Balancing self-renewal with differentiation is crucial for neural stem cells (NSC) functions to ensure tissue development and homeostasis. Over the last years, multiple studies have highlighted the coupling of either metabolic or epigenetic reprogramming to NSC fate decisions. Metabolites are essential as they provide the energy and building blocks for proper cell function. Moreover, metabolites can also function as substrates and/or cofactors for epigenetic modifiers. It is becoming more evident that metabolic alterations and epigenetics rewiring are highly intertwined; however, their relation regarding determining NSC fate is not well understood. In this review, we summarize the major metabolic pathways and epigenetic modifications that p...
Accumulating evidence implicates mitochondrial and metabolic pathways in the establishment of plurip...
Metabolites control epigenetic mechanisms, and conversly, cell metabolism is regulated at the epigen...
Emerging evidence strongly suggests that stem cells and their differentiated progeny display distinc...
Neural stem cells (NSCs) undergo massive molecular and cellular changes during neuronal differentiat...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
An uninterrupted energy supply is critical for the optimal functioning of all our organs, and in thi...
The coordinated development of the nervous system requires fidelity in the expression of specific ge...
The generation of neurons in the developing and adult mammalian brain by neural stem/progenitor cell...
The coordinated development of the nervous system requires fidelity in the expression of specific ge...
Plasticity in energy metabolism allows stem cells to match the divergent demands of self-renewal and...
For many years, stem cell metabolism was viewed as a byproduct of cell fate status rather than an ac...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
© 2017 Dr. Jarmon Gerald LeesDifferent nutrient milieu give rise to distinct metabolic profiles, whi...
Neural stem cells generate new neurons throughout life in distinct regions of the mammalian brain. T...
Accumulating evidence implicates mitochondrial and metabolic pathways in the establishment of plurip...
Metabolites control epigenetic mechanisms, and conversly, cell metabolism is regulated at the epigen...
Emerging evidence strongly suggests that stem cells and their differentiated progeny display distinc...
Neural stem cells (NSCs) undergo massive molecular and cellular changes during neuronal differentiat...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
An uninterrupted energy supply is critical for the optimal functioning of all our organs, and in thi...
The coordinated development of the nervous system requires fidelity in the expression of specific ge...
The generation of neurons in the developing and adult mammalian brain by neural stem/progenitor cell...
The coordinated development of the nervous system requires fidelity in the expression of specific ge...
Plasticity in energy metabolism allows stem cells to match the divergent demands of self-renewal and...
For many years, stem cell metabolism was viewed as a byproduct of cell fate status rather than an ac...
The environment surrounding stem cells has the ability to elicit profound, heritable epigenetic chan...
© 2017 Dr. Jarmon Gerald LeesDifferent nutrient milieu give rise to distinct metabolic profiles, whi...
Neural stem cells generate new neurons throughout life in distinct regions of the mammalian brain. T...
Accumulating evidence implicates mitochondrial and metabolic pathways in the establishment of plurip...
Metabolites control epigenetic mechanisms, and conversly, cell metabolism is regulated at the epigen...
Emerging evidence strongly suggests that stem cells and their differentiated progeny display distinc...