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Min-Kyoo Shin

Seoul National University · 医学

研究室紹介

Professor Min-Kyoo Shin's research lab focuses on understanding and treating chronic neurodegeneration following traumatic brain injury (TBI) and neurodegenerative diseases such as Alzheimer’s disease. The lab investigates neuroprotective compounds like P7C3 derivatives and sigma-2 receptor modulators to enhance neuronal survival, restore blood-brain barrier integrity, and improve cognitive function. A central theme is the translation of preclinical findings into clinical applications, including studies in primates and the development of biomarkers for blast TBI. The lab also explores mitochondrial dynamics, particularly Fis1/Drp1-mediated fission, as a key driver of long-term neurodegeneration after TBI.

neuroprotectiontraumatic brain injurymitochondrial dynamicssigma-2 receptorP7C3 compounds

Research Overview

Papers
53
Total Citations
934
Papers (5y)
29
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
29total
2022
2023
2024
2025
2026
Citations per year (5y)
233total
20222023202420252026

Selected Papers

15
1
Article|220 citations·2021
Reducing acetylated tau is neuroprotective in brain injury
Min-Kyoo Shin, Edwin Vázquez‐Rosa, Yeojung Koh, Matasha Dhar, Kalyani Chaubey, Coral J. Cintrón-Pérez, Sarah Barker, Emiko Miller, Kathryn Franke, Maria Noterman, Divya Seth, Rachael S Allen
SJR Q1CellOA
EpidemiologyMedicine
2
Article|123 citations·2022
X-linked ubiquitin-specific peptidase 11 increases tauopathy vulnerability in women
Yan Yan, Xinming Wang, Dale Chaput, Min‐Kyoo Shin, Yeojung Koh, Li Gan, Andrew A. Pieper, Jung A. Woo, David E. Kang
SJR Q1CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|96 citations·2020
P7C3-A20 treatment one year after TBI in mice repairs the blood–brain barrier, arrests chronic neurodegeneration, and restores cognition
Edwin Vázquez‐Rosa, Min‐Kyoo Shin, Matasha Dhar, Kalyani Chaubey, Coral J. Cintrón-Pérez, Xinmiao Tang, Xudong Liao, Emiko Miller, Yeojung Koh, Sarah Barker, Kathryn Franke, Danyel R. Crosby
SJR Q1Proceedings of the National Academy of SciencesOA

Chronic neurodegeneration in survivors of traumatic brain injury (TBI) is a major cause of morbidity, with no effective therapies to mitigate this progressive and debilitating form of nerve cell death. Here, we report that pharmacologic restoration of the blood-brain barrier (BBB), 12 mo after murine TBI, is associated with arrested axonal neurodegeneration and cognitive recovery, benefits that persisted for months after treatment cessation. Recovery was achieved by 30 d of once-daily administra

NeurologyMedicine
4
Article|74 citations·2015
Treadmill Running Reverses Cognitive Declines due to Alzheimer Disease
Jinkyung Cho, Min‐Kyoo Shin, Donghyun Kim, Inhwan Lee, Shinuk Kim, Hyun‐Sik Kang
SJR Q1Medicine & Science in Sports & Exercise

The current findings suggest that treadmill running provides a nonpharmacological means to combat cognitive declines due to AD pathology.

PhysiologyMedicine
5
Article|65 citations·2018
Neuroprotective Efficacy of a Sigma 2 Receptor/TMEM97 Modulator (DKR-1677) after Traumatic Brain Injury
Edwin Vázquez‐Rosa, Michael R. Watson, James J. Sahn, Timothy R. Hodges, Rachel Schroeder, Coral J. Cintrón-Pérez, Min-Kyoo Shin, Terry C. Yin, Josie Emery, Stephen F. Martin, Daniel J. Liebl, Andrew A. Pieper
SJR Q1ACS Chemical Neuroscience

Compounds targeting the sigma 2 receptor, which we recently cloned and showed to be identical with transmembrane protein 97 (σ2R/TMEM97), are broadly applicable therapeutic agents currently in clinical trials for imaging in breast cancer and for treatment of Alzheimer's disease and schizophrenia. These promising applications coupled with our previous observation that the σ2R/TMEM97 modulator SAS-0132 has neuroprotective attributes and improves cognition in wild-type mice suggests that modulating

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|49 citations·2017
Neuronal PAS Domain Proteins 1 and 3 Are Master Regulators of Neuropsychiatric Risk Genes
Jacob J. Michaelson, Min‐Kyoo Shin, Jin‐Young Koh, Leo Brueggeman, Angela Zhang, Aaron Katzman, Latisha McDaniel, Mimi Fang, Miles A. Pufall, Andrew A. Pieper
SJR Q1Biological PsychiatryOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|47 citations·2018
Neuroprotective efficacy of P7C3 compounds in primate hippocampus
Melissa D. Bauman, Cynthia M. Schumann, Erin L. Carlson, Sandra L. Taylor, Edwin Vázquez‐Rosa, Coral J. Cintrón-Pérez, Min-Kyoo Shin, Noelle S. Williams, Andrew A. Pieper
SJR Q1Translational PsychiatryOA

There is a critical need for translating basic science discoveries into new therapeutics for patients suffering from difficult to treat neuropsychiatric and neurodegenerative conditions. Previously, a target-agnostic in vivo screen in mice identified P7C3 aminopropyl carbazole as capable of enhancing the net magnitude of postnatal neurogenesis by protecting young neurons from death. Subsequently, neuroprotective efficacy of P7C3 compounds in a broad spectrum of preclinical rodent models has also

Developmental NeuroscienceNeuroscience
8
Article|40 citations·2013
Neuropep-1 ameliorates learning and memory deficits in an Alzheimer's disease mouse model, increases brain-derived neurotrophic factor expression in the brain, and causes reduction of amyloid beta plaques
Min‐Kyoo Shin, Hong Gi Kim, Seung Hyun Baek, WooRam Jung, Dong Ik Park, Jong Sung Park, Dong‐Gyu Jo, Kil-Lyong Kim
SJR Q1Neurobiology of Aging
Cellular and Molecular NeuroscienceNeuroscience
9
Article|36 citations·2020
Identification of chronic brain protein changes and protein targets of serum auto-antibodies after blast-mediated traumatic brain injury
Matthew M. Harper, Danielle S. Rudd, Kacie J. Meyer, Anumantha G. Kanthasamy, Vellareddy Anantharam, Andrew A. Pieper, Edwin Vázquez‐Rosa, Min‐Kyoo Shin, Kalyani Chaubey, Yeojung Koh, Lucy Evans, Alexander G. Bassuk
SJR Q1HeliyonOA

In addition to needing acute emergency management, blast-mediated traumatic brain injury (TBI) is also a chronic disorder with delayed-onset symptoms that manifest and progress over time. While the immediate consequences of acute blast injuries are readily apparent, chronic sequelae are harder to recognize. Indeed, the identification of individuals with mild-TBI or TBI-induced symptoms is greatly impaired in large part due to the lack of objective and robust biomarkers. The purpose of this study

NeurologyMedicine
10
Article|27 citations·2024
Acutely blocking excessive mitochondrial fission prevents chronic neurodegeneration after traumatic brain injury
Preethy Sridharan, Yeojung Koh, Emiko Miller, Di Hu, Suwarna Chakraborty, Sunil Jamuna Tripathi, Teresa R. Kee, Kalyani Chaubey, Edwin Vázquez‐Rosa, Sarah Barker, Hui Liu, Rose A León-Alvarado
SJR Q1Cell Reports MedicineOA

Progression of acute traumatic brain injury (TBI) into chronic neurodegeneration is a major health problem with no protective treatments. Here, we report that acutely elevated mitochondrial fission after TBI in mice triggers chronic neurodegeneration persisting 17 months later, equivalent to many human decades. We show that increased mitochondrial fission after mouse TBI is related to increased brain levels of mitochondrial fission 1 protein (Fis1) and that brain Fis1 is also elevated in human T

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|25 citations·2015
Chronic Stress Decreases Cerebrovascular Responses During Rat Hindlimb Electrical Stimulation
Sohee Lee, Bok‐Man Kang, Min‐Kyoo Shin, Jiwoong Min, Chaejeong Heo, Yu-Bu Lee, Eunha Baeg, Minah Suh
SJR Q2Frontiers in NeuroscienceOA

Repeated stress is one of the major risk factors for cerebrovascular disease, including stroke, and vascular dementia. However, the functional alterations in the cerebral hemodynamic response induced by chronic stress have not been clarified. Here, we investigated the in vivo cerebral hemodynamic changes and accompanying cellular and molecular changes in chronically stressed rats. After 3 weeks of restraint stress, the elicitation of stress was verified by behavioral despair in the forced swimmi

Behavioral NeuroscienceNeuroscience
12
Article|25 citations·2019
Ganglioside GQ1b ameliorates cognitive impairments in an Alzheimer’s disease mouse model, and causes reduction of amyloid precursor protein
Min‐Kyoo Shin, Minsuk Choi, Hyang-Ji Chae, Jiwon Kim, Hong Gi Kim, Kil-Lyong Kim
SJR Q1Scientific ReportsOA

Abstract Brain-derived neurotrophic factor (BDNF) plays crucial roles in memory impairments including Alzheimer’s disease (AD). Previous studies have reported that tetrasialoganglioside GQ1b is involved in long-term potentiation and cognitive functions as well as BDNF expression. However, in vitro and in vivo functions of GQ1b against AD has not investigated yet. Consequently, treatment of oligomeric Aβ followed by GQ1b significantly restores Aβ 1–42 -induced cell death through BDNF up-regulatio

PhysiologyMedicine
13
Article|21 citations·2024
Anti-acetylated-tau immunotherapy is neuroprotective in tauopathy and brain injury
C Bravo, Karen Krukowski, Sarah Barker, Chao Wang, Yaqiao Li, Li Fan, Edwin Vázquez‐Rosa, Min‐Kyoo Shin, Man Ying Wong, Louise D. McCullough, Ryan S. Kitagawa, H. Alex Choi
SJR Q1Molecular NeurodegenerationOA

BACKGROUND: Tau is aberrantly acetylated in various neurodegenerative conditions, including Alzheimer's disease, frontotemporal lobar degeneration (FTLD), and traumatic brain injury (TBI). Previously, we reported that reducing acetylated tau by pharmacologically inhibiting p300-mediated tau acetylation at lysine 174 reduces tau pathology and improves cognitive function in animal models. METHODS: We investigated the therapeutic efficacy of two different antibodies that specifically target acetyla

PhysiologyMedicine
14
Article|12 citations·2023
Tetramic acid-motif natural products from a marine fungus Tolypocladium cylindrosporum FB06 and their anti-Parkinson activities
Yuna Jung, Chaesun Kwon, Taeyeon Kim, Jin Woo Lee, Min‐Kyoo Shin, Sang Hee Shim
SJR Q1Marine Life Science & TechnologyOA
NeurologyMedicine
15
Article|11 citations·2021
Characterization of the Jet-Flow Overpressure Model of Traumatic Brain Injury in Mice
Min‐Kyoo Shin, Edwin Vázquez‐Rosa, Coral J. Cintrón-Pérez, W. Riegel, Matthew M. Harper, David Ritzel, Andrew A. Pieper
SJR Q3Neurotrauma ReportsOA

The jet-flow overpressure chamber (OPC) has been previously reported as a model of blast-mediated traumatic brain injury (bTBI). However, rigorous characterization of the features of this injury apparatus shows that it fails to recapitulate exposure to an isolated blast wave. Through combined experimental and computational modeling analysis of gas-dynamic flow conditions, we show here that the jet-flow OPC produces a collimated high-speed jet flow with extreme dynamic pressure that delivers a se

EpidemiologyMedicine

Research Areas

NeurologyMolecular BiologyPhysiologyPharmacologyEpidemiologyCellular and Molecular Neuroscience

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