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Won‐Suk Chung

Korea Advanced Institute of Science and Technology · 神経科学

研究室紹介

Professor Won-Suk Chung's research lab focuses on the dynamic roles of glial cells—particularly astrocytes—in synaptic regulation, neural circuit development, and neurodegenerative disease pathogenesis. The lab investigates how astrocytes control synapse formation, function, and elimination through secreted factors, direct contact, and phagocytic activity, with a strong emphasis on the molecular mechanisms involving APOE and stress response pathways. A key direction is understanding how dysregulation of astrocyte-mediated synaptic pruning contributes to conditions like Alzheimer’s disease and early-life stress-induced psychiatric disorders. The lab integrates in vitro, in vivo, and human brain organoid models to dissect glial contributions to brain health and disease.

astrocyte functionsynaptic pruningAPOEneurodegenerative diseaseglial phagocytosis

Research Overview

Papers
110
Total Citations
15,413
Papers (5y)
51
Primary Field
神経科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
51total
2022
2023
2024
2025
2026
Citations per year (5y)
922total
20222023202420252026

Selected Papers

15
1
Article|1,388 citations·2013
Astrocytes mediate synapse elimination through MEGF10 and MERTK pathways
Won‐Suk Chung, Laura Clarke, Gordon Wang, Benjamin K. Stafford, Alexander Sher, Chandrani Chakraborty, J. Keith Joung, Lynette C. Foo, Andrew Thompson, Chinfei Chen, Stephen J Smith, Ben A. Barres
SJR Q1NatureOA
NeurologyNeuroscience
2
Review|835 citations·2015
Astrocytes Control Synapse Formation, Function, and Elimination
Won‐Suk Chung, Nicola J. Allen, Çağla Eroğlu
SJR Q1Cold Spring Harbor Perspectives in BiologyOA

Astrocytes, through their close associations with synapses, can monitor and alter synaptic function, thus actively controlling synaptic transmission in the adult brain. Besides their important role at adult synapses, in the last three decades a number of critical findings have highlighted the importance of astrocytes in the establishment of synaptic connectivity in the developing brain. In this article, we will review the key findings on astrocytic control of synapse formation, function, and eli

NeurologyNeuroscience
3
Review|396 citations·2015
Do glia drive synaptic and cognitive impairment in disease?
Won‐Suk Chung, Christina A. Welsh, Ben A. Barres, Beth Stevens
SJR Q1Nature NeuroscienceOA
NeurologyNeuroscience
4
Article|387 citations·2020
Astrocytes phagocytose adult hippocampal synapses for circuit homeostasis
Joon-Hyuk Lee, J. S. Kim, Seulgi Noh, Hyoeun Lee, Se Young Lee, Ji Young Mun, Hyungju Park, Won‐Suk Chung
SJR Q1Nature
NeurologyNeuroscience
5
Article|243 citations·2016
Novel allele-dependent role for APOE in controlling the rate of synapse pruning by astrocytes
Won‐Suk Chung, Philip B. Verghese, Chandrani Chakraborty, J. Keith Joung, Bradley T. Hyman, Jason D. Ulrich, David M. Holtzman, Ben A. Barres
SJR Q1Proceedings of the National Academy of SciencesOA

The strongest genetic risk factor influencing susceptibility to late-onset Alzheimer's disease (AD) is apolipoprotein E (APOE) genotype. APOE has three common isoforms in humans, E2, E3, and E4. The presence of two copies of the E4 allele increases risk by ∼12-fold whereas E2 allele is associated with an ∼twofold decreased risk for AD. These data put APOE central to AD pathophysiology, but it is not yet clear how APOE alleles modify AD risk. Recently we found that astrocytes, a major central ner

NeurologyNeuroscience
6
Article|150 citations·2008
Bmp2 Signaling Regulates the Hepatic versus Pancreatic Fate Decision
Won‐Suk Chung, Chong Hyun Shin, Didier Y. R. Stainier
SJR Q1Developmental CellOA
SurgeryMedicine
7
Article|110 citations·2021
Microglial MERTK eliminates phosphatidylserine‐displaying inhibitory post‐synapses
Jungjoo Park, Yeeun Choi, Eunji Jung, Seung‐Hee Lee, Jong‐Woo Sohn, Won‐Suk Chung
SJR Q1The EMBO JournalOA
NeurologyNeuroscience
8
Article|104 citations·2008
Intra-Endodermal Interactions Are Required for Pancreatic β Cell Induction
Won‐Suk Chung, Didier Y. R. Stainier
SJR Q1Developmental CellOA
SurgeryMedicine
9
Review|96 citations·2019
Glial Control of Synapse Number in Healthy and Diseased Brain
Eunbeol Lee, Won‐Suk Chung
SJR Q1Frontiers in Cellular NeuroscienceOA

Glial cells are emerging as crucial players that mediate development and homeostasis of the central nervous system (CNS). In particular, glial cells are closely associated with synapses, and control synapse formation, function, plasticity, and elimination during the stages of development and adulthood. Importantly, it is now increasingly evident that abnormal glial function can be an active inducer of the initiation and progression of various neurodegenerative diseases. Here, we discuss recent d

NeurologyNeuroscience
10
Review|88 citations·2011
The role of glial cells in synapse elimination
Won‐Suk Chung, Ben A. Barres
SJR Q1Current Opinion in Neurobiology
NeurologyNeuroscience
11
Article|85 citations·2022
Anti-inflammatory clearance of amyloid-β by a chimeric Gas6 fusion protein
Hyuncheol Jung, Se Young Lee, Seongjoon Lim, Hyeong Ryeol Choi, Yeseong Choi, Minjin Kim, Segi Kim, Yujean Lee, Kyung Ho Han, Won‐Suk Chung, Chan Hyuk Kim
SJR Q1Nature Medicine
ImmunologyImmunology and Microbiology
12
Article|82 citations·2022
A distinct astrocyte subtype in the aging mouse brain characterized by impaired protein homeostasis
Eunbeol Lee, Yeon‐Joo Jung, Yu Rim Park, Seongjoon Lim, Youngjin Choi, Se Young Lee, Chan Hyuk Kim, Ji Young Mun, Won‐Suk Chung
SJR Q1Nature Aging
EpidemiologyMedicine
13
Article|73 citations·2023
Stress induces behavioral abnormalities by increasing expression of phagocytic receptor MERTK in astrocytes to promote synapse phagocytosis
Youkyeong Gloria Byun, Namshik Kim, Gyuri Kim, Yi-Seon Jeon, Jong Bin Choi, Chan-Woo Park, Kyungdeok Kim, Hyunsoo Jang, Jin-Kyeong Kim, Eunjoon Kim, Yong‐Mahn Han, Ki‐Jun Yoon
SJR Q1ImmunityOA

Childhood neglect and/or abuse can induce mental health conditions with unknown mechanisms. Here, we identified stress hormones as strong inducers of astrocyte-mediated synapse phagocytosis. Using in vitro, in vivo, and human brain organoid experiments, we showed that stress hormones increased the expression of the Mertk phagocytic receptor in astrocytes through glucocorticoid receptor (GR). In post-natal mice, exposure to early social deprivation (ESD) specifically activated the GR-MERTK pathwa

NeurologyNeuroscience
14
Review|59 citations·2024
Astrocyte Regulation of Synapse Formation, Maturation, and Elimination
Won‐Suk Chung, Katherine T. Baldwin, Nicola J. Allen
SJR Q1Cold Spring Harbor Perspectives in Biology

Astrocytes play an integral role in the development, maturation, and refinement of neuronal circuits. Astrocytes secrete proteins and lipids that instruct the formation of new synapses and induce the maturation of existing synapses. Through contact-mediated signaling, astrocytes can regulate the formation and state of synapses within their domain. Through phagocytosis, astrocytes participate in the elimination of excess synaptic connections. In this work, we will review key findings on the molec

Developmental NeuroscienceNeuroscience
15
Review|56 citations·2020
The roles of astrocytic phagocytosis in maintaining homeostasis of brains
Se Young Lee, Won‐Suk Chung
SJR Q2Journal of Pharmacological SciencesOA

In the central nervous system, microglia are regarded as the main cells responsible for phagocytosis, contributing to neural circuit refinement and homeostasis through synapse elimination. However, recent findings have shown that astrocytes also actively participate in synapse homeostasis through phagocytosing synapses, neuronal debris, axonal mitochondria, and pathological protein aggregates. In addition, it has been also suggested that astrocytes may regulate microglial phagocytosis by secreti

NeurologyNeuroscience

Research Areas

NeurologyMechanical EngineeringPhysiologySurgeryElectrical and Electronic EngineeringImmunology

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