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抗性糊精对肠道气体平衡和微生物群的影响。

Effect of Resistant Dextrin on Intestinal Gas Homeostasis and Microbiota.

机构信息

Digestive System Research Unit, University Hospital Vall d'Hebron, 08035 Barcelona, Spain.

Departament de Medicina, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.

出版信息

Nutrients. 2022 Nov 2;14(21):4611. doi: 10.3390/nu14214611.

Abstract

Previous studies have shown that a resistant dextrin soluble fibre has prebiotic properties with related health benefits on blood glucose management and satiety. Our aim was to demonstrate the effects of continuous administration of resistant dextrin on intestinal gas production, digestive sensations, and gut microbiota metabolism and composition. Healthy subjects ( = 20) were given resistant dextrin (14 g/d NUTRIOSE, Roquette Frères, Lestrem, France) for four weeks. Outcomes were measured before, at the beginning, end, and two weeks after administration: anal evacuations of gas during daytime; digestive perception, girth, and gas production in response to a standard meal; sensory and digestive responses to a comfort meal; volume of colonic biomass by magnetic resonance; taxonomy and metabolic functions of fecal microbiota by shotgun sequencing; metabolomics in urine. Dextrin administration produced an initial increase in intestinal gas production and gas-related sensations, followed by a subsequent decrease, which magnified after discontinuation. Dextrin enlarged the volume of colonic biomass, inducing changes in microbial metabolism and composition with an increase in short chain fatty acids-producing species and modulation of bile acids and biotin metabolism. These data indicate that consumption of a soluble fibre induces an adaptative response of gut microbiota towards fermentative pathways with lower gas production.

摘要

先前的研究表明,抗性糊精这种可溶性膳食纤维具有益生元特性,对血糖管理和饱腹感有相关的健康益处。我们的目的是证明连续摄入抗性糊精对肠道气体生成、消化感觉以及肠道微生物群代谢和组成的影响。20 名健康受试者连续四周每天摄入 14 克抗性糊精(NUTRIOSE,罗盖特,法国)。在摄入前、摄入开始时、结束时以及停止摄入两周后测量结果:日间肛门排气;标准餐引起的消化感知、腰围和气体生成;舒适餐的感官和消化反应;磁共振结肠生物量体积;粪便微生物群的分类和代谢功能的鸟枪法测序;尿液代谢组学。糊精的摄入最初会增加肠道气体生成和与气体相关的感觉,随后会减少,而在停止摄入后,这种减少会加剧。糊精会增加结肠生物量的体积,通过增加产生短链脂肪酸的物种,以及调节胆汁酸和生物素代谢,引起微生物代谢和组成的变化。这些数据表明,可溶性纤维的摄入会引起肠道微生物群对发酵途径的适应性反应,从而减少气体生成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c064/9654059/6ba91ceda91a/nutrients-14-04611-g001.jpg

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