Author:
Goenaga Julianna,Araque Alfonso,Kofuji Paulo,Herrera Moro Chao Daniela
Abstract
Glia are as numerous in the brain as neurons and widely known to serve supportive roles such as structural scaffolding, extracellular ionic and neurotransmitter homeostasis, and metabolic support. However, over the past two decades, several lines of evidence indicate that astrocytes, which are a type of glia, play active roles in neural information processing. Astrocytes, although not electrically active, can exhibit a form of excitability by dynamic changes in intracellular calcium levels. They sense synaptic activity and release neuroactive substances, named gliotransmitters, that modulate neuronal activity and synaptic transmission in several brain areas, thus impacting animal behavior. This “dialogue” between astrocytes and neurons is embodied in the concept of the tripartite synapse that includes astrocytes as integral elements of synaptic function. Here, we review the recent work and discuss how astrocytesviacalcium-mediated excitability modulate synaptic information processing at various spatial and time scales.
Funder
National Institutes of Health
Subject
Cell Biology,Cellular and Molecular Neuroscience
Cited by
17 articles.
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