A polyphenol-rich cranberry extract protects from diet-induced obesity, insulin resistance and intestinal inflammation in association with increasedAkkermansiaspp. population in the gut microbiota of mice

阿克曼西亚 胰岛素抵抗 肠道菌群 2型糖尿病 生物 代谢综合征 内科学 内分泌学 人口 甘油三酯 葡萄糖稳态 糖耐量试验 糖尿病 医学 乳酸菌 免疫学 食品科学 胆固醇 发酵 环境卫生
作者
Fernando F. Anhê,Denis Roy,Geneviève Pilon,Stéphanie Dudonné,Sébastien Matamoros,Thibault Varin,Carole Garofalo,Quentin Moine,Yves Desjardins,Émile Lévy,André Marette
出处
期刊:Gut [BMJ]
卷期号:64 (6): 872-883 被引量:953
标识
DOI:10.1136/gutjnl-2014-307142
摘要

Objective

The increasing prevalence of obesity and type 2 diabetes (T2D) demonstrates the failure of conventional treatments to curb these diseases. The gut microbiota has been put forward as a key player in the pathophysiology of diet-induced T2D. Importantly, cranberry (Vaccinium macrocarpon Aiton) is associated with a number of beneficial health effects. We aimed to investigate the metabolic impact of a cranberry extract (CE) on high fat/high sucrose (HFHS)-fed mice and to determine whether its consequent antidiabetic effects are related to modulations in the gut microbiota.

Design

C57BL/6J mice were fed either a chow or a HFHS diet. HFHS-fed mice were gavaged daily either with vehicle (water) or CE (200 mg/kg) for 8 weeks. The composition of the gut microbiota was assessed by analysing 16S rRNA gene sequences with 454 pyrosequencing.

Results

CE treatment was found to reduce HFHS-induced weight gain and visceral obesity. CE treatment also decreased liver weight and triglyceride accumulation in association with blunted hepatic oxidative stress and inflammation. CE administration improved insulin sensitivity, as revealed by improved insulin tolerance, lower homeostasis model assessment of insulin resistance and decreased glucose-induced hyperinsulinaemia during an oral glucose tolerance test. CE treatment was found to lower intestinal triglyceride content and to alleviate intestinal inflammation and oxidative stress. Interestingly, CE treatment markedly increased the proportion of the mucin-degrading bacterium Akkermansia in our metagenomic samples.

Conclusions

CE exerts beneficial metabolic effects through improving HFHS diet-induced features of the metabolic syndrome, which is associated with a proportional increase in Akkermansia spp. population.
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