Heejung Chun, Ph.D.

Affiliations: 
2010-2018 Korea Institute of Science and Technology (KIST) 
 2018-2021 Center for Cognition and Sociality Institute for Basic Science (IBS) 
 2021-2022 Research Institute for Basic Sciences Seoul National University, Seoul, South Korea 
 2022- College of Pharmacy Yonsei University, Seoul, South Korea 
Area:
neuroscience
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"Heejung Chun"
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Parents

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Bong-Kiun Kaang grad student 2005-2015
Changjoon Justin Lee post-doc 2015-2021
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Publications

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Kim S, Chun H, Kim Y, et al. (2024) Astrocytic autophagy plasticity modulates Aβ clearance and cognitive function in Alzheimer's disease. Molecular Neurodegeneration. 19: 55
Chae U, Chun H, Lim J, et al. (2024) KDS2010, a reversible MAO-B inhibitor, extends the lifetime of neural probes by preventing glial scar formation. Glia
Ko HG, Chun H, Han S, et al. (2023) Role of spinal astrocytes through the perisynaptic astrocytic process in pathological pain. Molecular Brain. 16: 81
Lee J, Kim JG, Hong S, et al. (2022) Longitudinal intravital imaging of cerebral microinfarction reveals a dynamic astrocyte reaction leading to glial scar formation. Glia
Koh W, Park M, Chun YE, et al. (2021) Astrocytes Render Memory Flexible by Releasing D-Serine and Regulating NMDA Receptor Tone in the Hippocampus. Biological Psychiatry
Chun H, Lim J, Park KD, et al. (2021) Inhibition of monoamine oxidase B prevents reactive astrogliosis and scar formation in stab wound injury model. Glia
Park H, Han KS, Seo J, et al. (2021) Correction to: Channel-mediated astrocytic glutamate modulates hippocampal synaptic plasticity by activating postsynaptic NMDA receptors. Molecular Brain. 14: 103
Chun H, Im H, Kang YJ, et al. (2020) Severe reactive astrocytes precipitate pathological hallmarks of Alzheimer's disease via HO production. Nature Neuroscience
Lee Y, Han NE, Kim W, et al. (2020) Dynamic Changes in the Bridging Collaterals of the Basal Ganglia Circuitry Control Stress-Related Behaviors in Mice. Molecules and Cells
Nam MH, Han KS, Lee J, et al. (2019) Activation of Astrocytic μ-Opioid Receptor Causes Conditioned Place Preference. Cell Reports. 28: 1154-1166.e5
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