AbstractThe genetic programs underlying neural stem cell (NSC) proliferation and pluripotentiality have only been partially elucidated. We compared the gene expression profile of proliferating neural stem cell cultures (NS) with cultures differentiated for 24 h (DC) to identify functionally coordinated alterations in gene expression associated with neural progenitor proliferation. The majority of differentially expressed genes (65%) were upregulated in NS relative to DC. Microarray analysis of this in vitro system was followed by high throughput screening in situ hybridization to identify genes enriched in the germinal neuroepithelium, so as to distinguish those expressed in neural progenitors from those expressed in more differentiated cel...
The differentiation of human pluripotent stem cells (hPSCs) to neural stem cells (NSCs) is the key i...
Strategies for promoting neural regeneration are hindered by the difficulty of manipulating desired ...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...
AbstractThe identification of the genes regulating neural progenitor cell (NPC) functions is of grea...
The molecular changes underlying neural progenitor differentiation are essentially unknown. We appli...
The molecular changes underlying neural progenitor differentiation are essentially unknown. We appli...
AbstractGenetic mechanisms regulating CNS progenitor function and differentiation are not well under...
Neural stem cells (NSCs) are tissue-specific, multipotent stem cells that can differentiate into thr...
Neural stem cells (NSCs) are tissue-specific, multipotent stem cells that can differentiate into thr...
The molecular changes underlying neural progenitor differentiation are essentially unknown. We appli...
Human neural stem cells have the ability to differentiate into all three major cell types in the CNS...
Global gene expression analysis of human embryonic stem cells (hESCs) that differentiate into neural...
Deriving specific neural cells from embryonic stem cells (ESCs) is a promising approach for cell rep...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
The differentiation of human pluripotent stem cells (hPSCs) to neural stem cells (NSCs) is the key i...
Strategies for promoting neural regeneration are hindered by the difficulty of manipulating desired ...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...
AbstractThe identification of the genes regulating neural progenitor cell (NPC) functions is of grea...
The molecular changes underlying neural progenitor differentiation are essentially unknown. We appli...
The molecular changes underlying neural progenitor differentiation are essentially unknown. We appli...
AbstractGenetic mechanisms regulating CNS progenitor function and differentiation are not well under...
Neural stem cells (NSCs) are tissue-specific, multipotent stem cells that can differentiate into thr...
Neural stem cells (NSCs) are tissue-specific, multipotent stem cells that can differentiate into thr...
The molecular changes underlying neural progenitor differentiation are essentially unknown. We appli...
Human neural stem cells have the ability to differentiate into all three major cell types in the CNS...
Global gene expression analysis of human embryonic stem cells (hESCs) that differentiate into neural...
Deriving specific neural cells from embryonic stem cells (ESCs) is a promising approach for cell rep...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
The differentiation of human pluripotent stem cells (hPSCs) to neural stem cells (NSCs) is the key i...
Strategies for promoting neural regeneration are hindered by the difficulty of manipulating desired ...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...