Satellite glia of the adult dorsal root ganglia harbor stem cells that yield glia under physiological conditions and neurons in response to injury
Neurons
injury
Stem Cells
spinal cord
Article
Mice
Adult Stem Cells
03 medical and health sciences
0302 clinical medicine
DRG
stem cells
Ganglia, Spinal
peripheral nerve
satellite glial cells
Animals
Genes, Cells and Cell-Based Medicine [Topic 1]
CNS
Function and Dysfunction of the Nervous System
Neuroglia
DOI:
10.1016/j.stemcr.2022.10.002
Publication Date:
2022-11-08T16:09:10Z
AUTHORS (7)
ABSTRACT
The presence of putative stem/progenitor cells has been suggested in adult peripheral nervous system (PNS) tissue, including the dorsal root ganglion (DRG). To date, their identification and fate in pathophysiological conditions have not been addressed. Combining multiple in vitro and in vivo approaches, we identified the presence of stem cells in the adult DRG satellite glial population, and progenitors were present in the DRGs and sciatic nerve. Cell-specific transgenic mouse lines highlighted the proliferative potential of DRG stem cells and progenitors in vitro. DRG stem cells had gliogenic and neurogenic potentials, whereas progenitors were essentially gliogenic. Lineage tracing showed that, under physiological conditions, adult DRG stem cells maintained DRG homeostasis by supplying satellite glia. Under pathological conditions, adult DRG stem cells replaced DRG neurons lost to injury in addition of renewing the satellite glial pool. These novel findings open new avenues for development of therapeutic strategies targeting DRG stem cells for PNS disorders.
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CITATIONS (10)
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