Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ layers and, in vitro, can differentiate into multiple cell lineages, offering broad perspectives in regenerative medicine. Understanding the molecular mechanisms governing ES cell commitment is an essential challenge in this field. The Mitogen Activated Protein Kinase (MAPK) pathways, ERK, JNK and p38MAPK, are able to regulate ES commitment from early steps of the process to mature differentiated cells. Whereas the ERK pathway inhibits the self-renewal of ES cells, upon commitment this pathway is involved in the development of extraembryonic tissues, in early mesoderm differentiation and in the formation of mature adipocytes; p38MAPK displays...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ ...
Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ ...
Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ ...
Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ ...
AbstractExtracellular signal-regulated kinases (ERKs) have many important functions during embryogen...
<div><p>Embryonic stem cells and induced pluripotent stem cells represent potentially important ther...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
Abstract Background Pluripotent stem cells hold great promise for regenerative medicine. However, be...
Embryonic stem cells and induced pluripotent stem cells represent potentially important therapeutic ...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ ...
Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ ...
Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ ...
Embryonic Stem (ES) cells can give rise, in vivo, to the ectodermal, endodermal and mesodermal germ ...
AbstractExtracellular signal-regulated kinases (ERKs) have many important functions during embryogen...
<div><p>Embryonic stem cells and induced pluripotent stem cells represent potentially important ther...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
Abstract Background Pluripotent stem cells hold great promise for regenerative medicine. However, be...
Embryonic stem cells and induced pluripotent stem cells represent potentially important therapeutic ...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...