益生元
肠道菌群
毛螺菌科
葡聚糖
内分泌学
生物
果聚糖
新陈代谢
失调
化学
内科学
生物化学
厚壁菌
医学
16S核糖体RNA
蔗糖
基因
作者
Wai‐Yin Cheng,Ka‐Lung Lam,Xiaojie Li,Alice P.S. Kong,Peter Chi Keung Cheung
标识
DOI:10.1016/j.carbpol.2021.118216
摘要
Circadian disruption-induced metabolic syndrome (CDIMS) involves body weight gain, changes in blood profile and gut microbiota. In this study, CDIMS was induced by shifted light dark cycle (SLDC) in C57BL/6J mice. Dietary intervention by oral administration of oat β-glucan (a polymeric prebiotic) alleviated CDIMS when compared to chicory inulin/fructan (an oligomeric prebiotic) and melatonin (a chronobiotic). Oat β-glucan reversed the increase in body weight, liver weight-to-body weight ratio and plasma leptin concentration as well as restored glucose tolerance. In altering gut microbiota, oat β-glucan increased the species richness, reversed the populations of 7 bacterial genera and increased butyrate producers including Ruminococcaceae and Lachnospiraceae which enhance gut barrier protection and regulate glucose homeostasis. Correlation analysis demonstrated the linking of the alleviation of CDIMS by prebiotics and melatonin with different microbial metabolic pathways involved in energy metabolism, biosynthesis of metabolites, metabolism of cofactors and vitamins and endocrine synthesis.
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