Adapting the energy metabolism state to changing bioenergetic demands is essential for mammalian development accompanying massive cell proliferation and cell differentiation. However, it remains unclear how developing embryos meet the changing bioenergetic demands during the chorioallantoic branching (CB) stage when the maternal-fetal exchange of gases and nutrients is promoted. In this study, using metabolome analysis with mass-labeled glucose, we found that developing embryos redirected glucose carbon flow into the pentose phosphate pathway (PPP) via suppression of the key glycolytic enzymes PFK-1 and aldolase during CB. Concomitantly, embryos had increases in lactate pool size and in the fractional contribution of glycolysis to lactate b...
Mammalian preimplantation embryos experience a critical switch from an oxidative to a predominantly ...
Metabolic pathways play a vital yet poorly understood role in embryogenesis. In this issue of Develo...
Physiological hypoxia is critical for placental mammalian development. However, the underlying mecha...
Adapting the energy metabolism state to changing bioenergetic demands is essential for mammalian dev...
Preimplantation mammalian embryo is a critical stage in embryonic development, during which the toti...
BACKGROUND: Cardiovascular and neural malformations are common sequels of diabetic pregnancies, but ...
Background: Cardiovascular and neural malformations are common sequels of diabetic pregnancies, but ...
Mammalian preimplantation embryos follow a stereotypic pattern of development from zygotes to blasto...
How metabolism is rewired during embryonic development is still largely unknown, as it remains a maj...
Published online before print February 25, 2015The peri-conceptual environment represents a critical...
The rate of oxidation of glucose is reduced in mouse embryos in the prolonged free living phase asso...
It has long been known that glucose is required for the development of pre-implantation mouse embryo...
Although mouse oocytes and cleavage-stage embryos are unable to utilize glucose as a metabolic fuel,...
Thesis (Ph.D.)--University of Washington, 2012This dissertation research aims to understand the regu...
The quest to model and modulate embryonic development became a recent cornerstone of stem cell and d...
Mammalian preimplantation embryos experience a critical switch from an oxidative to a predominantly ...
Metabolic pathways play a vital yet poorly understood role in embryogenesis. In this issue of Develo...
Physiological hypoxia is critical for placental mammalian development. However, the underlying mecha...
Adapting the energy metabolism state to changing bioenergetic demands is essential for mammalian dev...
Preimplantation mammalian embryo is a critical stage in embryonic development, during which the toti...
BACKGROUND: Cardiovascular and neural malformations are common sequels of diabetic pregnancies, but ...
Background: Cardiovascular and neural malformations are common sequels of diabetic pregnancies, but ...
Mammalian preimplantation embryos follow a stereotypic pattern of development from zygotes to blasto...
How metabolism is rewired during embryonic development is still largely unknown, as it remains a maj...
Published online before print February 25, 2015The peri-conceptual environment represents a critical...
The rate of oxidation of glucose is reduced in mouse embryos in the prolonged free living phase asso...
It has long been known that glucose is required for the development of pre-implantation mouse embryo...
Although mouse oocytes and cleavage-stage embryos are unable to utilize glucose as a metabolic fuel,...
Thesis (Ph.D.)--University of Washington, 2012This dissertation research aims to understand the regu...
The quest to model and modulate embryonic development became a recent cornerstone of stem cell and d...
Mammalian preimplantation embryos experience a critical switch from an oxidative to a predominantly ...
Metabolic pathways play a vital yet poorly understood role in embryogenesis. In this issue of Develo...
Physiological hypoxia is critical for placental mammalian development. However, the underlying mecha...