Eucommia ulmoides polysaccharide modified nano-selenium effectively alleviated DSS-induced colitis through enhancing intestinal mucosal barrier function and antioxidant capacity

被引:0
作者
Ruihua Ye
Qingyun Guo
Jiaqiang Huang
Zixu Wang
Yaoxing Chen
Yulan Dong
机构
[1] China Agricultural University,College of Veterinary Medicine
[2] Qingyun Guo,Key Laboratory of Precision Nutrition and Food Quality, Department of Nutrition and Health
[3] Milu conservation research unit,Beijing Advanced Innovation Center for Food Nutrition and Human Health, Department of Nutrition and Health
[4] Beijing Milu Ecological Research Center,undefined
[5] Ministry of Education,undefined
[6] China Agricultural University,undefined
[7] China Agricultural University,undefined
来源
Journal of Nanobiotechnology | / 21卷
关键词
IBD; ulmoides polysaccharide; Nano-selenium particle; Colitis; Intestinal mucosal barrier; Gut microbiota;
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学科分类号
摘要
Ulcerative colitis (UC) is currently the most common inflammatory bowel disease (IBD). Due to its diverse and complex causes, there is no cure at present, and researchers are constantly exploring new therapies. In recent years, nano-selenium particle(SeNP) has attracted wide attention due to excellent biological activities. Therefore, in this study, for the first time, we used a natural polysaccharide, Eucommia ulmoides polysaccharide (EUP), modified SeNP to get EUP-SeNP with a size of about 170 nm, and its effect on 3% dextran sulphate sodium (DSS) induced colitis was explored. Our results showed that colon intestinal histology, intestinal mucosal barrier, inflammatory cytokines and intestinal microbiome composition were changed after EUP-SeNP treatment in colitis mice. Specifically, it was also shown that oral treatment of EUP-SeNP could relieve the degree of DSS-induced colitis in mice by restoring weight loss, reducing disease activity index (DAI), enhancing colon antioxidant capacity and regulating intestinal microbiome composition. In addition, we verified the mechanism in intestinal epithelial cell lines, showing that EUP-SeNP inhibited LPS-induced activation of the TRL-4/NF-κB signaling pathway in intestinal epithelial cell lines. To some extend, our study provides therapeutic reference for the treatment of IBD.
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