Neuron-glia networks: integral gear of brain function

Astrocytes, the most abundant glial cell in the brain, play critical roles in metabolic and homeostatic functions of the Nervous System; however, their participation in coding information and cognitive processes has been largely ignored. The strategic position of astrocyte processes facing synapses...

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Bibliographic Details
Main Authors: Perea, Gertrudis (Author), Araque, Alfonso (Author), Sur, Mriganka (Contributor)
Other Authors: Massachusetts Institute of Technology. Department of Brain and Cognitive Sciences (Contributor), Picower Institute for Learning and Memory (Contributor)
Format: Article
Language:English
Published: Frontiers Research Foundation, 2017-12-05T19:50:09Z.
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Online Access:Get fulltext
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100 1 0 |a Perea, Gertrudis  |e author 
100 1 0 |a Massachusetts Institute of Technology. Department of Brain and Cognitive Sciences  |e contributor 
100 1 0 |a Picower Institute for Learning and Memory  |e contributor 
100 1 0 |a Sur, Mriganka  |e contributor 
700 1 0 |a Araque, Alfonso  |e author 
700 1 0 |a Sur, Mriganka  |e author 
245 0 0 |a Neuron-glia networks: integral gear of brain function 
260 |b Frontiers Research Foundation,   |c 2017-12-05T19:50:09Z. 
856 |z Get fulltext  |u http://hdl.handle.net/1721.1/112612 
520 |a Astrocytes, the most abundant glial cell in the brain, play critical roles in metabolic and homeostatic functions of the Nervous System; however, their participation in coding information and cognitive processes has been largely ignored. The strategic position of astrocyte processes facing synapses and the astrocyte ability to uptake neurotransmitters and release neuroactive substances, so-called "gliotransmitters", provide the scenario for prolific neuron-astrocyte signaling. From studies at single-cell level to animal behavior, recent advances in technology and genetics have revealed the impact of astrocyte activity in brain function from cellular and synaptic physiology, neuronal circuits to behavior. The present review critically discusses the consequences of astrocyte signaling on synapses and networks, as well as its impact on neuronal information processing, showing that some crucial brain functions arise from the coordinated activity of neuron-glia networks. 
520 |a National Institutes of Health (U.S.) (Grant EY007023) 
520 |a National Science Foundation (U.S.) (Award 1010363) 
655 7 |a Article 
773 |t Frontiers in Cellular Neuroscience