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Published on: July 27, 2022
A triple-helix white tea polysaccharide alleviates ulcerative colitis via the gut microbiota-metabolites-inflammation
Xuemin Chen1, Pengfei Dai2, Yuanmin Zhu1
1Institute of Resource Biology and Biotechnology, Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, China; Key Laboratory of Molecular Biophysics, Ministry of Education, Wuhan, 430074, China; Hubei Engineering Research Center for both Edible and Medicinal Resources, Wuhan, 430074, China.
Abstract:
Ulcerative colitis (UC), a chronic inflammatory bowel disease, remains incurable with limited therapies. White tea, a traditional Chinese beverage, is known for anti-inflammatory effects, yet its active components in UC are poorly defined. Here, we identified a homogeneous pectic polysaccharide (WTP-2, 150.79 kDa) as the key anti-colitic constituent. WTP-2 contains homogalacturonan domains with →4)-α-D-GalpA-(1 → backbones, 42.47 % methyl esterification, and 14.8 % acetylation of GalpA residues. Conformation analyses revealed a triple-helix structure underlying its activity. In vitro, WTP-2 (400 μg/mL) suppressed LPS-induced TNF-α and IL-6 secretion in RAW264.7 macrophages by 57.6 % and 72.4 %, respectively, whereas helix-disrupted derivatives were ineffective. In vivo, WTP-2 (160 mg/kg) alleviated dextran sulfate sodium-induced colitis, reducing disease activity index scores by 54.5 %, preserving barrier integrity, and modulating gut microbiota and metabolites. Transcriptomic and protein analyses revealed downregulation of immune genes and inhibition of the IL-17-JNK-AP-1 pathway, with marked decreases in p-JNK, p-c-Jun, and COX-2 expression. Collectively, these results demonstrate that a triple-helix white tea polysaccharide protects against UC via a microbiota-metabolites-inflammation regulatory axis, with its in vitro anti-inflammatory activity dependent on the triple-helix structure. This study provides new insights into white tea polysaccharide structure-function relationships and highlights its therapeutic potential in UC management.
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