Non-absorbable, fermentable residues in the diet increase intestinal gas production and induce gas-related symptoms, such as flatulence, abdominal bloating and distention; however, prebiotics, which are also fermented by colonic bacteria, have been shown to improve this type of symptoms. The aim is to demonstrate whether a prebiotic induces adaptive changes in metabolic activity of gut microbiota and colonic biomass that explain its beneficial effect on gas-related symptoms. Single-centre, single arm, open label, proof-of-concept study in healthy subjects. The study will consist of a pre-administration phase (2 wk), an administration phase (4 wk) and a post-administration phase (2 wk). A soluble prebiotic fiber (resistant dextrin 14 g/d) will be administered during the 4 wk administration phase. During 4 days immediately before, at the beginning and at the end of the administration phase and at the end of the post-administration phase participants will be put on a standard diet and the following outcomes will be measured: a) number of gas evacuations during daytime for 2 days by means of an event marker; b) volume of gas evacuated via a rectal tube during 4 hours after a test meal, by means of a barostat; c) microbiota composition by fecal analysis.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
20
Soluble prebiotic fiber (resistant dextrin 14 g/d x 4 weeks)
Vall d'Hebron Research Institut
Barcelona, Spain
Number of daily anal gas evacuations
Change in the number of anal gas evacuations measured by an event marker from beginning of treatment to end of treatment
Time frame: 28 days
Volume of anal gas evacuation
Change in the volume of anal gas evacuated for 4 hours after a probe meal from beginning of treatment to end of treatment
Time frame: 28 days
Microbiota composition by fecal analysis
Change from beginning of treatment to end of treatment
Time frame: 28 days
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