Leveraging Human Microbiome Features to Diagnose and Stratify Children with Irritable Bowel Syndrome

Emily B Hollister1, Numan Oezguen2, Bruno P Chumpitazi3

  • 1Department of Pathology and Immunology, Baylor College of Medicine, Houston, Texas; Texas Children's Microbiome Center, Texas Children's Hospital, Houston, Texas; Diversigen, Inc., Houston, Texas; Department of Pathology, Texas Children's Hospital, Houston, Texas.

Insights

Pediatric irritable bowel syndrome (IBS) in children is linked to distinct gut microbes and metabolites. These multi-omics features can accurately differentiate children with IBS from healthy peers, paving the way for new diagnostic and therapeutic approaches.

Area of Science:

  • Microbiome research
  • Pediatric gastroenterology
  • Metabolomics

Background:

  • Accurate diagnosis and stratification of pediatric irritable bowel syndrome (IBS) are challenging.
  • Recurrent abdominal pain is a key symptom in childhood IBS.

Purpose of the Study:

  • To investigate the relationship between pediatric IBS, abdominal pain, intestinal microbes, and fecal metabolites.
  • To utilize a multi-omics strategy for enhanced characterization.

Main Methods:

  • Recruited preadolescent children (7-12 years) with Rome III IBS and healthy controls.
  • Employed whole-genome shotgun metagenomics and untargeted fecal metabolomic profiling.
  • Applied correlation analyses and machine learning for associations.

Main Results:

  • IBS cases showed distinct bacterial taxa, metagenomic functions (e.g., carbohydrate metabolism), and metabolites (e.g., secondary bile acids) compared to controls.
  • Significant associations were found between abdominal pain frequency/severity and microbial features.
  • A machine learning classifier achieved high accuracy (AUC=0.93) in distinguishing IBS cases from controls using multi-omics data.

Conclusions:

  • Intestinal microbes, genes/pathways, and metabolites are significantly associated with childhood IBS.
  • These multi-omics features can effectively differentiate children with IBS from healthy children.
  • Findings suggest potential for microbiome-guided diagnostic and therapeutic strategies in pediatric IBS.

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