Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phosphorylation. We now show that a branched-chain amino acids-driven, persistent metabolic shift toward energy metabolism is required for full neuronal maturation. We increased energy metabolism of differentiating neurons derived both from murine NSCs and human induced pluripotent stem cells (iPSCs) by supplementing the cell culture medium with a mixture composed of branched-chain amino acids, essential amino acids, TCA cycle precursors and co-factors. We found that treated differentiating neuronal cells with enhanced energy metabolism increased: i) total dendritic length; ii) the mean number of branches and iii) the number and maturation of the de...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Brain-derived neurotrophic factor (BDNF) promotes the biochemical and morphological differentiation ...
Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phospho...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
Neural stem/progenitor cells (NSPCs) give rise to billions of cells during development and are criti...
Mitochondria are organelles with recognized key roles in cellular homeostasis, including bioenergeti...
The metabolic switch associated with the reprogramming of somatic cells to pluripotency has received...
THESIS SUMMARY Brain-derived neurotrophic factor (BDNF) promotes the survival as well as the biochem...
Human neural development begins at embryonic day 19 and marks the beginning of organogenesis. Neural...
Human neural development begins at embryonic day 19 and marks the beginning of organogenesis. Neural...
The metabolic transition from anaerobic glycolysis and fatty acid \u3b2-oxidation to glycolysis coup...
The burden of neural degeneration is one that is becoming more steadfast in humans as we are beginni...
Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticit...
Human neocortex (NCX) development is finely orchestrated process in which a series of timely events ...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Brain-derived neurotrophic factor (BDNF) promotes the biochemical and morphological differentiation ...
Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phospho...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
Neural stem/progenitor cells (NSPCs) give rise to billions of cells during development and are criti...
Mitochondria are organelles with recognized key roles in cellular homeostasis, including bioenergeti...
The metabolic switch associated with the reprogramming of somatic cells to pluripotency has received...
THESIS SUMMARY Brain-derived neurotrophic factor (BDNF) promotes the survival as well as the biochem...
Human neural development begins at embryonic day 19 and marks the beginning of organogenesis. Neural...
Human neural development begins at embryonic day 19 and marks the beginning of organogenesis. Neural...
The metabolic transition from anaerobic glycolysis and fatty acid \u3b2-oxidation to glycolysis coup...
The burden of neural degeneration is one that is becoming more steadfast in humans as we are beginni...
Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticit...
Human neocortex (NCX) development is finely orchestrated process in which a series of timely events ...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
Brain-derived neurotrophic factor (BDNF) promotes the biochemical and morphological differentiation ...