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Review
. 2017 Nov;65(11):1719-1727.
doi: 10.1002/glia.23169. Epub 2017 Jun 1.

Astrocyte-mediated synapse remodeling in the pathological brain

Affiliations
Review

Astrocyte-mediated synapse remodeling in the pathological brain

Sun Kwang Kim et al. Glia. 2017 Nov.

Abstract

Astrocytes, a major type of glia, reciprocally influence synaptic transmission and connectivity, forming the "tripartite synapses". Astrocytic metabotropic glutamate receptor (mGluR)-mediated Ca2+ waves and release of gliotransmitters or synaptogenic molecules mediate this neuron-glia interaction in the developing brain, but this signaling has been challenged for adult brain. However, cumulative evidence has suggested that mature astrocytes exhibit re-awakening of such immature phenotype in the pathological adult brain. This phenotypic change in astrocytes in response to injury may induce neural circuit and synapse plasticity. In this review article, we summarize astrocyte-mediated synapse remodeling during physiological development, discuss re-emergence of immature astrocytic signaling in adult pathological brain, and finally highlight its contribution to significant modification of synaptic connections correlating with functional progress of brain pathology.

Keywords: calcium; chronic pain; dendritic spine; mGluR5; thrombospondin.

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