TY - JOUR
T1 - Ameliorating High-Fat Diet-Induced Obesity and Metabolic Disorders in Mice by Simultaneous Oral Administration of a Xylanase and Wheat Bran
AU - Hao, Zhenzhen
AU - Ge, Jianzhong
AU - Sun, Yanpeng
AU - Yang, Daoxin
AU - Guo, Kairui
AU - Wang, Yuan
AU - Tu, Tao
AU - Zhang, Meiling
AU - Huang, Huoqing
AU - Luo, Huiying
AU - Zhang, Wenjing
AU - Su, Xiaoyun
N1 - Publisher Copyright:
© 2026 American Chemical Society
PY - 2026/5/27
Y1 - 2026/5/27
N2 - Enzymes can modulate the gut microbiota, whose integrity significantly impacts human health. Herein, CbXyn10C, a xylanase from Caldicellulosiruptor bescii, was investigated for its health-promoting effect on high-fat diet-induced obesity in mice. CbXyn10C-catalyzed hydrolysate from wheat bran promoted proliferation of 10 gut probiotics among 13 tested in vitro. In obese mice, while feeding 5% wheat bran alone was ineffective, oral administration of CbXyn10C reduced body weight and lipid accumulation, improved glycolipid metabolic disorders, reduced systemic inflammation, and fortified intestinal barrier function. Furthermore, CbXyn10C with wheat bran alleviated HFD-induced gut microbiota dysbiosis and significantly increased the abundance of probiotics, such as Lactobacillus, Bifidobacterium, and Faecalibaculum. CbXyn10C with wheat bran greatly affected lipid metabolism, particularly steroid hormone biosynthesis and sphingolipids. Spearman analysis revealed close association between the gut microbes, their metabolites, and obesity-related indicators. In conclusion, oral co-administration of a xylanase with wheat bran represents a valuable strategy for alleviating HFD-induced obesity.
AB - Enzymes can modulate the gut microbiota, whose integrity significantly impacts human health. Herein, CbXyn10C, a xylanase from Caldicellulosiruptor bescii, was investigated for its health-promoting effect on high-fat diet-induced obesity in mice. CbXyn10C-catalyzed hydrolysate from wheat bran promoted proliferation of 10 gut probiotics among 13 tested in vitro. In obese mice, while feeding 5% wheat bran alone was ineffective, oral administration of CbXyn10C reduced body weight and lipid accumulation, improved glycolipid metabolic disorders, reduced systemic inflammation, and fortified intestinal barrier function. Furthermore, CbXyn10C with wheat bran alleviated HFD-induced gut microbiota dysbiosis and significantly increased the abundance of probiotics, such as Lactobacillus, Bifidobacterium, and Faecalibaculum. CbXyn10C with wheat bran greatly affected lipid metabolism, particularly steroid hormone biosynthesis and sphingolipids. Spearman analysis revealed close association between the gut microbes, their metabolites, and obesity-related indicators. In conclusion, oral co-administration of a xylanase with wheat bran represents a valuable strategy for alleviating HFD-induced obesity.
KW - CbXyn10C
KW - glycolipid metabolism
KW - gut microbiota
KW - metabolic diseases
KW - obesity
KW - xylanase
UR - https://www.scopus.com/pages/publications/105040546224
U2 - 10.1021/acs.jafc.5c17603
DO - 10.1021/acs.jafc.5c17603
M3 - 文章
C2 - 42127269
AN - SCOPUS:105040546224
SN - 0021-8561
VL - 74
SP - 15524
EP - 15539
JO - Journal of Agricultural and Food Chemistry
JF - Journal of Agricultural and Food Chemistry
IS - 20
ER -