Effect of Bifidobacterium crudilactis and 3'-sialyllactose on the toddler microbiota using the SHIME® model

Pauline Bondue1, Sarah Lebrun1, Bernard Taminiau1

  • 1Department of Food Science, Fundamental and Applied Research for Animal and Health, Faculty of Veterinary Medicine, University of Liège, 4000 Liège, Belgium.

Insights

This study used the SHIME® model to investigate prebiotic (3'SL) and probiotic (B. crudilactis) effects on toddler gut microbiota. Synbiotic treatment showed a trend towards a bifidogenic effect, suggesting potential benefits for infant gut health.

Area of Science:

  • Microbiology
  • Gastroenterology
  • Nutritional Science

Background:

  • Diet significantly impacts the intestinal microbiota in early life.
  • The Simulator of Human Intestinal Microbial Ecosystem (SHIME®) model is suitable for studying infant gut microbiota dynamics.
  • Prebiotics and probiotics can modulate gut microbiota composition and function.

Purpose of the Study:

  • To evaluate the effects of a prebiotic (3'-sialyllactose: 3'SL) and a probiotic (Bifidobacterium crudilactis FR/62/b/3) on the young child gut microbiota using the SHIME® model.
  • To assess the impact of synbiotic treatment on microbial composition, short-chain fatty acid production, and virulence gene expression of Escherichia coli O157:H7.
  • To determine the suitability of the toddler SHIME® model for investigating gut microbiota interventions.

Main Methods:

  • In vitro simulation of the toddler colon using the SHIME® model with fecal inocula from children aged 1-2 years.
  • Administration of prebiotic (3'SL), probiotic (B. crudilactis), synbiotic, and control treatments.
  • Analysis of microbial communities via 16S rDNA sequencing and short-chain fatty acids (SCFAs) by HPLC.
  • Assessment of E. coli O157:H7 virulence gene expression (luxS) using reverse transcription PCR.

Main Results:

  • SCFA profiles showed a ratio between infant and adult values. Microbial diversity was low in the ascending colon but stable in the transverse and descending colons.
  • Bifidobacteria demonstrated survival in the toddler SHIME® model, with synbiotic treatment showing a trend towards a bifidogenic effect (P < 0.1).
  • Filtered supernatants from young child feces significantly upregulated the luxS gene expression in E. coli O157:H7 (P = 0.013), indicating modulation of quorum sensing.

Conclusions:

  • The toddler SHIME® model effectively simulates key characteristics of infant and adult gut microbiota.
  • Combined administration of 3'SL and B. crudilactis shows promise for promoting bifidobacteria in the infant gut.
  • Young child fecal supernatants can influence E. coli O157:H7 virulence mechanisms, suggesting potential for microbiota-mediated pathogen control.