Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and in vitro. Based on their capability to proliferate and differentiate, these ES cells appear as a very promising tool for cell therapy. The understanding of the molecular mechanisms underlying the neural differentiation of the ES cells is a pre-requisite for selecting adequately the cells and conditions which will be able to correctly repair damaged brain and restore altered cognitive functions. Different methods allow obtaining neural cells from ES cells. Most of the techniques differentiate ES cells by treating embryoid bodies in order to keep an embryonic organization. More recent techniques, based on conditioned media, induce a direct diff...
AbstractEmbryonic stem cells readily generate neurons in vitro, but steering their differentiation i...
The unique characteristics of stem cells—their ability to self-renew and to differentiate into many ...
[[abstract]]The central nervous system (CNS) is a highly complicate network in the brain that can be...
Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and ...
Parce qu’elles représentent une réserve cellulaire quasi illimitée par leur propriété d’autorenouvel...
Published in Journal of Neuroscience Research, 2004; 76 (2):184-192 at www.interscience.wiley.comThe...
The study of neuronal differentiation of embryonic stem cells has raised major interest over recent ...
Background: The in vitro generation of neurons from embryonic stem (ES) cells is a promising approac...
During the last few years, embryonic stem (ES) cells have been a new tool in cell biology which is v...
The potential to generate virtually any differentiated cell type from embryonic stem cells (ESCs) of...
Embryonic stem (ES) cells are a useful experimental material to recapitulate the differentiation ste...
Ce travail de thèse a été consacré à la transgenèse et la différenciation neuronale des cellules sou...
During embryogenesis the central and peripheral nervous systems arise from a neural precursor popula...
Die vorliegende kumulative Habilitationsschrift stellt die Differenzierungskapazität von murinen emb...
Mouse embryonic stem (ES) cells are derived from mouse blastocyst and are able to generate all embry...
AbstractEmbryonic stem cells readily generate neurons in vitro, but steering their differentiation i...
The unique characteristics of stem cells—their ability to self-renew and to differentiate into many ...
[[abstract]]The central nervous system (CNS) is a highly complicate network in the brain that can be...
Pluripotent murine embryonic stem (ES) cells can differentiate into all cell types both in vivo and ...
Parce qu’elles représentent une réserve cellulaire quasi illimitée par leur propriété d’autorenouvel...
Published in Journal of Neuroscience Research, 2004; 76 (2):184-192 at www.interscience.wiley.comThe...
The study of neuronal differentiation of embryonic stem cells has raised major interest over recent ...
Background: The in vitro generation of neurons from embryonic stem (ES) cells is a promising approac...
During the last few years, embryonic stem (ES) cells have been a new tool in cell biology which is v...
The potential to generate virtually any differentiated cell type from embryonic stem cells (ESCs) of...
Embryonic stem (ES) cells are a useful experimental material to recapitulate the differentiation ste...
Ce travail de thèse a été consacré à la transgenèse et la différenciation neuronale des cellules sou...
During embryogenesis the central and peripheral nervous systems arise from a neural precursor popula...
Die vorliegende kumulative Habilitationsschrift stellt die Differenzierungskapazität von murinen emb...
Mouse embryonic stem (ES) cells are derived from mouse blastocyst and are able to generate all embry...
AbstractEmbryonic stem cells readily generate neurons in vitro, but steering their differentiation i...
The unique characteristics of stem cells—their ability to self-renew and to differentiate into many ...
[[abstract]]The central nervous system (CNS) is a highly complicate network in the brain that can be...