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Won-Ki Kim

Korea University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Won-Ki Kim's research lab specializes in neuroinflammation and neuroprotection, focusing on the role of microglia and glial cells in neurodegenerative and cerebrovascular diseases. The lab investigates molecular mechanisms underlying microglial activation, oxidative stress, and excitotoxicity, with particular emphasis on endogenous protective pathways and therapeutic modulation via cytokines, natural compounds, and signaling molecules. Key research directions include the regulation of inflammatory responses in the brain, the development of neuroprotective strategies against ischemic and hemorrhagic brain injury, and the identification of endogenous mechanisms that enhance microglial resilience. The lab integrates in vitro cell culture models with in vivo animal studies to explore novel targets for treating stroke, Alzheimer’s disease, and other neurological disorders.

neuroinflammationmicroglianeuroprotectioncerebral ischemiaoxidative stress

Research Overview

Papers
130
Total Citations
5,780
Papers (5y)
17
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
17total
2016
2017
2019
2020
2021
Citations per year (5y)
335total
20162017201920202021

Selected Papers

15
1
Article|272 citations·2006
Anti-inflammatory effects of short chain fatty acids in IFN-γ-stimulated RAW 264.7 murine macrophage cells: Involvement of NF-κB and ERK signaling pathways
Jin‐Sun Park, Eun Jung Lee, Jae‐Chul Lee, Won-Ki Kim, Hee-Sun Kim
SJR Q1International Immunopharmacology
Nutrition and DieteticsNursing
2
Article|153 citations·2013
Activation of Cannabinoid CB2 Receptor–Mediated AMPK/CREB Pathway Reduces Cerebral Ischemic Injury
In Young Choi, Chung Ju, Angela M. A. Anthony Jalin, Da In Lee, Paul L. Prather, Won-Ki Kim
SJR Q1American Journal Of PathologyOA
PharmacologyMedicine
3
Article|122 citations·2004
TGF-β1 Represses Activation and Resultant Death of Microglia via Inhibition of Phosphatidylinositol 3-Kinase Activity
Won-Ki Kim, So-Young Hwang, Eok‐Soo Oh, Hua Piao, Ki-Wan Kim, Inn‐Oc Han
SJR Q1The Journal of Immunology

Overactivation of microglial cells may cause severe brain tissue damage in various neurodegenerative diseases. Therefore, the overactivation of microglia should be repressed by any means. The present study investigated the potential mechanism and signaling pathway for the repressive effect of TGF-beta1, a major anti-inflammatory cytokine, on overactivation and resultant death of microglial cells. A bacterial endotoxin LPS stimulated expression of inducible NO synthase (iNOS) and caused death in

NeurologyNeuroscience
4
Article|103 citations·2007
Role of glutathione peroxidase in the ontogeny of hippocampal oxidative stress and kainate seizure sensitivity in the genetically epilepsy-prone rats
Eun‐Joo Shin, Kwang Ho Ko, Won-Ki Kim, Jong Seok Chae, Tran Phi Hoang Yen, Hyun Ji Kim, Myung‐Bok Wie, Hyoung‐Chun Kim
SJR Q2Neurochemistry International
Nutrition and DieteticsNursing
5
Article|72 citations·2002
p38 mitogen-activated protein kinase mediates lipopolysaccharide, not interferon-γ, -induced inducible nitric oxide synthase expression in mouse BV2 microglial cells
Inn‐Oc Han, Ki-Wan Kim, Jong Hoon Ryu, Won-Ki Kim
SJR Q2Neuroscience Letters
NeurologyNeuroscience
6
Article|56 citations·2010
Tocopheryl oligochitosan-based self assembling oligomersomes for siRNA delivery
Sang Myoung Noh, Su Eun Han, Gayong Shim, Kyoung Eun Lee, Chan‐Wha Kim, Sung‐Sik Han, Yongseok Choi, Young Keun Kim, Won-Ki Kim, Yu‐Kyoung Oh
SJR Q1Biomaterials
Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|53 citations·2004
Anxiolytic-like effects of extracts from Albizzia julibrissin bark in the elevated plus-maze in rats
Won-Ki Kim, Ji Wook Jung, Nam Yoon Ahn, Hye Rim Oh, Bo Kyung Lee, Jin Kyung Oh, Jae Hoon Cheong, Hyang Sook Chun, Jong Hoon Ryu
SJR Q1Life Sciences
Complementary and alternative medicineMedicine
8
Article|52 citations·2008
Kainate-induced mitochondrial oxidative stress contributes to hippocampal degeneration in senescence-accelerated mice
Eun‐Joo Shin, Ji Hoon Jeong, Guoying Bing, Eon Sub Park, Jong Seok Chae, Tran Phi Hoang Yen, Won-Ki Kim, Myung‐Bok Wie, Bae-Dong Jung, Hyun Ji Kim, Sung-Youl Lee, Hyoung‐Chun Kim
SJR Q2Cellular Signalling
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|51 citations·2010
Anti-ischemic and anti-inflammatory activity of (S)-cis-verbenol
In Young Choi, Ji Hyae Lim, Sun‐Young Hwang, Jae‐Chul Lee, Geum-Sil Cho, Won-Ki Kim
SJR Q2Free Radical Research

(S)-cis-verbenol, a natural metabolite from (-)-alpha-pinene of host pine tree, has been suggested to have anti-ischemic activity. However, the exact mechanism for the anti-ischemic activity of (S)-cis-verbenol remains unclear yet. In the present study, (S)-cis-verbenol reduced cerebral ischemic injury caused by 1.5-h middle cerebral artery occlusion followed by 24-h reperfusion. Furthermore, (S)-cis-verbenol significantly prevented neuronal cell death caused by oxygen-glucose deprivation (OGD,

Plant ScienceAgricultural and Biological Sciences
10
Article|47 citations·2006
S-Allyl-l-cysteine attenuates cerebral ischemic injury by scavenging peroxynitrite and inhibiting the activity of extracellular signal-regulated kinase
Jimyung Kim, Jae‐Chul Lee, Namsoo Chang, Hyang Sook Chun, Won-Ki Kim
SJR Q2Free Radical Research

S-Allyl-L-cysteine (SAC) has been shown to reduce ischemic injury due to its antioxidant activity. However, the antioxidant property of SAC has been controversial. The present study investigated the neuroprotective mechanism of SAC in cerebral ischemic insults. SAC decreased the size of infarction after transient or global ischemic insults. While it did not alter the N-methyl-D-aspartate excitotoxicity, SAC significantly scavenged the endogenously or exogenously produced ONOO- and reduced ONOO-

Plant ScienceAgricultural and Biological Sciences
11
Article|45 citations·2008
Wogonin inhibits microglial cell migration via suppression of nuclear factor-kappa B activity
Hua Piao, In Young Choi, Jin‐Sun Park, Hee-Sun Kim, Jae Hoon Cheong, Kun Ho Son, Su Jin Jeon, Kwang Ho Ko, Won-Ki Kim
SJR Q1International Immunopharmacology
PharmacologyMedicine
12
Article|42 citations·2011
Activated Microglia Are Less Vulnerable to Hemin Toxicity due to Nitric Oxide-Dependent Inhibition of JNK and p38 MAPK Activation
Ying Cai, Geum-Sil Cho, Chung Ju, Si-Ling Wang, Jong Hoon Ryu, Chan Young Shin, Hee-Sun Kim, Kung-Woo Nam, Angela M. A. Anthony Jalin, Woong Sun, In Young Choi, Won-Ki Kim
SJR Q1The Journal of ImmunologyOA

In intracerebral hemorrhage, microglia become rapidly activated and remove the deposited blood and cellular debris. To survive in a harmful hemorrhagic or posthemorrhagic condition, activated microglia must be equipped with appropriate self-defensive mechanism(s) to resist the toxicity of hemin, a component released from damaged RBCs. In the current study, we found that activation of microglia by pretreatment with LPS markedly reduced their vulnerability to hemin toxicity in vitro. Similarly, in

NeurologyMedicine
13
Article|38 citations·2000
Protection by a manganese porphyrin of endogenous peroxynitrite-induced death of glial cells via inhibition of mitochondrial transmembrane potential decrease
In Young Choi, Sun Jung Lee, Chung Ju, Wonwoo Nam, Hyoung‐Chun Kim, Kwang Ho Ko, Won-Ki Kim
SJR Q1Glia

In the cerebral ischemic penumbra, progressive metabolic deterioration eventually leads to death of glial cells. The exact mechanism for the death of glial cells is unclear. Here we report that under glucose-deprived conditions immunostimulated glial cells rapidly underwent death via production of large amounts of peroxynitrite. The cell-permeable Mn(III)tetrakis(N-methyl-4'-pyridyl)porphyrin (MnTMPyP) caused a concentration-dependent attenuation of the increased death in glucose-deprived immuno

Electrical and Electronic EngineeringEngineering
14
Article|36 citations·2004
A new anti-inflammatory agent KL-1037 represses proinflammatory cytokine and inducible nitric oxide synthase (iNOS) gene expression in activated microglia
Won-Ki Kim, Pil‐Geum Jang, Moon-Sook Woo, In-Oc Han, Hua Piao, Keumho Lee, Heesoon Lee, Tong H. Joh, Hee-Sun Kim
SJR Q1Neuropharmacology
NeurologyNeuroscience
15
Article|36 citations·1998
Potentiated glucose deprivation-induced death of astrocytes after induction of iNOS
Jung‐Jin Choi, Won-Ki Kim
SJR Q2Journal of Neuroscience Research

Astrocytes play an essential role in the maintenance of normal neuronal function. Here we report that pretreatment of interferon-gamma (IFN-gamma) and lipopolysaccharides (LPS) made murine astrocytes highly vulnerable to glucose deprivation-induced death. Neither 12-hr glucose deprivation nor 2-day treatment with IFN-gamma (100 U/ml) and LPS (1 microg/ml) altered the viability of astrocytes. However, significant death of IFN-gamma/LPS-treated astrocytes was observed after 4-hr glucose deprivatio

NeurologyNeuroscience

Research Areas

NeurologyMolecular BiologyCellular and Molecular NeuroscienceCancer ResearchPharmacologyPhysiology

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