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Prebiotic Effects of Partially Hydrolyzed Guar Gum on the Composition and Function of the Human Microbiota—Results from the PAGODA Trial

机译:瓜尔胶部分水解对人类微生物群组成和功能的益生元作用-来自PAGODA试验的结果

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摘要

(1) Background: Alterations in the structural composition of the human gut microbiota have been identified in various disease entities along with exciting mechanistic clues by reductionist gnotobiotic modeling. Improving health by beneficially modulating an altered microbiota is a promising treatment approach. Prebiotics, substrates selectively used by host microorganisms conferring a health benefit, are broadly used for dietary and clinical interventions. Herein, we sought to investigate the microbiota-modelling effects of the soluble fiber, partially hydrolyzed guar gum (PHGG). (2) Methods: We performed a 9 week clinical trial in 20 healthy volunteers that included three weeks of a lead-in period, followed by three weeks of an intervention phase, wherein study subjects received 5 g PHGG up to three times per day, and concluding with a three-week washout period. A stool diary was kept on a daily basis, and clinical data along with serum/plasma and stool samples were collected on a weekly basis. PHGG-induced alterations of the gut microbiota were studied by 16S metagenomics of the V1–V3 and V3–V4 regions. To gain functional insight, we further studied stool metabolites using nuclear magnetic resonance (NMR) spectroscopy. (3) Results: In healthy subjects, PHGG had significant effects on stool frequency and consistency. These effects were paralleled by changes in α- (species evenness) and β-diversity (Bray–Curtis distances), along with increasing abundances of metabolites including butyrate, acetate and various amino acids. On a taxonomic level, PHGG intake was associated with a bloom in , , and and a reduction in , and . The majority of effects disappeared after stopping the prebiotic and most effects tended to be more pronounced in male participants. (4) Conclusions: Herein, we describe novel aspects of the prebiotic PHGG on compositional and functional properties of the healthy human microbiota.
机译:(1)背景:已经通过还原论的致生菌模型在各种疾病实体中发现了人类肠道菌群结构组成的变化,以及令人兴奋的机制线索。通过有益地调节改变的微生物群来改善健康是一种有前途的治疗方法。益生元是宿主微生物选择性使用的赋予健康的底物,可广泛用于饮食和临床干预。在本文中,我们试图研究可溶性纤维,部分水解的瓜尔豆胶(PHGG)的微生物模拟作用。 (2)方法:我们在20名健康志愿者中进行了为期9周的临床试验,其中包括为期3周的导入期,随后为3周的干预阶段,其中研究对象每天接受3次5 g PHGG,最后是三个星期的淘汰期。每天记录大便日记,并每周收集临床数据以及血清/血浆和粪便样本。 PHGG诱导的肠道菌群变化通过V1-V3和V3-V4区的16S宏基因组学进行了研究。为了获得功能上的见识,我们使用核磁共振(NMR)光谱进一步研究了粪便代谢产物。 (3)结果:在健康受试者中,PHGG对大便次数和稠度有显着影响。这些影响与α-(物种均匀度)和β-多样性(布雷-柯蒂斯距离)的变化以及丁酸,乙酸盐和各种氨基酸等代谢产物的丰度增加并行。在分类学水平上,PHGG的摄入量与,,和和的降低有关。停止使用益生元后,大多数作用消失了,并且大多数作用在男性受试者中趋于更加明显。 (4)结论:在这里,我们描述了益生元PHGG在健康人类微生物群的组成和功能特性方面的新颖方面。

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