AbstractNeurogenesis is one of the most complex events in embryonic development. However, little information is available regarding the molecular events that occur during neurogenesis. To identify regulatory genes and underlying mechanisms involved in the differentiation of embryonic stem (ES) cells to neurons, gene expression profiling was performed using cDNA microarrays. In mouse ES cells, we compared the gene expression of each differentiated cell stage using a five-stage lineage selection method. Of 10,368 genes, 1633 (16%) known regulatory genes were differentially expressed at least 2-fold or greater at one or more stages. At stage 3, during which ES cells differentiate into neural stem cells, modulation of nearly 1000 genes was obse...
Transcriptional networks, regulated by extracellular signals, control cell fate decisions and determ...
Deriving specific neural cells from embryonic stem cells (ESCs) is a promising approach for cell rep...
Neural stem cells (NSC) with self-renewal and multipotent properties serve as an ideal cell source f...
AbstractNeurogenesis is one of the most complex events in embryonic development. However, little inf...
Background: The in vitro generation of neurons from embryonic stem (ES) cells is a promising approac...
generation of neurons from embryonic stem (ES) cells is a promising approach to produce cells suita...
Global gene expression analysis of human embryonic stem cells (hESCs) that differentiate into neural...
Differentiation of embryonic stem cells (ESCs) into neurons requires a high level of transcriptional...
Almost every cell in any organism contains the same genomic content. Different cell types, however, ...
Neural stem cells (NSCs) are tissue-specific, multipotent stem cells that can differentiate into thr...
The early steps of neural development in the vertebrate embryo are regulated by sets of transcriptio...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...
The central nervous system (CNS) is responsible for our intellectual and cognitive functions and it ...
Here, we exploit the spatial separation of temporal events of neural differentiation in the elongati...
AbstractPrimitive neural stem cells (NSCs) define an early stage of neural induction, thus provide a...
Transcriptional networks, regulated by extracellular signals, control cell fate decisions and determ...
Deriving specific neural cells from embryonic stem cells (ESCs) is a promising approach for cell rep...
Neural stem cells (NSC) with self-renewal and multipotent properties serve as an ideal cell source f...
AbstractNeurogenesis is one of the most complex events in embryonic development. However, little inf...
Background: The in vitro generation of neurons from embryonic stem (ES) cells is a promising approac...
generation of neurons from embryonic stem (ES) cells is a promising approach to produce cells suita...
Global gene expression analysis of human embryonic stem cells (hESCs) that differentiate into neural...
Differentiation of embryonic stem cells (ESCs) into neurons requires a high level of transcriptional...
Almost every cell in any organism contains the same genomic content. Different cell types, however, ...
Neural stem cells (NSCs) are tissue-specific, multipotent stem cells that can differentiate into thr...
The early steps of neural development in the vertebrate embryo are regulated by sets of transcriptio...
Advances in cellular reprogramming and stem cell differentiation now enable ex vivo studies of human...
The central nervous system (CNS) is responsible for our intellectual and cognitive functions and it ...
Here, we exploit the spatial separation of temporal events of neural differentiation in the elongati...
AbstractPrimitive neural stem cells (NSCs) define an early stage of neural induction, thus provide a...
Transcriptional networks, regulated by extracellular signals, control cell fate decisions and determ...
Deriving specific neural cells from embryonic stem cells (ESCs) is a promising approach for cell rep...
Neural stem cells (NSC) with self-renewal and multipotent properties serve as an ideal cell source f...