Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) is crucial for the development of therapeutic strategies based on the stimulation of their endogenous regenerative potential in the damaged brain. We show that LeXbright cells sorted from the adult mouse subventricular zone exhibit all the characteristic features of quiescent NSCs. Indeed, they constitute a subpopulation of slowly dividing cells that is able to enter the cell cycle to regenerate the irradiated niche. Comparative transcriptomic analyses showed that they express hallmarks of NSCs but display a distinct molecular signature from activated NSCs (LeX+EGFR+ cells). Particularly, numerous membrane receptors are expressed on quiescent ...
Neurogenic niches in the adult mammalian brain are composed of heterogeneous populations of neural s...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
Regeneration of the adult human brain is a long time clinical challenge. The adult mammalian brain c...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
AbstractQuiescent neural stem cells (NSCs) are considered the reservoir for adult neurogenesis, gene...
Adult neural stem cells are unique as they achieve constant generation of new neurons in the adult m...
Summary: Throughout life, adult neural stem cells (NSCs) produce new neurons and glia that contribut...
Adult neural stem cells are unique as they achieve constant generation of new neurons in the adult m...
SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and reg...
Neurogenic niches in the adult mammalian brain are composed of heterogeneous populations of neural s...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
Regeneration of the adult human brain is a long time clinical challenge. The adult mammalian brain c...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
AbstractQuiescent neural stem cells (NSCs) are considered the reservoir for adult neurogenesis, gene...
Adult neural stem cells are unique as they achieve constant generation of new neurons in the adult m...
Summary: Throughout life, adult neural stem cells (NSCs) produce new neurons and glia that contribut...
Adult neural stem cells are unique as they achieve constant generation of new neurons in the adult m...
SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and reg...
Neurogenic niches in the adult mammalian brain are composed of heterogeneous populations of neural s...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...