首页> 外文OA文献 >Carbohydrate-Free Peach (Prunus persica) and Plum (Prunus salicina) corrected Juice Affects Fecal Microbial Ecology in an Obese Animal Model.
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Carbohydrate-Free Peach (Prunus persica) and Plum (Prunus salicina) corrected Juice Affects Fecal Microbial Ecology in an Obese Animal Model.

机译:无碳水化合物的桃子(李子和李子)校正果汁影响肥胖动物模型中的粪便微生物生态。

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摘要

BACKGROUNDududGrowing evidence shows the potential of nutritional interventions to treat obesity but most investigations have utilized non-digestible carbohydrates only. Peach and plum contain high amounts of polyphenols, compounds with demonstrated anti-obesity effects. The underlying process of successfully treating obesity using polyphenols may involve an alteration of the intestinal microbiota. However, this phenomenon is not well understood.ududMETHODOLOGY/PRINCIPAL FINDINGSududObese Zucker rats were assigned to three groups (peach, plum, and control, n = 10 each), wild-type group was named lean (n = 10). Carbohydrates in the fruit juices were eliminated using enzymatic hydrolysis. Fecal samples were obtained after 11 weeks of fruit or control juice administration. Real-time PCR and 454-pyrosequencing were used to evaluate changes in fecal microbiota. Over 1,500 different Operational Taxonomic Units at 97% similarity were detected in all rats. Several bacterial groups (e.g. Lactobacillus and members of Ruminococcacea) were found to be more abundant in the peach but especially in the plum group (plum juice contained 3 times more total polyphenolics compared to peach juice). Principal coordinate analysis based on Unifrac-based unweighted distance matrices revealed a distinct separation between the microbiota of control and treatment groups. These changes in fecal microbiota occurred simultaneously with differences in fecal short-chain acids concentrations between the control and treatment groups as well as a significant decrease in body weight in the plum group.ududCONCLUSIONSududThis study suggests that consumption of carbohydrate-free peach and plum juice has the potential to modify fecal microbial ecology in an obese animal model. The separate contribution of polyphenols and non-polyphenols compounds (vitamins and minerals) to the observed changes is unknown.
机译:背景 ud ud越来越多的证据显示了营养干预措施可治疗肥胖症的潜力,但大多数研究仅利用了不易消化的碳水化合物。桃和李子中含有大量的多酚,这些化合物具有抗肥胖作用。使用多酚成功治疗肥胖症的基本过程可能涉及肠道菌群的改变。但是,这种现象尚未得到很好的理解。 ud ud方法论/主要发现 ud ud肥胖的祖克大鼠被分为三组(桃子,李子和对照组,每组n = 10),野生型组被称为瘦肉(n = 10)。果汁中的碳水化合物通过酶水解消除。水果或对照果汁服用11周后获得粪便样品。实时PCR和454焦磷酸测序用于评估粪便微生物群的变化。在所有大鼠中检测到1,500多个不同的操作分类单位,相似性为97%。发现桃中有几个细菌类(例如乳杆菌和Ruminococcacea成员)更为丰富,但在李子类中尤其如此(李子汁中的总多酚含量是桃汁的3倍)。基于基于Unifrac的未加权距离矩阵的主坐标分析显示,对照组和治疗组的微生物群之间存在明显的分离。粪便微生物群的这些变化与对照组和治疗组之间粪便短链酸浓度的差异同时发生,并且李子组的体重显着下降。 ud ud结论 ud ud这项研究表明碳水化合物的消耗不含桃子和李子汁有可能改变肥胖动物模型的粪便微生物生态。多酚和非多酚化合物(维生素和矿物质)对观察到的变化的单独贡献是未知的。

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