益生元
菊粉
肠道菌群
果聚糖
食品科学
双歧杆菌
粪便
化学
生物
发酵
微生物学
乳酸菌
生物化学
果糖
作者
Doris Vandeputte,Gwen Falony,Sara Vieira‐Silva,Jun Wang,Manuela Sailer,Stephan Theis,Kristin Verbeke,Jeroen Raes
出处
期刊:Gut
[BMJ]
日期:2017-02-17
卷期号:66 (11): 1968-1974
被引量:411
标识
DOI:10.1136/gutjnl-2016-313271
摘要
Objective
Contrary to the long-standing prerequisite of inducing selective (ie, bifidogenic) effects, recent findings suggest that prebiotic interventions lead to ecosystem-wide microbiota shifts. Yet, a comprehensive characterisation of this process is still lacking. Here, we apply 16S rDNA microbiota profiling and matching (gas chromatography mass spectrometry) metabolomics to assess the consequences of inulin fermentation both on the composition of the colon bacterial ecosystem and faecal metabolites profiles. Design
Faecal samples collected during a double-blind, randomised, cross-over intervention study set up to assess the effect of inulin consumption on stool frequency in healthy adults with mild constipation were analysed. Faecal microbiota composition and metabolite profiles were linked to the study9s clinical outcome as well as to quality-of-life measurements recorded. Results
While faecal metabolite profiles were not significantly altered by inulin consumption, our analyses did detect a modest effect on global microbiota composition and specific inulin-induced changes in relative abundances of Anaerostipes, Bilophila and Bifidobacterium were identified. The observed decrease in Bilophila abundances following inulin consumption was associated with both softer stools and a favourable change in constipation-specific quality-of-life measures. Conclusions
Ecosystem-wide analysis of the effect of a dietary intervention with prebiotic inulin-type fructans on the colon microbiota revealed that this effect is specifically associated with three genera, one of which (Bilophila) representing a promising novel target for mechanistic research. Trial registration number
NCT02548247.
科研通智能强力驱动
Strongly Powered by AbleSci AI