Sedanolide alleviates DSS-induced colitis by modulating the intestinal FXR-SMPD3 pathway in mice

被引:5
|
作者
Li, Shengjie [1 ]
Zhuge, Aoxiang [1 ]
Chen, Hui [1 ]
Han, Shengyi [1 ]
Shen, Jian [1 ]
Wang, Kaicen [1 ]
Xia, Jiafeng [1 ]
Xia, He [1 ]
Jiang, Shiman [1 ]
Wu, Youhe [1 ]
Li, Lanjuan [1 ,2 ]
机构
[1] Zhejiang Univ, Affiliated Hosp 1, Natl Clin Res Ctr Infect Dis, Natl Med Ctr Infect Dis,Collaborat Innovat Ctr Dia, Hangzhou 310003, Peoples R China
[2] Jinan Microecol Biomed Shandong Lab, Jinan 250000, Peoples R China
基金
中国国家自然科学基金;
关键词
Sedanolide; Colitis; FXR; Bile acid metabolism; Gut microbes; Ceramide; INFLAMMATORY-BOWEL-DISEASE; CROHNS-DISEASE; MICROBIOTA; METABOLISM; ADALIMUMAB; IBD;
D O I
10.1016/j.jare.2024.03.026
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Introduction: Inflammatory bowel disease (IBD) is a global disease with limited therapy. It is reported that sedanolide exerts anti-oxidative and anti-inflammatory effects as a natural phthalide, but its effects on IBD remain unclear. Objectives: In this study, we investigated the impacts of sedanolide on dextran sodium sulfate (DSS)induced colitis in mice. Methods: The mice were administered sedanolide or vehicle followed by DSS administration, after which colitis symptoms, inflammation levels, and intestinal barrier function were evaluated. Transcriptome analysis, 16S rRNA sequencing, and targeted metabolomics analysis of bile acids and lipids were performed. Results: Sedanolide protected mice from DSS-induced colitis, suppressed the inflammation, restored the weakened epithelial barrier, and modified the gut microbiota by decreasing bile salt hydrolase (BSH)expressing bacteria. The downregulation of BSH activity by sedanolide increased the ratio of conjugated/unconjugated bile acids (BAs), thereby inhibiting the intestinal farnesoid X receptor (FXR) pathway. The roles of the FXR pathway and gut microbiota were verified using an intestinal FXR-specific agonist (fexaramine) and germ-free mice, respectively. Furthermore, we identified the key effector ceramide, which is regulated by sphingomyelin phosphodiesterase 3 (SMPD3). The protective effects of ceramide (d18:1/16:0) against inflammation and the gut barrier were demonstrated in vitro using the human cell line Caco-2. Conclusion: Sedanolide could reshape the intestinal flora and influence BA composition, thus inhibiting the FXR-SMPD3 pathway to stimulate the synthesis of ceramide, which ultimately alleviated DSSinduced colitis in mice. Overall, our research revealed the protective effects of sedanolide against DSSinduced colitis in mice, which indicated that sedanolide may be a clinical treatment for colitis. Additionally, the key lipid ceramide (d18:1/16:0) was shown to mediate the protective effects of sedanolide, providing new insight into the associations between colitis and lipid metabolites. (c) 2024 The Authors. Published by Elsevier B.V. on behalf of Cairo University. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页码:413 / 426
页数:14
相关论文
共 50 条
  • [1] Galectin from Trichinella spiralis alleviates DSS-induced colitis in mice by regulating the intestinal microbiota
    Li, Jianqing
    Wang, Xiangjiang
    Wang, Qiuhui
    Hu, Yishen
    Wang, Shouan
    Xu, Jia
    Ye, Jianbin
    VETERINARY RESEARCH, 2024, 55 (01) : 3
  • [2] Gastrodin Alleviates DSS-Induced Colitis in Mice through Strengthening Intestinal Barrier and Modulating Gut Microbiota
    Li, Jiahui
    Jia, Jinhui
    Teng, Yue
    Xie, Chunyuan
    Li, Chunwei
    Zhu, Beiwei
    Xia, Xiaodong
    FOODS, 2024, 13 (15)
  • [3] Galectin from Trichinella spiralis alleviates DSS-induced colitis in mice by regulating the intestinal microbiota
    Jianqing Li
    Xiangjiang Wang
    Qiuhui Wang
    Yishen Hu
    Shouan Wang
    Jia Xu
    Jianbin Ye
    Veterinary Research, 55
  • [4] Processed coffee alleviates DSS-induced colitis in mice
    Fiebich, Bernd L.
    Vinuesa, Amaya G.
    Sanchez-Duffhues, Gonzalo
    Collado, Juan A.
    Rose, Thorsten
    Menthe, Joeam
    Minoz, Eduardo
    FUNCTIONAL FOODS IN HEALTH AND DISEASE, 2013, 3 (05): : 133 - 145
  • [5] Pristimerin Alleviates DSS-Induced Colitis in Mice by Modulating Intestinal Barrier Function, Gut Microbiota Balance and Host Metabolism
    Wang, Yang
    Qin, Xiaogang
    Shuai, Jinhao
    Wan, Xiayun
    Yu, Duonan
    Ling, Ling
    Lu, Qianwen
    Lv, Mengying
    INFLAMMATION, 2024,
  • [6] Bifidobacterium breve Alleviates DSS-Induced Colitis in Mice by Maintaining the Mucosal and Epithelial Barriers and Modulating Gut Microbes
    Niu, Meng-Meng
    Guo, Huan-Xin
    Cai, Jun-Wu
    Meng, Xiang-Chen
    NUTRIENTS, 2022, 14 (18)
  • [7] Lactobacillus plantarum ZJUIDS04 alleviates DSS-induced colitis via modulating gut microbiota
    Yu, Chongwei
    Liu, Jingtianyi
    Liu, Zonghao
    Ding, Qinchao
    Zhu, Qinchao
    Chen, Nan
    Fu, Jinfeng
    Valencak, Teresa G.
    Ren, Daxi
    JOURNAL OF FUNCTIONAL FOODS, 2023, 109
  • [8] Deferasirox alleviates DSS-induced ulcerative colitis in mice by inhibiting ferroptosis and improving intestinal microbiota
    Wu, Yi
    Ran, Lei
    Yang, Yue
    Gao, Xianling
    Peng, Man
    Liu, Sida
    Sun, Le
    Wan, Jia
    Wang, Yu
    Yang, Kun
    Yin, Min
    Chunyu, Weixun
    LIFE SCIENCES, 2023, 314
  • [9] Fish Sidestream-Derived Protein Hydrolysates Suppress DSS-Induced Colitis by Modulating Intestinal Inflammation in Mice
    Daskalaki, Maria G.
    Axarlis, Konstantinos
    Aspevik, Tone
    Orfanakis, Michail
    Kolliniati, Ourania
    Lapi, Ioanna
    Tzardi, Maria
    Dermitzaki, Eirini
    Venihaki, Maria
    Kousoulaki, Katerina
    Tsatsanis, Christos
    MARINE DRUGS, 2021, 19 (06)
  • [10] Cysteine protease of Clonorchis sinensis alleviates DSS-induced colitis in mice
    Xie, Xiaoying
    Wu, Zhanshuai
    Wu, Yuhong
    Liu, Jing
    Chen, Xinyuan
    Shi, Xiaoqian
    Wei, Caiheng
    Li, Jiasheng
    Lv, Jiahui
    Li, Qing
    Tang, Lili
    He, Shanshan
    Zhan, Tingzheng
    Tang, Zeli
    PLOS NEGLECTED TROPICAL DISEASES, 2022, 16 (09):