Brain-derived neurotrophic factor (BDNF) promotes the biochemical and morphological differentiation of selective populations of neurons during development. In this study we examined the energy requirements associated with the effects of BDNF on neuronal differentiation. Because glucose is the preferred energy substrate in the brain, the effect of BDNF on glucose utilization was investigated in developing cortical neurons via biochemical and imaging studies. Results revealed that BDNF increases glucose utilization and the expression of the neuronal glucose transporter GLUT3. Stimulation of glucose utilization by BDNF was shown to result from the activation of Na+/K+-ATPase via an increase in Na+ influx that is mediated, at least in part, by ...
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...
Network activation triggers a significant energy metabolism increase in both neurons and astrocytes....
Brain-derived neurotrophic factor (BDNF) promotes the biochemical and morphological differentiation ...
THESIS SUMMARY Brain-derived neurotrophic factor (BDNF) promotes the survival as well as the biochem...
For years glucose was thought to constitute the sole energy substrate for neurons; it was believed t...
For years glucose was thought to constitute the sole energy substrate for neurons; it was believed t...
The formation of neurites is an important process affecting the cognitive abilities of an organism. ...
Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phospho...
The energy requirements of the brain are very high, and tight regulatory mechanisms operate to ensur...
Dendritic development is essential for the establishment of a functional nervous system. Among facto...
The brain requires a constant and substantial energy supply to maintain its main functions. For deca...
In the classical model the energy requirements during neuronal activation are provided by the delive...
Glucose is the obligate energetic fuel for the mammalian brain, and most studies of cerebral energy ...
Brain-derived neurotrophic factor (BDNF) represents one of the most widely studied neurotrophins bec...
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...
Network activation triggers a significant energy metabolism increase in both neurons and astrocytes....
Brain-derived neurotrophic factor (BDNF) promotes the biochemical and morphological differentiation ...
THESIS SUMMARY Brain-derived neurotrophic factor (BDNF) promotes the survival as well as the biochem...
For years glucose was thought to constitute the sole energy substrate for neurons; it was believed t...
For years glucose was thought to constitute the sole energy substrate for neurons; it was believed t...
The formation of neurites is an important process affecting the cognitive abilities of an organism. ...
Neural stem cell (NSC) neuronal differentiation requires a metabolic shift towards oxidative phospho...
The energy requirements of the brain are very high, and tight regulatory mechanisms operate to ensur...
Dendritic development is essential for the establishment of a functional nervous system. Among facto...
The brain requires a constant and substantial energy supply to maintain its main functions. For deca...
In the classical model the energy requirements during neuronal activation are provided by the delive...
Glucose is the obligate energetic fuel for the mammalian brain, and most studies of cerebral energy ...
Brain-derived neurotrophic factor (BDNF) represents one of the most widely studied neurotrophins bec...
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...
Network activation triggers a significant energy metabolism increase in both neurons and astrocytes....