Neural stem/progenitor cells (NSPCs) give rise to billions of cells during development and are critical for proper brain formation. The finding that NSPCs persist throughout adulthood has challenged the view that the brain has poor regenerative abilities and raised hope for stem cell-based regenerative therapies. For decades there has been a strong movement towards understanding the requirements of NSPCs and their regulation, resulting in the discovery of many transcription factors and signaling pathways that can influence NSPC behavior and neurogenesis. However, the role of metabolism for NSPC regulation has only gained attention recently. Lipid metabolism in particular has been shown to influence proliferation and neurogenesis, offering e...
The mammalian brain is enriched with lipids that serve as energy catalyzers or secondary messengers ...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
The mammalian brain is enriched with lipids that serve as energy catalyzers or secondary messengers ...
Neural stem/progenitor cells (NSPCs) generate new neurons throughout adulthood. However, the underly...
Metabolic plasticity is increasingly postulated to be vital in the transition between stemness maint...
Hippocampal neurogenesis is important for certain forms of cognition, and failing neurogenesis has b...
Hippocampal neurogenesis is important for certain forms of cognition, and failing neurogenesis has b...
Accepted manuscriptThe process of generating new functional neurons in the adult mammalian brain occ...
Neural stem cells generate new neurons throughout life in distinct regions of the mammalian brain. T...
Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phospho...
Altered neural stem/progenitor cell (NSPC) activity and neurodevelopmental defects are linked to int...
SummaryLipid metabolism is fundamental for brain development and function, but its roles in normal a...
The generation of neurons in the developing and adult mammalian brain by neural stem/progenitor cell...
Hippocampal neurogenesis is important for certain forms of cognition, and failing neurogenesis has b...
Identifying factors driving neural stem cell dysfunction in age-related neurodegenerative diseases r...
The mammalian brain is enriched with lipids that serve as energy catalyzers or secondary messengers ...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
The mammalian brain is enriched with lipids that serve as energy catalyzers or secondary messengers ...
Neural stem/progenitor cells (NSPCs) generate new neurons throughout adulthood. However, the underly...
Metabolic plasticity is increasingly postulated to be vital in the transition between stemness maint...
Hippocampal neurogenesis is important for certain forms of cognition, and failing neurogenesis has b...
Hippocampal neurogenesis is important for certain forms of cognition, and failing neurogenesis has b...
Accepted manuscriptThe process of generating new functional neurons in the adult mammalian brain occ...
Neural stem cells generate new neurons throughout life in distinct regions of the mammalian brain. T...
Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phospho...
Altered neural stem/progenitor cell (NSPC) activity and neurodevelopmental defects are linked to int...
SummaryLipid metabolism is fundamental for brain development and function, but its roles in normal a...
The generation of neurons in the developing and adult mammalian brain by neural stem/progenitor cell...
Hippocampal neurogenesis is important for certain forms of cognition, and failing neurogenesis has b...
Identifying factors driving neural stem cell dysfunction in age-related neurodegenerative diseases r...
The mammalian brain is enriched with lipids that serve as energy catalyzers or secondary messengers ...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
The mammalian brain is enriched with lipids that serve as energy catalyzers or secondary messengers ...