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Partial in vivo reprogramming enables injury-free intestinal regeneration via autonomous <i>Ptgs1</i> induction

Jumee Kim, Somi Kim, Seungyeon Lee, Beom‐Ki Jo, J. Y. Oh, Eun‐Ji Kwon, Keun-Tae Kim, Anish Ashok Adpaikar, Eun‐Jung Kim, Han‐Sung Jung, Hwa-Ryeon Kim, Jae‐Seok Roe, Chang Pyo Hong, Jong Kim, Bon‐Kyoung Koo

Science Advances · 2023 · ▲ 30 citations

Abstract

Tissue regeneration after injury involves the dedifferentiation of somatic cells, a natural adaptive reprogramming that leads to the emergence of injury-responsive cells with fetal-like characteristics. However, there is no direct evidence that adaptive reprogramming involves a shared molecular mechanism with direct cellular reprogramming. Here, we induced dedifferentiation of intestinal epithelial cells using OSKM (Oct4, Sox2, Klf4, and c-Myc) in vivo. The OSKM-induced forced dedifferentiation showed similar molecular features of intestinal regeneration, including a transition from homeostatic cell types to injury-responsive–like cell types. These injury-responsive–like cells, sharing gene signatures of revival stem cells and atrophy-induced villus epithelial cells, actively assisted tissue regeneration following damage. In contrast to normal intestinal regeneration involving Ptgs2 induction, the OSKM promotes autonomous production of prostaglandin E2 via epithelial Ptgs1 expression. These results indicate prostaglandin synthesis is a common mechanism for intestinal regeneration but involves a different enzyme when partial reprogramming(definition) is applied to the intestinal epithelium.

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OpenAlex
DOI
10.1126/sciadv.adi8454
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2026-06-18 MST

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APA
Kim, J., Kim, S., Lee, S., Jo, B., Oh, J.Y., Kwon, E., Kim, K., Adpaikar, A.A., Kim, E., Jung, H., Kim, H., Roe, J., Hong, C.P., Kim, J., Koo, B., &amp; Cha, H. (2023). Partial in vivo reprogramming enables injury-free intestinal regeneration via autonomous <i>Ptgs1</i> induction. <em>Science Advances</em>. https://doi.org/10.1126/sciadv.adi8454
Vancouver
Kim J, Kim S, Lee S, Jo B, Oh JY, Kwon E, et al. Partial in vivo reprogramming enables injury-free intestinal regeneration via autonomous <i>Ptgs1</i> induction. Science Advances. 2023. doi:10.1126/sciadv.adi8454.
BibTeX
@article{jumee2023Partia, title = {Partial in vivo reprogramming enables injury-free intestinal regeneration via autonomous <i>Ptgs1</i> induction}, author = {Jumee Kim and Somi Kim and Seungyeon Lee and Beom‐Ki Jo and J. Y. Oh and Eun‐Ji Kwon and Keun-Tae Kim and Anish Ashok Adpaikar and Eun‐Jung Kim and Han‐Sung Jung and Hwa-Ryeon Kim and Jae‐Seok Roe and Chang Pyo Hong and Jong Kim and Bon‐Kyoung Koo and Hyuk‐Jin Cha}, journal = {Science Advances}, year = {2023}, doi = {10.1126/sciadv.adi8454}, }

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