Reprogramming somatic cells to a pluripotent cell state (induced Pluripotent Stem (iPS) cells) requires reprogramming of metabolism to support cell proliferation and pluripotency, most notably changes in carbohydrate turnover that reflect a shift from oxidative to glycolytic metabolism. Some aspects of iPS cell metabolism differ from embryonic stem (ES) cells, which may reflect a parental cell memory, or be a consequence of the reprogramming process. In this study, we compared the metabolism of 3 human iPS cell lines to assess the fidelity of metabolic reprogramming. When challenged with reduced oxygen concentration, ES cells have been shown to modulate carbohydrate use in a predictably way. In the same model, 2 of 3 iPS cell lines failed t...
Background: Human pluripotent stem cells have the ability to generate all cell types present in the ...
Metabolism is central to embryonic stem cell (ESC) pluripotency and differentiation, with distinct p...
<div><p>Induced pluripotent stem cells are different from embryonic stem cells as shown by epigeneti...
<div><p>Reprogramming somatic cells to a pluripotent cell state (induced Pluripotent Stem (iPS) cell...
Reprogramming somatic cells to a pluripotent cell state (induced Pluripotent Stem (iPS) cells) requi...
Reprogramming somatic cells to a pluripotent cell state (induced Pluripotent Stem (iPS) cells) requi...
Reprogramming to pluripotency involves drastic restructuring of both metabolism and the epigenome. H...
Reprogramming to pluripotency involves drastic restructuring of both metabolism and the epigenome. H...
Oxygen is a powerful regulator of cell function and embryonic development. It has previously been de...
BACKGROUND: Human pluripotent stem cells have the ability to generate all cell types present in the ...
Human pluripotent stem cells have the ability to generate all cell types present in the adult organi...
Human pluripotent stem cells have the ability to generate all cell types present in the adult organi...
BACKGROUND: Human pluripotent stem cells have the ability to generate all cell types present in the ...
Pluripotent stem cells (PSCs), including embryonic stem cells (ESCs) and induced pluripotent stem ce...
Human pluripotent stem cells have the ability to generate all cell types present in the adult organi...
Background: Human pluripotent stem cells have the ability to generate all cell types present in the ...
Metabolism is central to embryonic stem cell (ESC) pluripotency and differentiation, with distinct p...
<div><p>Induced pluripotent stem cells are different from embryonic stem cells as shown by epigeneti...
<div><p>Reprogramming somatic cells to a pluripotent cell state (induced Pluripotent Stem (iPS) cell...
Reprogramming somatic cells to a pluripotent cell state (induced Pluripotent Stem (iPS) cells) requi...
Reprogramming somatic cells to a pluripotent cell state (induced Pluripotent Stem (iPS) cells) requi...
Reprogramming to pluripotency involves drastic restructuring of both metabolism and the epigenome. H...
Reprogramming to pluripotency involves drastic restructuring of both metabolism and the epigenome. H...
Oxygen is a powerful regulator of cell function and embryonic development. It has previously been de...
BACKGROUND: Human pluripotent stem cells have the ability to generate all cell types present in the ...
Human pluripotent stem cells have the ability to generate all cell types present in the adult organi...
Human pluripotent stem cells have the ability to generate all cell types present in the adult organi...
BACKGROUND: Human pluripotent stem cells have the ability to generate all cell types present in the ...
Pluripotent stem cells (PSCs), including embryonic stem cells (ESCs) and induced pluripotent stem ce...
Human pluripotent stem cells have the ability to generate all cell types present in the adult organi...
Background: Human pluripotent stem cells have the ability to generate all cell types present in the ...
Metabolism is central to embryonic stem cell (ESC) pluripotency and differentiation, with distinct p...
<div><p>Induced pluripotent stem cells are different from embryonic stem cells as shown by epigeneti...