantly reduced HFD-induced body weight gain, hyperglycaemia, hyperlipidaemia, insulin resistance, inflammation, and oxidative stress and alleviated liver and kidney damage in mice. In addition, it significantly reversed the HFD-induced gut microbiota imbalance, increased the gut microbial diversity, and decreased the abundance of Firmicutes and Bacteroidetes in prediabetic mice. Furthermore, we identified Lachnospiraceae_NK4A136 and Lactobacillus as important eubacteria with the potential to alleviate the clinical symptoms of prediabetes. According to PICRUSt2 analysis, the changes in intestinal microflora induced by MBPs diet intervention may be related to the downregulation of expression of genes such as rocR, lysX1, and grdA and regulation of seven pathways, including pyruvate, succinic acid, and butyric acid. Moreover, 17 genera with significantly altered levels in the intestine of HFD-fed mice, including Akkermansia, Roseburia, and Ruminiclostridium, were significantly correlated with 26 important differential metabolites, such as D-glutathione, anti-oleic acid, and cucurbitacin. Overall, these results show that MBPs diet intervention plays a key role in the management of HFD-induced prediabetes.
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