Related Experiment Video
Updated: May 7, 2026

An In Vitro Batch-culture Model to Estimate the Effects of Interventional Regimens on Human Fecal Microbiota
Published on: July 31, 2019
Exploratory In Vitro Evaluation of Maternal-Infant Bifidobacterium Strains for Microbiota Modulation in a Pediatric
Maria Esteban-Torres1,2, Isabel Blanco1, Andrea Asensio-Grau2
1Institute of Agrochemistry and Food Technology, Spanish National Research Council (IATA-CSIC), 46980 Paterna, Valencia, Spain.
Insights
Novel Bifidobacterium strains show promise as targeted probiotics for children with cystic fibrosis (CF). These probiotics can survive digestion and modulate gut microbiota, but effects vary by strain and individual patient responses.
Area of Science:
- Microbiology
- Gastroenterology
- Pediatric Health
Background:
- Cystic Fibrosis (CF) is linked to gut dysbiosis.
- Targeted probiotics may help manage CF-associated gut issues.
Purpose of the Study:
- Evaluate novel Bifidobacterium isolates for probiotic potential in pediatric CF patients.
- Assess in vitro survival, mucin adhesion, carbohydrate fermentation, and microbiota modulation.
Main Methods:
- In vitro assessment of five Bifidobacterium strains following FAO/WHO guidelines.
- Simulated gastrointestinal digestion and mucin adhesion assays.
- In vitro colonic fermentation with CF patient fecal inocula, analyzed by qPCR and GC-MS.
Main Results:
- Three strains (IATA01, IATA35, IATA05) survived simulated digestion.
- Strain IATA01 showed highest mucin adhesion but limited fermentation.
- All strains increased Bifidobacterium levels; effects on pathogenic and beneficial bacteria varied by strain and inoculum.
Conclusions:
- Bifidobacterium strains exhibit strain-specific effects on gut microbiota modulation in a pediatric CF context.
- Probiotic efficacy is influenced by the individual's baseline microbiota composition.
- Novel Bifidobacterium isolates warrant further investigation as targeted CF probiotics.
Abstract:
This study explores the potential of novel Bifidobacterium isolates as targeted probiotic supplements for children with cystic fibrosis (CF), a condition often associated with gut dysbiosis. Five strains of Bifidobacterium genus (B. animalis IATA01, B. pseudocatenulatum IATA35, B. longum IATA02, B. bifidum IATA13, and B. longum IATA05) isolated from maternal-infant fecal samples were assessed in vitro following the FAO/WHO guidelines. Their probiotic potential was evaluated through simulated gastrointestinal digestion in the CF context, their adhesion to mucin, and their carbohydrate fermentation capacity. Additionally, their impact on colonic microbiota modulation was analyzed using static in vitro colonic fermentation with fecal inocula from four pediatric patients with CF to assess the presence of different bacterial groups associated with dysbiosis via qPCR and short-chain fatty acid production by GC-MS. Three strains (IATA01, IATA35, and IATA05) demonstrated survival after gastrointestinal digestion, with IATA01 exhibiting the highest adhesion to mucin but limited carbohydrate fermentation capacity. All strains increased the Bifidobacterium levels after colonic fermentation, while their effects on reducing pathogenic groups and promoting beneficial bacteria such as Akkermansia and Faecalibacterium varied depending on the strain and the individual inoculum. These findings highlight the strain-specific effects of Bifidobacterium and evidence a specific impact on colonic microbiota, depending on the composition of the basal inoculum, highlighting individual-specific responses.
Related Concept Videos
Introduction to the Human Microbiota
Development of Human Microbiota
Development of the Oral Microbiota

