Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) cells have provided new tools for investigating the molecular mechanisms underlying cell fate choices. We extensively characterized the developmental potential of ES-induced neural cells obtained using an adaptation of the multistep induction protocol. We provided evidence that ES-derived neural proliferating cells are endowed with stem cell properties such as extensive self-renewal capacity and single-cell multipotency. In differentiating conditions, cells matured exclusively into neurons, astrocytes, and oligodendrocytes. All these features have been previously described in only somatic neural stem cells (NSCs). Therefore, we consider it mor...
<div><p>Human embryonic stem cells (hESC) and induced pluripotent stem cells (iPSC) provide new pros...
Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and ...
Neural stem cells (NSCs) are the most primordial and least committed cells of the nervous system, th...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
The study of neuronal differentiation of embryonic stem cells has raised major interest over recent ...
Neuronal cell loss is a common feature of many neurological disorders, including stroke, Parkinson’s...
Neuronal cell loss is a common feature of many neurological disorders, including stroke, Parkinson’s...
In embryonic stem cells (ESCs) neural differentiation is elicited in the absence of extrinsic signal...
In embryonic stem cells (ESCs) neural differentiation is elicited in the absence of extrinsic signal...
Neural stem (NS) cells are a homogenous population of stem cells that expands in monolayer under ser...
generation of neurons from embryonic stem (ES) cells is a promising approach to produce cells suita...
Neural stem (NS) cells are multipotent cells defined by their capacity to proliferate and differenti...
Neural stem (NS) cells are a homogenous population of stem cells that expands in monolayer under ser...
generation of neurons from embryonic stem (ES) cells is a promising approach to produce cells suita...
Recent advances in stem cell technology afford an unlimited source of neural progenitors and glial c...
<div><p>Human embryonic stem cells (hESC) and induced pluripotent stem cells (iPSC) provide new pros...
Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and ...
Neural stem cells (NSCs) are the most primordial and least committed cells of the nervous system, th...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
The study of neuronal differentiation of embryonic stem cells has raised major interest over recent ...
Neuronal cell loss is a common feature of many neurological disorders, including stroke, Parkinson’s...
Neuronal cell loss is a common feature of many neurological disorders, including stroke, Parkinson’s...
In embryonic stem cells (ESCs) neural differentiation is elicited in the absence of extrinsic signal...
In embryonic stem cells (ESCs) neural differentiation is elicited in the absence of extrinsic signal...
Neural stem (NS) cells are a homogenous population of stem cells that expands in monolayer under ser...
generation of neurons from embryonic stem (ES) cells is a promising approach to produce cells suita...
Neural stem (NS) cells are multipotent cells defined by their capacity to proliferate and differenti...
Neural stem (NS) cells are a homogenous population of stem cells that expands in monolayer under ser...
generation of neurons from embryonic stem (ES) cells is a promising approach to produce cells suita...
Recent advances in stem cell technology afford an unlimited source of neural progenitors and glial c...
<div><p>Human embryonic stem cells (hESC) and induced pluripotent stem cells (iPSC) provide new pros...
Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and ...
Neural stem cells (NSCs) are the most primordial and least committed cells of the nervous system, th...