AbstractNeuron-glia interactions are essential for synaptic function, and glial glutamate (re)uptake plays a key role at glutamatergic synapses. In knockout mice, for either glial glutamate transporters, GLAST or GLT-1, a classical metabolic response to synaptic activation (i.e., enhancement of glucose utilization) is decreased at an early functional stage in the somatosensory barrel cortex following activation of whiskers. Investigation in vitro demonstrates that glial glutamate transport represents a critical step for triggering enhanced glucose utilization, but also lactate release from astrocytes through a mechanism involving changes in intracellular Na+ concentration. These data suggest that a metabolic crosstalk takes place between ne...
International audienceAstrocytes, the major glial cell type in the central nervous system (CNS), are...
Astrocytes have functional characteristics that make them particularly well suited to couple glutama...
Recent findings suggest that synaptic-type glutamate signaling operates between axons and their supp...
Neuron-glia interactions are essential for synaptic function, and glial glutamate (re)uptake plays a...
AbstractNeuron-glia interactions are essential for synaptic function, and glial glutamate (re)uptake...
The coupling between synaptic activity and glucose utilization (neurometabolic coupling) is a centra...
Astrocyte end-feet surround intraparenchymal microvessels and represent therefore the first cellular...
The mechanisms responsible for the local increase in brain glucose utilization during functional act...
Astrocyte end-feet surround intraparenchymal microvessels and represent therefore the first cellular...
Glutamate, released at a majority of excitatory synapses in the central nervous system, depolarizes ...
In the adult nervous system, glutamatergic neurotransmission is tightly controlled by neuron-glia in...
In the adult nervous system, glutamatergic neurotransmission is tightly controlled by neuron-glia in...
Astrocytes play a major role in the removal of glutamate from the extracellular compartment. This cl...
Glutamate, the main excitatory neurotransmitter in the vertebrate brain, exerts its actions through ...
The coupling between synaptic activity and glucose utilization (neurometabolic coupling) is a centra...
International audienceAstrocytes, the major glial cell type in the central nervous system (CNS), are...
Astrocytes have functional characteristics that make them particularly well suited to couple glutama...
Recent findings suggest that synaptic-type glutamate signaling operates between axons and their supp...
Neuron-glia interactions are essential for synaptic function, and glial glutamate (re)uptake plays a...
AbstractNeuron-glia interactions are essential for synaptic function, and glial glutamate (re)uptake...
The coupling between synaptic activity and glucose utilization (neurometabolic coupling) is a centra...
Astrocyte end-feet surround intraparenchymal microvessels and represent therefore the first cellular...
The mechanisms responsible for the local increase in brain glucose utilization during functional act...
Astrocyte end-feet surround intraparenchymal microvessels and represent therefore the first cellular...
Glutamate, released at a majority of excitatory synapses in the central nervous system, depolarizes ...
In the adult nervous system, glutamatergic neurotransmission is tightly controlled by neuron-glia in...
In the adult nervous system, glutamatergic neurotransmission is tightly controlled by neuron-glia in...
Astrocytes play a major role in the removal of glutamate from the extracellular compartment. This cl...
Glutamate, the main excitatory neurotransmitter in the vertebrate brain, exerts its actions through ...
The coupling between synaptic activity and glucose utilization (neurometabolic coupling) is a centra...
International audienceAstrocytes, the major glial cell type in the central nervous system (CNS), are...
Astrocytes have functional characteristics that make them particularly well suited to couple glutama...
Recent findings suggest that synaptic-type glutamate signaling operates between axons and their supp...