Galectin from Trichinella spiralis alleviates DSS-induced colitis in mice by regulating the intestinal microbiota

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作者
Jianqing Li
Xiangjiang Wang
Qiuhui Wang
Yishen Hu
Shouan Wang
Jia Xu
Jianbin Ye
机构
[1] Fujian Medical University,School of Pharmacy
[2] Putian University,School of Basic Medicine Science
[3] Key Laboratory of Translational Tumor Medicine in Fujian Province,School of Pharmacy
[4] Putian University,undefined
来源
Veterinary Research | / 55卷
关键词
inflammatory bowel disease; galectin; microbiota;
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摘要
According to numerous reports, Trichinella spiralis (T. spiralis) and its antigens can reduce intestinal inflammation by modulating regulatory immunological responses in the host to maintain immune homeostasis. Galectin has been identified as a protein that is produced by T. spiralis, and its characterization revealed this protein has possible immune regulatory activity. However, whether recombinant T. spiralis galectin (rTs-gal) can cure dextran sulfate sodium (DSS)-induced colitis remains unknown. Here, the ability of rTs-gal to ameliorate experimental colitis in mice with inflammatory bowel disease (IBD) as well as the potential underlying mechanism were investigated. The disease activity index (DAI), colon shortening, inflammatory cell infiltration, and histological damage were used as indicators to monitor clinical symptoms of colitis. The results revealed that the administration of rTs-gal ameliorated these symptoms. According to Western blotting and ELISA results, rTs-gal may suppress the excessive inflammatory response-mediated induction of TLR4, MyD88, and NF-κB expression in the colon. Mice with colitis exhibit disruptions in the gut flora, including an increase in gram-negative bacteria, which in turn can result in increased lipopolysaccharide (LPS) production. However, injection of rTs-gal may inhibit changes in the gut microbiota, for example, by reducing the prevalence of Helicobacter and Bacteroides, which produce LPS. The findings of the present study revealed that rTs-gal may inhibit signalling pathways that involve enteric bacteria-derived LPS, TLR4, and NF-κB in mice with DSS-induced colitis and attenuate DSS-induced colitis in animals by modulating the gut microbiota. These findings shed additional light on the immunological processes underlying the beneficial effects of helminth-derived proteins in medicine.
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[1]  
Singh S(2023)Management of inflammatory bowel diseases in older adults Lancet Gastroenterol Hepatol 8 368-382
[2]  
Boland BS(2018)Environmental triggers in IBD: a review of progress and evidence Nat Rev Gastroenterol Hepatol 15 39-49
[3]  
Jess T(2018)Qingchang suppository ameliorates colonic vascular permeability in dextran-sulfate-sodium-induced colitis Front Pharmacol 9 1235-165
[4]  
Moore AA(2019)Mechanisms of disease: inflammatory bowel diseases Mayo Clin Proc 94 155-317
[5]  
Ananthakrishnan AN(2011)Genetics and pathogenesis of inflammatory bowel disease Nature 474 307-584
[6]  
Bernstein CN(2017)Gut microbiota and IBD: causation or correlation? Nat Rev Gastroenterol Hepatol 14 573-485
[7]  
Iliopoulos D(2020)Acacetin ameliorates experimental colitis in mice via inhibiting macrophage inflammatory response and regulating the composition of gut microbiota Front Physiol 11 477-953
[8]  
Macpherson A(2018)The role of inflammation in temporal shifts in the inflammatory bowel disease mucosal microbiome Gut Microbes 9 946-55
[9]  
Neurath MF(2013)Therapeutic potential of fecal microbiota transplantation Gastroenterology 145 47-18
[10]  
Ali RAR(2015)The gut microbiota and inflammatory bowel disease Semin Immunopathol 37 517-120