Caffeic acid combined with arabinoxylan or β-glucan attenuates diet-induced obesity in mice via modulation of gut microbiota and metabolites

被引:5
|
作者
Fang, Wei [1 ]
Jin, Mingyu [2 ]
Qi, Wentao [1 ]
Kong, Chunli [3 ]
Song, Ge [1 ]
Peng, Wenting [1 ]
Wang, Yong [1 ]
机构
[1] Acad Natl Food & Strateg Reserv Adm, Beijing 100037, Peoples R China
[2] Dongguan Univ Technol, Sch Life & Hlth Technol, Dongguan 523808, Peoples R China
[3] Beijing Technol & Business Univ, Sch Food & Hlth, Beijing 100048, Peoples R China
基金
国家重点研发计划;
关键词
Polyphenols; Dietary fiber; Gut microbiota; METABOLOMICS;
D O I
10.1016/j.ijbiomac.2024.131683
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Polyphenols and dietary fibers in whole grains are important bioactive compounds to reduce risks for obesity. However, whether the combination of the two components exhibits a stronger anti-obesity effect remains unclear. Caffeic acid is a major phenolic acid in cereals, and arabinoxylan and 13-glucan are biological macromolecules with numerous health benefits. Here, we investigated the effect of caffeic acid combined with arabinoxylan or 13-glucan on glucose and lipid metabolism, gut microbiota, and metabolites in mice fed a high -fat diet (HFD). Caffeic acid combined with arabinoxylan or 13-glucan significantly reduced the body weight, blood glucose, and serum free fatty acid concentrations. Caffeic acid combined with 13-glucan effectively decreased serum total cholesterol levels and hepatic lipid accumulation, modulated oxidative and inflammatory stress, and improved gut barrier function. Compared with arabinoxylan, 13-glucan, and caffeic acid alone, caffeic acid combined with arabinoxylan or 13-glucan exhibited a better capacity to modulate gut microbiota, including increased microbial diversity, reduced Firmicutes/Bacteroidetes ratio, and increased abundance of beneficial bacteria such as Bifidobacterium. Furthermore, caffeic acid combined with 13-glucan reversed HFD-induced changes in microbiota-derived metabolites involving tryptophan, purine, and bile acid metabolism. Thus, caffeic acid and 13-glucan had a synergistic anti-obesity effect by regulating specific gut microbiota and metabolites.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Insoluble yeast β-glucan attenuates high-fat diet-induced obesity by regulating gut microbiota and its metabolites
    Mo, Xiaoxing
    Sun, Yunhong
    Liang, Xiaoling
    Li, Linyan
    Hu, Shan
    Xu, Zihui
    Liu, Shuang
    Zhang, Yan
    Li, Xiaoqin
    Liu, Liegang
    CARBOHYDRATE POLYMERS, 2022, 281
  • [2] Lingguizhugan decoction attenuates diet-induced obesity and hepatosteatosis via gut microbiota
    Meng-Ting Liu
    Ying-Juan Huang
    Ting-Ying Zhang
    Lun-Bo Tan
    Xi-Feng Lu
    Jian Qin
    World Journal of Gastroenterology, 2019, 25 (27) : 3590 - 3606
  • [3] Lingguizhugan decoction attenuates diet-induced obesity and hepatosteatosis via gut microbiota
    Liu, Meng-Ting
    Huang, Ying-Juan
    Zhang, Ting-Ying
    Tan, Lun-Bo
    Lu, Xi-Feng
    Qin, Jian
    WORLD JOURNAL OF GASTROENTEROLOGY, 2019, 25 (27) : 3590 - 3606
  • [4] Sciadonic acid attenuates high-fat diet-induced obesity in mice with alterations in the gut microbiota
    Chen, Lin
    Jiang, Qihong
    Jiang, Chenkai
    Lu, Hongling
    Hu, Wenjun
    Yu, Shaofang
    Li, Mingqian
    Tan, Chin Ping
    Feng, Yongcai
    Xiang, Xingwei
    Shen, Guoxin
    FOOD & FUNCTION, 2023, 14 (06) : 2870 - 2880
  • [5] Pomegranate fruit pulp polyphenols reduce diet-induced obesity with modulation of gut microbiota in mice
    Song, Haizhao
    Shen, Xinchun
    Chu, Qiang
    Zheng, Xiaodong
    JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE, 2022, 102 (05) : 1968 - 1977
  • [6] Mulberry extract protects from diet-induced obesity in association with modulation of gut microbiota in mice
    Song, Haizhao
    FASEB JOURNAL, 2018, 32 (01):
  • [7] β-glucan attenuates cognitive impairment via the gut-brain axis in diet-induced obese mice
    Shi, Hongli
    Yu, Yinghua
    Lin, Danhong
    Zheng, Peng
    Zhang, Peng
    Hu, Minmin
    Wang, Qiao
    Pan, Wei
    Yang, Xiaoying
    Hu, Tao
    Li, Qianqian
    Tang, Renxian
    Zhou, Feng
    Zheng, Kuiyang
    Huang, Xu-Feng
    MICROBIOME, 2020, 8 (01)
  • [8] β-glucan attenuates cognitive impairment via the gut-brain axis in diet-induced obese mice
    Hongli Shi
    Yinghua Yu
    Danhong Lin
    Peng Zheng
    Peng Zhang
    Minmin Hu
    Qiao Wang
    Wei Pan
    Xiaoying Yang
    Tao Hu
    Qianqian Li
    Renxian Tang
    Feng Zhou
    Kuiyang Zheng
    Xu-Feng Huang
    Microbiome, 8
  • [9] Black Tea Reduces Diet-Induced Obesity in Mice via Modulation of Gut Microbiota and Gene Expression in Host Tissues
    Liu, Xuanli
    Hu, Gaosheng
    Wang, Anhua
    Long, Guoqing
    Yang, Yongcheng
    Wang, Dongdong
    Zhong, Nanfang
    Jia, Jingming
    NUTRIENTS, 2022, 14 (08)
  • [10] Enteropeptidase inhibition improves obesity by modulating gut microbiota composition and enterobacterial metabolites in diet-induced obese mice
    Sugama, Jun
    Moritoh, Yusuke
    Yashiro, Hiroaki
    Tsuchimori, Kazue
    Watanabe, Masanori
    PHARMACOLOGICAL RESEARCH, 2021, 163