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DNGR-1-tracing marks an ependymal cell subset with damage-responsive neural stem cell potential

  • Bruno Frederico*
  • , Isaura Martins
  • , Diana Chapela
  • , Francesca Gasparrini
  • , Probir Chakravarty
  • , Tobias Ackels
  • , Cécile Piot
  • , Bruna Almeida
  • , Joana Carvalho
  • , Alessandro Ciccarelli
  • , Christopher J. Peddie
  • , Neil Rogers
  • , James Briscoe
  • , François Guillemot
  • , Andreas T. Schaefer
  • , Leonor Saúde
  • , Caetano Reis e Sousa*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

18 Citations (Scopus)

Abstract

Cells with latent stem ability can contribute to mammalian tissue regeneration after damage. Whether the central nervous system (CNS) harbors such cells remains controversial. Here, we report that DNGR-1 lineage tracing in mice identifies an ependymal cell subset, wherein resides latent regenerative potential. We demonstrate that DNGR-1-lineage-traced ependymal cells arise early in embryogenesis (E11.5) and subsequently spread across the lining of cerebrospinal fluid (CSF)-filled compartments to form a contiguous sheet from the brain to the end of the spinal cord. In the steady state, these DNGR-1-traced cells are quiescent, committed to their ependymal cell fate, and do not contribute to neuronal or glial lineages. However, trans-differentiation can be induced in adult mice by CNS injury or in vitro by culture with suitable factors. Our findings highlight previously unappreciated ependymal cell heterogeneity and identify across the entire CNS an ependymal cell subset wherein resides damage-responsive neural stem cell potential.

Original languageEnglish
Pages (from-to)1957-1975.e9
Number of pages29
JournalDevelopmental Cell
Volume57
Issue number16
DOIs
Publication statusPublished - 22 Aug 2022
Externally publishedYes

Keywords

  • CLEC9A
  • Dendritic cells
  • Ependymal cells
  • Neural stem cells
  • Tissue repair

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