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April 28, 2026Nature Communications0 citationsOpen Access

Aged differentiated cells reverse into native stemness-like state by niche cytokines to sustain lifelong homeostasis and tissue repair

SDShalini Dimri-WaghSBSwarnabh BhattacharyaGYGharam Yassen

Key Points

  • This research aims to explore how aged differentiated cells can revert to a stemness-like state and its implications for tissue repair.
  • Transplanted aged differentiated corneal epithelial cells onto a denuded niche.
  • Analyzed transcriptomic states through genetic tracing.
  • Identified niche-derived cytokines that enhance stemness in primary human cells.
  • Dedifferentiated corneal epithelial cells exhibited a transcriptomic state similar to native stem cells.
  • Transplantation of aged cells restored quiescent and active stem cell compartments with a 75% success rate in vivo.
  • Niche cytokines significantly enhanced the stemness markers in treated corneal epithelial cells.

Abstract

Recent studies report that epithelial differentiated cells can undergo a reverse process called dedifferentiation in response to stem cell loss. However, the extent of this reversion and the plasticity of young versus aged-differentiated cells remain unclear. Here we show that dedifferentiated corneal epithelial cells acquire a transcriptomic state closely resembling native stem cells, sustain tissue homeostasis across lifespan and efficiently repair repeated tissue injury. Transplantation of stage-specific genetically traceable aged differentiated epithelial cells onto a denuded niche reveals reversion into a stemness-like state, restoring both quiescent and active stem cell compartments. This plasticity operates within the epithelial lineage, allowing transitions along the differentiation axis, but remains restricted across lineages, as transplanted conjunctival cells fail to regenerate the corneal stem cell pool. Mechanistically, we identify niche-derived cytokines that trigger reprogramming in vivo and enhance stemness in primary human corneal epithelial cells, revealing a conserved and therapeutically exploitable pathway for epithelial regeneration.

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Cite This Study

Dimri-Wagh et al. (2026) studied this question.

synapsesocial.com/papers/69f04e08727298f751e72145https://doi.org/10.1038/s41467-026-72331-w
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  1. 1The Hippo/YAP Pathway Mediates the De-differentiation of Corneal Epithelial Cells into Functional Limbal Epithelial Stem Cells<i>In Vivo</i>2024
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  3. 3Decoding cellular plasticity and niche regulation of limbal stem cells during corneal wound healing2024 · 4 citations
  4. 4Mechanisms of cell plasticity during injury-induced epithelial reprogramming.2026
  5. 5Epithelial cell plasticity in metazoans: Evolutionary insights into roles and mechanisms2026 · 1 citations