A Living Organoid Biobank of Crohn's Disease Patients Reveals Molecular Subtypes for Personalized Therapeutics

Insights

Patient-derived organoids from Crohn's disease (CD) reveal two molecular subtypes: one with impaired microbial clearance and another with increased senescence. These organoids enable personalized therapeutic strategies for Crohn's disease.

Area of Science:

  • Gastroenterology and Hepatology
  • Stem Cell Biology
  • Genomics and Molecular Biology

Background:

  • Crohn's disease (CD) is a complex, heterogeneous inflammatory bowel disease with no cure and limited pre-clinical models.
  • Understanding the molecular basis of CD heterogeneity is crucial for developing effective treatments.

Approach:

  • Created a biobank of Crohn's disease patient-derived organoid cultures (CD-PDOs) from 34 patients representing all clinical subtypes.
  • Utilized comparative gene expression, genome, and phenome analyses to characterize CD-PDOs.
  • Benchmarked CD-PDOs as models for the colonic epithelium in active disease.

Key Points:

  • Identified two major molecular subtypes of CD despite clinical heterogeneity: immune-deficient infectious-CD (IDICD) and stress/senescence-induced fibrostenotic-CD (S2FCD).
  • Demonstrated distinct phenotypic and functional differences between the molecular subtypes within the CD-PDO biobank.
  • Successfully used CD-PDOs for drug screening, reversing subtype-specific phenotypes with targeted therapeutics.

Conclusions:

  • Prospectively biobanked CD-organoids accurately recapitulate the colonic epithelium and disease characteristics of patients.
  • The phenome-transcriptome-genome converge on two distinct molecular subtypes of CD.
  • Phenotyped-genotyped CD-PDOs serve as platforms for pre-clinical 'Phase 0' trials, advancing personalized therapeutics for Crohn's disease.