GLP-1 receptor agonists alleviate colonic inflammation by modulating intestinal microbiota and the function of group 3 innate lymphoid cells.
Hanxiao SunJie ShuJupei TangYue LiJinxin QiuZhaoyun DingBinbin XuanMinghui ChenChenxin GanJinpiao LinJu QiuHuiming ShengChuanxin WangPublished in: Immunology (2024)
Glucagon-like peptide-1 receptor agonists (GLP-1RAs), which are drugs used for treating type 2 diabetes, have been reported to exert anti-inflammatory effects on inflammatory bowel disease (IBD), the mechanism of which remains elusive. Here, we report that GLP-1RAs ameliorate dextran sulfate sodium (DSS)-induced colitis in both wild-type and T/B-cell-deficient mice through modulating group 3 innate lymphoid cells (ILC3s), a subset of innate lymphoid cells that regulate intestinal immunity. GLP-1RAs promote IL-22 production by ILC3, and the protective effect of GLP-1RAs on DSS-induced colitis was abrogated in ILC3-deficient RORgt gfp/gfp mice. Furthermore, the treatment effect of GLP-RAs on colitis, as well as the generation of IL-22-producing ILC3s by GLP-RAs, is dependent on the gut microbiota. GLP-1RAs increase the abundance of Firmicutes and Proteobacteria in the gut, particularly beneficial bacteria such as Lactobacillus reuteri, and decrease the abundance of enteropathogenic Staphylococcus bacteria. The untargeted gas chromatography (GC)/liquid chromatography (LC)-mass spectrometry (MS) of faecal metabolites further revealed enrichment of N,N-dimethylsphingosine (DMS), an endogenous metabolite derived from sphingosine, in the GLP-1RA-treated group. Strikingly, DMS ameliorates colitis while promoting intestinal IL-22-producing ILC3s. Taken together, our findings show that GLP-1RAs exert a therapeutic effect on colitis possibly by regulating the microbiota-DMS-IL-22 + ILC3 axis, highlighting the potential beneficial role of GLP-RAs in inflammatory intestinal disorders with diabetes complications.
Keyphrases
- wild type
- mass spectrometry
- liquid chromatography
- gas chromatography
- type diabetes
- induced apoptosis
- oxidative stress
- high resolution mass spectrometry
- tandem mass spectrometry
- cardiovascular disease
- signaling pathway
- endoplasmic reticulum stress
- cell cycle arrest
- ulcerative colitis
- multiple sclerosis
- skeletal muscle
- pseudomonas aeruginosa
- ms ms
- adipose tissue
- metabolic syndrome
- risk assessment
- weight loss
- gas chromatography mass spectrometry
- combination therapy
- systemic sclerosis
- mouse model