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Heterogeneity of quiescent and active neural stem cells in the postnatal brain. | LitMetric

AI Article Synopsis

  • The postnatal mammalian brain contains Neural Stem Cells (NSCs) concentrated in specific areas, which are being researched for potential regenerative therapies and transplantation methods.
  • The full characteristics and capabilities of NSCs are not fully understood due to a lack of specific markers, but research is continuously advancing, particularly regarding their behavior in the Subependymal Zone (SEZ).
  • The review highlights the various stages of NSCs (primitive, definitive, quiescent, and activated) and discusses the discovery of latent NSCs outside their traditional niches, which could lead to new treatment options through innovative cell reprogramming technologies.

Article Abstract

In the postnatal mammalian brain, neurogenic activity is retained in anatomically restricted areas, driven by pools of Neural Stem Cells (NSCs). These cells and their progeny have been studied intensively as potential targets for regenerative treatments, aiming at either their manipulation or their use as sources of cells for transplantation-based strategies. Although their full identity, heterogeneity and differentiation potential remain elusive, due to the absence of specific cell-type markers, our knowledge of their properties is constantly expanding. Here, we focus on the NSC niche that is located at the Subependymal Zone (SEZ/ also known as Subventricular Zone) of the lateral ventricles of the brain. We review, summarize and explain the different faces of the NSC, as they have been described, using a wide range of experimental approaches, over a time-frame of three decades: the primitive, definitive, quiescent or activated NSC. We also review the growing evidence of the existence of latent NSCs outside of niches, in the brain parenchyma, that constitute promising new therapeutic targets, complemented by the novel technologies of cell reprogramming.

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Source
http://dx.doi.org/10.1387/ijdb.220010ikDOI Listing

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