The defining characteristic of neural stem cells (NSCs) is their ability to multiply through symmetric divisions and proliferation, and differentiation by asymmetric divisions, thus giving rise to different types of cells of the central nervous system (CNS). A strict temporal space control of the NSC differentiation is necessary, because its alterations are associated with neurological dysfunctions and, in some cases, death. This work reviews the current state of the molecular mechanisms that regulate the transcription in NSCs, organized according to whether the origin of the stimulus that triggers the molecular cascade in the CNS is internal (intrinsic factors) or whether it is the result of the microenvironment that surrounds the CNS (ext...
During development of the mammalian nervous system, neural stem cells generate neurons first and gl...
Adult neural stem cells (NSCs) play important roles in learning and memory and are negatively impact...
The discovery of neural stem cells has revealed a much higher structural and functional plasticity i...
The adult mammalian brain contains self-renewable, multipotent neural stem cells (NSCs) that are res...
Neural stem cells (NSCs) have been proposed as a promising cellular source for the treatment of dise...
International audienceNeural stem cells (NSCs) represent a remarkable developmental unit, necessary ...
Neural stem cells (NSCs) derive from the neuroepithelium of the neural tube, develop into radial gli...
essenger RNA (mRNA) is one of the key factors that regulate cellular functions and is actively invol...
International audienceThe mechanisms underlying the temporal specification of neural stem cells (NSC...
The identification of self-renewing and multipotent neural stem cells (NSCs) in the mammalian brain ...
[[abstract]]Stem cells self-renew and generate various cell types in their respective lineages. They...
How a single fertilized cell generates diverse neuronal populations has been a fundamental biologica...
The identification of intracellular molecules and soluble factors that are important for neuronal di...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
Neuronal differentiation relies on a set of interconnected molecular events to achieve the different...
During development of the mammalian nervous system, neural stem cells generate neurons first and gl...
Adult neural stem cells (NSCs) play important roles in learning and memory and are negatively impact...
The discovery of neural stem cells has revealed a much higher structural and functional plasticity i...
The adult mammalian brain contains self-renewable, multipotent neural stem cells (NSCs) that are res...
Neural stem cells (NSCs) have been proposed as a promising cellular source for the treatment of dise...
International audienceNeural stem cells (NSCs) represent a remarkable developmental unit, necessary ...
Neural stem cells (NSCs) derive from the neuroepithelium of the neural tube, develop into radial gli...
essenger RNA (mRNA) is one of the key factors that regulate cellular functions and is actively invol...
International audienceThe mechanisms underlying the temporal specification of neural stem cells (NSC...
The identification of self-renewing and multipotent neural stem cells (NSCs) in the mammalian brain ...
[[abstract]]Stem cells self-renew and generate various cell types in their respective lineages. They...
How a single fertilized cell generates diverse neuronal populations has been a fundamental biologica...
The identification of intracellular molecules and soluble factors that are important for neuronal di...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
Neuronal differentiation relies on a set of interconnected molecular events to achieve the different...
During development of the mammalian nervous system, neural stem cells generate neurons first and gl...
Adult neural stem cells (NSCs) play important roles in learning and memory and are negatively impact...
The discovery of neural stem cells has revealed a much higher structural and functional plasticity i...