Dietary Mannan Oligosaccharides Modulate Gut Microbiota, Increase Fecal Bile Acid Excretion, and Decrease Plasma Cholesterol and Atherosclerosis Development

肠道菌群 胆固醇 拟杆菌 高脂血症 丁酸盐 排泄 炎症 盲肠 内分泌学 粪便 内科学 脂蛋白 生物 化学 生物化学 微生物学 医学 细菌 糖尿病 发酵 遗传学
作者
Lisa R. Hoving,Saeed Katiraei,Marieke Heijink,Amanda C. M. Pronk,L. van der Wee-Pals,Trea C.M. Streefland,Martin Giera,Ko Willems van Dijk,Vanessa van Harmelen
出处
期刊:Molecular Nutrition & Food Research [Wiley]
卷期号:62 (10) 被引量:80
标识
DOI:10.1002/mnfr.201700942
摘要

Scope Mannan oligosaccharides (MOS) have proven effective at improving growth performance, while also reducing hyperlipidemia and inflammation. As atherosclerosis is accelerated both by hyperlipidemia and inflammation, we aim to determine the effect of dietary MOS on atherosclerosis development in hyperlipidemic ApoE*3‐Leiden.CETP ( E3L.CETP ) mice, a well‐established model for human‐like lipoprotein metabolism. Methods and results Female E3L.CETP mice were fed a high‐cholesterol diet, with or without 1% MOS for 14 weeks. MOS substantially decreased atherosclerotic lesions up to 54%, as assessed in the valve area of the aortic root. In blood, IL‐1RA, monocyte subtypes, lipids, and bile acids (BAs) were not affected by MOS. Gut microbiota composition was determined using 16S rRNA gene sequencing and MOS increased the abundance of cecal Bacteroides ovatus . MOS did not affect fecal excretion of cholesterol, but increased fecal BAs as well as butyrate in cecum as determined by gas chromatography mass spectrometry. Conclusion MOS decreased the onset of atherosclerosis development via lowering of plasma cholesterol levels. These effects were accompanied by increased cecal butyrate and fecal excretion of BAs, presumably mediated via interactions of MOS with the gut microbiota.
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