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March 31, 2026Cellular and Molecular Gastroenterology and Hepatology5 citationsOpen Access

Intestinal Stem Cells from Patients with Inflammatory Bowel Disease Retain an Epigenetic Memory of Inflammation

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FHFeda H. HamdanMFMona FarhadipourIPIsaiah Pérez

Key Points

  • To investigate if intestinal stem cells from inflammatory bowel disease patients retain epigenetic memory of past inflammation.
  • Derived colonic organoids from inflamed and noninflamed regions of ulcerative colitis patients.
  • Performed chromatin profiling to identify accessible regions associated with inflammation.
  • Assessed transcriptional responses and wound closure in organoids upon re-challenge with injury.
  • Identified 2,252 unique accessible chromatin regions in inflamed organoids tied to stress responses.
  • Despite open chromatin, about 95% of relevant genes were not upregulated, indicating a preparatory state.
  • Inflamed organoids showed enhanced responses and faster wound closure after re-challenge, but with reduced growth and barrier function.

Abstract

Intestinal epithelial damage and impaired repair are hallmarks of ulcerative colitis (UC), even after inflammation resolves. Intestinal stem cells (ISCs) can retain stable epigenetic changes after inflammation, highlighting the potential for long-lived epithelial memory in the gut. Inflammatory injury in barrier tissues induces epigenetic memory in epithelial stem cells, and the tendency of UC to relapse at previously inflamed sites led us to hypothesize that ISCs from IBD patients acquire lasting memory of prior inflammation. To test this, we derived colonic organoids from inflamed (I) and noninflamed regions of the same UC patients and propagated in long-term culture. Chromatin profiling revealed 2,252 accessible regions unique to I organoids, associated with stress response, repair, and inflammatory genes. Although these regions remained accessible, ∼95% of associated genes were not upregulated in I organoids, indicating a primed state. Upon inflammatory or injury re-challenge, I organoids exhibited heightened transcriptional responses and accelerated wound closure, despite reduced clonogenicity and impaired barrier function, indicating a retained inflammatory memory program. Our findings demonstrate that human ISCs retain a chromatin-based memory of inflammation that persists in the absence of immune cues and shapes future responses to injury. While this may support epithelial adaptation to secondary insults, it may predispose tissue to relapse in patients with UC.

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Cite This Study

Hamdan et al. (2026) studied this question.

synapsesocial.com/papers/69cb63c9e6a8c024954b8852https://doi.org/10.1016/j.jcmgh.2026.101774
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