AbstractThe use of embryonic stem (ES) cells for generating healthy tissues has the potential to revolutionize therapies for human disease or injury, for which there are currently no effective treatments. Strategies for manipulating stem cell differentiation should be based on knowledge of the mechanisms by which lineage decisions are made during early embryogenesis. Here, we review current research into the factors influencing lineage differentiation in the mouse embryo and the application of this knowledge to in vitro differentiation of ES cells. In the mouse embryo, specification of tissue lineages requires cell–cell interactions that are influenced by coordinated cell migration and cellular neighborhood mediated by the key WNT, FGF, and...
Background: Since embryonic stem (ES) cells have the dual ability to proliferate indefinitely and d...
Embryonic development is orchestrated by robust and complex regulatory mechanisms acting at differen...
AbstractMouse embryonic stem (ES) cells are non-transformed cell lines derived directly from the plu...
AbstractThe use of embryonic stem (ES) cells for generating healthy tissues has the potential to rev...
Embryonic stem cells are uniquely endowed with the capacity of self-renewal and the potential to giv...
Directed differentiation of embryonic stem (ES) cells has enormous potential to derive a wide variet...
The self-renewal and pluripotency features of mouse embryonic stem cells (mESCs) make them a great t...
During the last few years, embryonic stem (ES) cells have been a new tool in cell biology which is v...
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...
Early development of the mouse comprises a sequence of cell fate decisions in which cells are guided...
Mouse embryonic stem (ES) cells are derived from mouse blastocyst and are able to generate all embry...
Embryonic stem (ES) cells are typically derived from the inner cell mass of the preimplantation blas...
Complex signaling networks control all biological processes, including embryogenesis and maintenance...
Embryonic stem (ES) cells are in vitro cultivated pluripotent cells derived from the inner cell mass...
Background: Since embryonic stem (ES) cells have the dual ability to proliferate indefinitely and d...
Embryonic development is orchestrated by robust and complex regulatory mechanisms acting at differen...
AbstractMouse embryonic stem (ES) cells are non-transformed cell lines derived directly from the plu...
AbstractThe use of embryonic stem (ES) cells for generating healthy tissues has the potential to rev...
Embryonic stem cells are uniquely endowed with the capacity of self-renewal and the potential to giv...
Directed differentiation of embryonic stem (ES) cells has enormous potential to derive a wide variet...
The self-renewal and pluripotency features of mouse embryonic stem cells (mESCs) make them a great t...
During the last few years, embryonic stem (ES) cells have been a new tool in cell biology which is v...
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...
Early development of the mouse comprises a sequence of cell fate decisions in which cells are guided...
Mouse embryonic stem (ES) cells are derived from mouse blastocyst and are able to generate all embry...
Embryonic stem (ES) cells are typically derived from the inner cell mass of the preimplantation blas...
Complex signaling networks control all biological processes, including embryogenesis and maintenance...
Embryonic stem (ES) cells are in vitro cultivated pluripotent cells derived from the inner cell mass...
Background: Since embryonic stem (ES) cells have the dual ability to proliferate indefinitely and d...
Embryonic development is orchestrated by robust and complex regulatory mechanisms acting at differen...
AbstractMouse embryonic stem (ES) cells are non-transformed cell lines derived directly from the plu...