(R)-bambuterol ameliorates DSS-induced colitis in mice fed a high-fat diet via modulating immune response, intestinal barrier integrity, gut microbiota, and metabolomic profiles
Liangjun Deng, Le Tian, Dan Su, Yipeng Li, Shidong Zhang, Shanping Wang, Zhihua Liu
Journal:ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS
IF:3
DOI:10.1016/j.abb.2026.110734
PMID:41534759
Published:2026-01-12
research field:分子生物学生物信息学纳米毒理学免疫学胃肠病学环境毒理学
Abstract
The consumption of a high-fat diet is currently thought to be closely related to the onset of ulcerative colitis. (R)-bambuterol ((R)-BMB) has anti-inflammatory effects in the treatment of respiratory system related diseases. However, the therapeutic effect of (R)-BMB against in high-fat diet-related colitis remain undocumented. Therefore, in this study, the alleviation effect of (R)-BMB in mice with dextran sulfate sodium (DSS)-induced colitis fed a high-fat diet and its potential mechanism was explored. The results demonstrated that (R)-BMB markedly ameliorated the symptoms of colitis, such as body weight loss, spleen swelling and colon shortening. Moreover, (R)-BMB obviously mitigated the levels of inflammatory cytokines. Further research exhibited that (R)-BMB inhibited the NF-κB signaling pathway, regulated the balance of Th17 and Treg cells, elevated activated the Nrf-2/HO-1 signaling pathway, and increased the expression of related to tight junction proteins to increase the integrity of the intestinal barrier. In addition, 16S rDNA sequencing results indicated that (R)-BMB regulated the structure of the intestinal microbiome and relieved imbalances in this microbiome, and non-targeted metabolomics analysis revealed that (R)-BMB reversed the metabolic changes in mice with colitis fed a high-fat diet. In summary, these results indicate that (R)-BMB can serve as a novel alternative strategy for treating colitis in the context of high-fat diet consumption.
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