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Department of Brain Sciences
Center for Synapse Diversity and Specificity
1. Journal Articles
Multifarious astrocyte–neuron dialog in shaping neural circuit architecture
Ngoc, Khai Huynh
;
Jeon, Younghyeon
;
Ko, Jaewon
;
Um, Ji Won
Department of Brain Sciences
Center for Synapse Diversity and Specificity
1. Journal Articles
Department of Brain Sciences
Synapse Disorder Laboratory
1. Journal Articles
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Title
Multifarious astrocyte–neuron dialog in shaping neural circuit architecture
Issued Date
2025-01
Citation
Ngoc, Khai Huynh. (2025-01). Multifarious astrocyte–neuron dialog in shaping neural circuit architecture. Trends in Cell Biology, 35(1), 74–87. doi: 10.1016/j.tcb.2024.05.002
Type
Article
Author Keywords
synaptic adhesion
;
neural circuits
;
brain disorders
;
astrocyte–neuron interaction
;
synaptic properties
Keywords
DENDRITIC SPINE MORPHOLOGY
;
CELL-ADHESION MOLECULES
;
SYNAPSE FORMATION
;
GLIOTRANSMISSION
;
MODULATION
;
MECHANISMS
;
TRANSCRIPTOME
;
PLASTICITY
;
DIVERSITY
;
PROTEINS
ISSN
0962-8924
Abstract
Astrocytes are multifaceted glial cell types that perform structural, functional, metabolic, and homeostatic roles in the brain. Recent studies have revealed mechanisms underlying the diversity of bidirectional communication modes between astrocytes and neurons – the fundamental organizing principle shaping synaptic properties at tripartite synapses. These astrocyte–neuron interactions are critical for the proper functioning of synapses and neural circuits. This review focuses on molecular mechanisms that direct these interactions, highlighting the versatile roles of multiple adhesion-based paths that likely modulate them, often in a context-dependent manner. It also describes how astrocyte-mediated processes go awry in certain brain disorders and provides a timely insight on the pivotal roles of astrocyte–neuron interactions in synaptic integrity and their relevance to understanding and treating neurological disorders. © 2024 Elsevier Ltd
URI
http://hdl.handle.net/20.500.11750/57264
DOI
10.1016/j.tcb.2024.05.002
Publisher
Elsevier
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Ko, Jaewon
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Department of Brain Sciences
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