Despite heterogeneity across the six layers of the mammalian cortex, all excitatory neurons are generated from a single founder population of neuroepithelial stem cells. However, how these progenitors alter their layer competence over time remains unknown. Here, we used human embryonic stem cell-derived cortical progenitors to examine the role of fibroblast growth factor (FGF) and Notch signaling in influencing cell fate, assessing their impact on progenitor phenotype, cell-cycle kinetics, and layer specificity. Forced early cell-cycle exit, via Notch inhibition, caused rapid, near-exclusive generation of deep-layer VI neurons. In contrast, prolonged FGF2 promoted proliferation and maintained progenitor identity, delaying laminar progressio...
Abstract Neural stem cells are undifferentiated precursor cells that proliferate, self-renew, and gi...
Generation of the spinal cord relies on proliferation of undifferentiated cells located in a caudal ...
Intracellular transcriptional regulators and extracellular signaling pathways together regulate the ...
The Notch and fibroblast growth factor (FGF) pathways both regulate cell fate specification during m...
This study elucidated the stage-specific roles of FGF2 signaling during neural development using in-...
The mammalian cerebral neocortex is a complex six-layered structure containing multiple types of neu...
[[abstract]]Background: Neural induction is a complex process and the detailed mechanism of FGF-indu...
From neurulation to postnatal processes, the importance of FGF signaling in many aspects of neural p...
AbstractFor the correct development of the central nervous system, the balance between self-renewing...
SummaryRadial glia (RG), the progenitors of cortical neurons and basal progenitors (BPs), differenti...
There is growing evidence that neurogenesis is widespread within the postnatal/adult brain, in areas...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
We have previously shown that mice carrying the K644E kinase domain mutation in fibroblast growth fa...
Previous analyses of labelled clones of cells within the developing nervous system of the mouse have...
Abstract Background Neural stem cells (NSCs) are present in the adult mammalian brain and sustain li...
Abstract Neural stem cells are undifferentiated precursor cells that proliferate, self-renew, and gi...
Generation of the spinal cord relies on proliferation of undifferentiated cells located in a caudal ...
Intracellular transcriptional regulators and extracellular signaling pathways together regulate the ...
The Notch and fibroblast growth factor (FGF) pathways both regulate cell fate specification during m...
This study elucidated the stage-specific roles of FGF2 signaling during neural development using in-...
The mammalian cerebral neocortex is a complex six-layered structure containing multiple types of neu...
[[abstract]]Background: Neural induction is a complex process and the detailed mechanism of FGF-indu...
From neurulation to postnatal processes, the importance of FGF signaling in many aspects of neural p...
AbstractFor the correct development of the central nervous system, the balance between self-renewing...
SummaryRadial glia (RG), the progenitors of cortical neurons and basal progenitors (BPs), differenti...
There is growing evidence that neurogenesis is widespread within the postnatal/adult brain, in areas...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
We have previously shown that mice carrying the K644E kinase domain mutation in fibroblast growth fa...
Previous analyses of labelled clones of cells within the developing nervous system of the mouse have...
Abstract Background Neural stem cells (NSCs) are present in the adult mammalian brain and sustain li...
Abstract Neural stem cells are undifferentiated precursor cells that proliferate, self-renew, and gi...
Generation of the spinal cord relies on proliferation of undifferentiated cells located in a caudal ...
Intracellular transcriptional regulators and extracellular signaling pathways together regulate the ...