Patient-derived colon epithelial organoids reveal lipid-related metabolic dysfunction in pediatric ulcerative colitis

B Babajide A. Ojo Y Ying Zhu L Lyong Heo S Sejal R. Fox Y Yanli Qiao A Amanda Waddell M Maria E. Moreno-Fernandez M Marielle Gibson T Tracy Tran A Ashley L. Dunn E Essam I. A. Elknawy N Neetu Saini J Javier A. López-Rivera S Senad Divanovic Y Yuqin Dai V Vinicio A. de Jesus Perez M Michael J. Rosen

Abstract

Abstract Ulcerative colitis (UC) is associated with epithelial metabolic derangements which exacerbate gut inflammation. Here, we develop colon organoid (colonoid) lines from pediatric patients with endoscopically active UC, inactive UC, and those without intestinal inflammation to interrogate functional metabolic differences in the colon epithelia. We demonstrate that active UC colonoids exhibit hypermetabolic features and cellular stress, specifically during differentiation. Hypermetabolism in active UC colonoids is driven, in part, by increased proton leak, and excess lipid accumulation. Active UC colonoids exhibit heightened activation of the master lipid regulator PPAR-α and its transcriptional pathways. Pharmacological PPAR-α inhibition limits lipid accumulation, induces a metabolic shift towards glucose utilization, suppresses hypermetabolism, and reduces chemokine secretion and cellular stress markers. Collectively, our findings identify lipid-related metabolic dysfunction as a key pathologic feature of the pediatric UC epithelium and highlight the potential of patient-derived colonoids as a preclinical model for evaluating epithelial-targeted therapies addressing this dysfunction.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 10, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

B

Babajide A. Ojo

Y

Ying Zhu

L

Lyong Heo

S

Sejal R. Fox

Y

Yanli Qiao

A

Amanda Waddell

M

Maria E. Moreno-Fernandez

M

Marielle Gibson

T

Tracy Tran

A

Ashley L. Dunn

E

Essam I. A. Elknawy

N

Neetu Saini

J

Javier A. López-Rivera

S

Senad Divanovic

Y

Yuqin Dai

V

Vinicio A. de Jesus Perez

M

Michael J. Rosen