Embryonic stem cells have the capacity for unlimited proliferation while retaining their potential to differentiate into a wide variety of cell types. Murine, primate and human embryonic stem cells (ESCs) exhibit a very unusual cell cycle structure, characterized by a short G1 phase and a high proportion of cells in S-phase. In the case of mESCs, this is associated with a unique mechanism of cell cycle regulation, underpinned by the precocious activity of cyclin dependent protein kinase (Cdk) activities. As ES cells differentiate, their cell cycle structure changes dramatically so as to incorporate a significantly longer G1 phase and their mechanism of cell cycle regulation changes to that typically seen in other mammalian cells. The unique...
Stem cell self-renewal is intrinsically associated with cell cycle control. However, the precise mec...
Competency for self-renewal of human embryonic stem (ES) cells is linked to pluripotency. However, t...
The core cell cycle machinery and its associated signaling pathways play critical roles in regulatio...
AbstractMouse embryonic stem cells (mESC) exhibit cell cycle properties entirely distinct from those...
SummaryHuman embryonic stem (hES) cells show an atypical cell-cycle regulation characterized by a hi...
To understand cell cycle control mechanisms in early development and how they change during differen...
Human embryonic stem cells (hESCs) and induced pluripotent stem cells proliferate rapidly and divide...
Two striking features of human embryonic stem cells that support biological activity are an abbrevia...
International audienceUsing flow cytometry measurements combined with quantitative analysis of cell ...
International audienceUsing flow cytometry measurements combined with quantitative analysis of cell ...
International audienceUsing flow cytometry measurements combined with quantitative analysis of cell ...
Embryonic stem cells (ESCs) have unlimited capacity for self-renewal and can differentiate into vari...
Embryonic stem cells (ESCs) have unlimited capacity for self-renewal and can differentiate into vari...
Embryonic stem cells (ESCs) have unlimited capacity for self-renewal and can differentiate into vari...
Coordination of differentiation and cell cycle progression represents an essential process for embry...
Stem cell self-renewal is intrinsically associated with cell cycle control. However, the precise mec...
Competency for self-renewal of human embryonic stem (ES) cells is linked to pluripotency. However, t...
The core cell cycle machinery and its associated signaling pathways play critical roles in regulatio...
AbstractMouse embryonic stem cells (mESC) exhibit cell cycle properties entirely distinct from those...
SummaryHuman embryonic stem (hES) cells show an atypical cell-cycle regulation characterized by a hi...
To understand cell cycle control mechanisms in early development and how they change during differen...
Human embryonic stem cells (hESCs) and induced pluripotent stem cells proliferate rapidly and divide...
Two striking features of human embryonic stem cells that support biological activity are an abbrevia...
International audienceUsing flow cytometry measurements combined with quantitative analysis of cell ...
International audienceUsing flow cytometry measurements combined with quantitative analysis of cell ...
International audienceUsing flow cytometry measurements combined with quantitative analysis of cell ...
Embryonic stem cells (ESCs) have unlimited capacity for self-renewal and can differentiate into vari...
Embryonic stem cells (ESCs) have unlimited capacity for self-renewal and can differentiate into vari...
Embryonic stem cells (ESCs) have unlimited capacity for self-renewal and can differentiate into vari...
Coordination of differentiation and cell cycle progression represents an essential process for embry...
Stem cell self-renewal is intrinsically associated with cell cycle control. However, the precise mec...
Competency for self-renewal of human embryonic stem (ES) cells is linked to pluripotency. However, t...
The core cell cycle machinery and its associated signaling pathways play critical roles in regulatio...