Background and Purpose—Although in vitro studies suggest that non-neurogenic regions of the adult central nervous system potentially contain multipotent parenchymal progenitors, neurons are clearly not replaced in most brain regions after injury. Here, in a well-established model of mild transient brain ischemia, we explored Olig2 antagonism and Pax6 overexpression as potential avenues to redirect endogenous progenitors proliferating in situ toward a neuronal fate. Methods—Retroviral vectors containing either Pax6 or a strong activator form of the repressor Olig2 (Olig2VP16), ie, a functionally dominant negative form of Olig2, were stereotaxically injected into the lateral striatum at 48 hours after 30 minutes middle cerebral artery occlusi...
161 p.Brain stroke is the second cause of death worldwide. Among the cerebrovascular accidents, isch...
SummaryThe adult cerebral cortex lacks the capacity to replace degenerated neurons following traumat...
Recent studies have revealed that the adult mammalian brain has the capacity to regenerate some neur...
BACKGROUND AND PURPOSE: Although in vitro studies suggest that non-neurogenic regions of the adult c...
BACKGROUND AND PURPOSE: Although in vitro studies suggest that non-neurogenic regions of the adult c...
Despite the presence of neural stem cells and ongoing neurogenesis in some regions of the adult mamm...
Despite the presence of on-going neurogenesis in the adult mammalian brain, neurons are generally no...
The mechanisms by which neural and glial progenitor cells in the adult brain respond to tissue injur...
The therapeutic effect of in vivo direct reprogramming on ischemic stroke has not been evaluated. In...
Neurosphere cultures are widely used to propagate multipotent CNS precursors, but their differentiat...
Astroglia from the postnatal cerebral cortex can be reprogrammed in vitro to generate neurons follow...
Gliomas are aggressive tumors of the central nervous system originating from proliferating neural ce...
Gliomas are aggressive tumors of the central nervous system originating from proliferating neural ce...
AbstractOlig2 is a basic helix–loop–helix transcription factor essential for oligodendrocyte and mot...
Adult stem cells reside in different tissues and organs of the adult organism. Among these cells are...
161 p.Brain stroke is the second cause of death worldwide. Among the cerebrovascular accidents, isch...
SummaryThe adult cerebral cortex lacks the capacity to replace degenerated neurons following traumat...
Recent studies have revealed that the adult mammalian brain has the capacity to regenerate some neur...
BACKGROUND AND PURPOSE: Although in vitro studies suggest that non-neurogenic regions of the adult c...
BACKGROUND AND PURPOSE: Although in vitro studies suggest that non-neurogenic regions of the adult c...
Despite the presence of neural stem cells and ongoing neurogenesis in some regions of the adult mamm...
Despite the presence of on-going neurogenesis in the adult mammalian brain, neurons are generally no...
The mechanisms by which neural and glial progenitor cells in the adult brain respond to tissue injur...
The therapeutic effect of in vivo direct reprogramming on ischemic stroke has not been evaluated. In...
Neurosphere cultures are widely used to propagate multipotent CNS precursors, but their differentiat...
Astroglia from the postnatal cerebral cortex can be reprogrammed in vitro to generate neurons follow...
Gliomas are aggressive tumors of the central nervous system originating from proliferating neural ce...
Gliomas are aggressive tumors of the central nervous system originating from proliferating neural ce...
AbstractOlig2 is a basic helix–loop–helix transcription factor essential for oligodendrocyte and mot...
Adult stem cells reside in different tissues and organs of the adult organism. Among these cells are...
161 p.Brain stroke is the second cause of death worldwide. Among the cerebrovascular accidents, isch...
SummaryThe adult cerebral cortex lacks the capacity to replace degenerated neurons following traumat...
Recent studies have revealed that the adult mammalian brain has the capacity to regenerate some neur...