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...
Stem cells are generally believed to contain a small number of mitochondria, thus accounting for the...
Mitochondria are critical to neurogenesis, but the mechanisms of mitochondria in neurogenesis have n...
Neurogenesis in developing and adult mammalian brain is a tightly regulated process that relies on n...
Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phospho...
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...
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...
Neural stem cells (NSCs) undergo massive molecular and cellular changes during neuronal differentiat...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
The generation of neurons in the developing and adult mammalian brain by neural stem/progenitor cell...
The generation of neurons in the developing and adult mammalian brain by neural stem/progenitor cell...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
Stem cells are generally believed to contain a small number of mitochondria, thus accounting for the...
Stem cells are generally believed to contain a small number of mitochondria, thus accounting for the...
Stem cells are generally believed to contain a small number of mitochondria, thus accounting for the...
Mitochondria are critical to neurogenesis, but the mechanisms of mitochondria in neurogenesis have n...
Neurogenesis in developing and adult mammalian brain is a tightly regulated process that relies on n...
Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phospho...
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...
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...
Neural stem cells (NSCs) undergo massive molecular and cellular changes during neuronal differentiat...
Newly generated neurons pass through a series of well-defined developmental stages, which allow them...
The generation of neurons in the developing and adult mammalian brain by neural stem/progenitor cell...
The generation of neurons in the developing and adult mammalian brain by neural stem/progenitor cell...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
Stem cells are generally believed to contain a small number of mitochondria, thus accounting for the...
Stem cells are generally believed to contain a small number of mitochondria, thus accounting for the...
Stem cells are generally believed to contain a small number of mitochondria, thus accounting for the...
Mitochondria are critical to neurogenesis, but the mechanisms of mitochondria in neurogenesis have n...
Neurogenesis in developing and adult mammalian brain is a tightly regulated process that relies on n...