SummaryRadial glia (RG), the progenitors of cortical neurons and basal progenitors (BPs), differentiate from neuroepithelial cells (NCs) with stem cell properties. We show that the morphogen Fgf10 is transiently expressed by NCs coincident with the transition period of NC differentiation into RG. Targeted deletion of Fgf10 delays RG differentiation, whereas overexpression has opposing effects. Delayed RG differentiation in Fgf10 mutants occurs selectively in rostral cortex, paralleled by an extended period of symmetric NC divisions increasing progenitor number, coupled with delayed and initially diminished production of neurons and BPs. RG eventually differentiate in excess number and overproduce neurons and BPs rostrally resulting in tange...
Background: Growth, differentiation and regional specification of telencephalic domains, such as the...
peer reviewedThe cerebral cortex is a highly organized structure whose development depends on divers...
The cerebral cortex is a highly organized structure whose development depends on diverse progenitor ...
SummaryRadial glia (RG), the progenitors of cortical neurons and basal progenitors (BPs), differenti...
Brain growth occurs throughout embryogenesis and early postnatal life, but its foundation is laid in...
There is growing evidence that neurogenesis is widespread within the postnatal/adult brain, in areas...
Despite heterogeneity across the six layers of the mammalian cortex, all excitatory neurons are gene...
Neural stem cells have considerable therapeutic potential because of their ability to generate defin...
International audienceDuring the development of the cortex, newly generated neurons migrate long-dis...
Summary: The balance between factors leading to proliferation and differentiation of cortical neural...
AbstractFor the correct development of the central nervous system, the balance between self-renewing...
© 2015 Hoch et al.Background: The rostral patterning center (RPC) secretes multiple fibroblast growt...
We used Fgf10-lacZ reporter mice to investigate the distribution and fate of Fgf10-expressing cells ...
AbstractThe embryonic cerebral cortex contains a population of stem-like founder cells capable of ge...
BACKGROUND: Fibroblast growth factors (Fgfs) are important regulators of cerebral cortex development...
Background: Growth, differentiation and regional specification of telencephalic domains, such as the...
peer reviewedThe cerebral cortex is a highly organized structure whose development depends on divers...
The cerebral cortex is a highly organized structure whose development depends on diverse progenitor ...
SummaryRadial glia (RG), the progenitors of cortical neurons and basal progenitors (BPs), differenti...
Brain growth occurs throughout embryogenesis and early postnatal life, but its foundation is laid in...
There is growing evidence that neurogenesis is widespread within the postnatal/adult brain, in areas...
Despite heterogeneity across the six layers of the mammalian cortex, all excitatory neurons are gene...
Neural stem cells have considerable therapeutic potential because of their ability to generate defin...
International audienceDuring the development of the cortex, newly generated neurons migrate long-dis...
Summary: The balance between factors leading to proliferation and differentiation of cortical neural...
AbstractFor the correct development of the central nervous system, the balance between self-renewing...
© 2015 Hoch et al.Background: The rostral patterning center (RPC) secretes multiple fibroblast growt...
We used Fgf10-lacZ reporter mice to investigate the distribution and fate of Fgf10-expressing cells ...
AbstractThe embryonic cerebral cortex contains a population of stem-like founder cells capable of ge...
BACKGROUND: Fibroblast growth factors (Fgfs) are important regulators of cerebral cortex development...
Background: Growth, differentiation and regional specification of telencephalic domains, such as the...
peer reviewedThe cerebral cortex is a highly organized structure whose development depends on divers...
The cerebral cortex is a highly organized structure whose development depends on diverse progenitor ...