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  4. Intestinal Stem and Progenitor Cells Exhibit Distinct Adaptive Responses to Inflammatory Stress in IBD
 
preprint

Intestinal Stem and Progenitor Cells Exhibit Distinct Adaptive Responses to Inflammatory Stress in IBD

Ordonez-Moran, Paloma
•
Balasubramanian, Brinda
•
Patel, Shivam
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December 13, 2025

Background Intestinal epithelial stem cells (SCs) and their transit-amplifying (TA) progeny are critical for mucosal repair and regeneration. However, their behaviour under chronic inflammatory conditions, such as those observed in Inflammatory Bowel Disease (IBD), remains incompletely understood. Methods We investigated the impact of chronic inflammation on intestinal stem/progenitor cells by integrating bulk RNA sequencing from the largest IBD biopsy cohort to date with single-cell transcriptomic analysis and experimental assays using patient-derived intestinal organoids. Results Active inflammation was associated with a reduction in canonical LGR5⁺ intestinal stem cells and a concurrent expansion of OLFM4⁺ populations, consistent with an inflammation-induced epithelial repair program. Notably, SC/TA cells from both inflamed and non-inflamed IBD tissues exhibited persistent transcriptional changes that were distinct from those in healthy controls. Single-cell analysis identified transcriptionally heterogeneous SC/TA subpopulations, including a previously uncharacterized inflammation-associated cluster enriched in immune signalling pathways. Pseudotime trajectory analysis demonstrated a shift in differentiation toward deep crypt secretory (Paneth-like) cell lineages under inflammatory conditions. Conclusions Chronic intestinal inflammation reshapes the epithelial stem and progenitor cell compartment, promoting altered differentiation and the emergence of immune-responsive epithelial states. These findings highlight the plasticity of the human intestinal epithelium in IBD and point to new avenues for therapeutic strategies aimed at maintaining epithelial integrity during chronic inflammation.

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Type
preprint
DOI
10.64898/2025.12.11.691866
Author(s)
Ordonez-Moran, Paloma

University of Nottingham

Balasubramanian, Brinda

University of Nottingham

Patel, Shivam

University of Nottingham

Dalleywater, William

University of Nottingham

Hannan, Nick

University of Nottingham

Huelsken, Joerg  orcid-logo

École Polytechnique Fédérale de Lausanne

Moran, Gordon W

University of Nottingham

Pin, Carmen

AstraZeneca (Singapore)

Gall, Louis

University of Birmingham

Date Issued

2025-12-13

Publisher

openRxiv

Written at

EPFL

EPFL units
UPHUELSKEN  
FunderGrant Number

The Royal Society

Available on Infoscience
December 16, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/257065
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