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Suk-Gu Kang

Yonsei University · Medicine

About the Lab

Professor Suk-Gu Kang's research lab focuses on understanding the tumor microenvironment in glioblastoma (GBM), with a particular emphasis on extracellular matrix dynamics, cancer metabolism, and the role of stromal cells such as mesenchymal stem-like cells (MSLCs) in tumor progression. The lab develops biomimetic in vitro models using patient-derived extracellular matrix to study GBM invasion and explores novel therapeutic strategies targeting metabolic pathways (e.g., ALDH and oxidative phosphorylation) and immune evasion mechanisms. They also investigate the anti-apoptotic effects of insulin and the immunomodulatory roles of complement factors like C5a in GBM. The lab integrates molecular biology, immunology, and translational oncology to identify new therapeutic targets for this aggressive brain cancer.

glioblastomatumor microenvironmentcancer metabolismstromal cellsimmunotherapy

Research Overview

Papers
386
Total Citations
8,906
Papers (5y)
131
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
131total
2022
2023
2024
2025
2026
Citations per year (5y)
487total
20222023202420252026

Selected Papers

15
1
Article|645 citations·2018
Human glioblastoma arises from subventricular zone cells with low-level driver mutations
Joo Ho Lee, Jeong Eun Lee, Jee Ye Kahng, Se Hoon Kim, Jun Sung Park, Seon‐Jin Yoon, Ji‐Yong Um, Woo Kyeong Kim, Jake June-Koo Lee, Junseong Park, Eui Hyun Kim, Ji-Hyun Lee
SJR Q1NatureOA
GeneticsMedicine
2
Article|524 citations·2015
Brain somatic mutations in MTOR cause focal cortical dysplasia type II leading to intractable epilepsy
Jae Seok Lim, Woo-Il Kim, Hoon‐Chul Kang, Se Hoon Kim, Ah Hyung Park, Eun-Kyung Park, Young‐Wook Cho, Sangwoo Kim, Ho Min Kim, Jeong A. Kim, Junho Kim, Hwanseok Rhee
SJR Q1Nature MedicineOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|156 citations·2018
The mode and dynamics of glioblastoma cell invasion into a decellularized tissue-derived extracellular matrix-based three-dimensional tumor model
Ilkyoo Koh, Junghwa Cha, Junseong Park, Junjeong Choi, Seok‐Gu Kang, Pilnam Kim
SJR Q1Scientific ReportsOA

Glioblastoma multiforme (GBM) is the most common brain tumor with very aggressive and infiltrative. Extracellular matrix (ECM) plays pivotal roles in the infiltrative characteristics of GBM. To understand the invasive characteristic of GBM, it is necessary to study cell-ECM interaction in the physiologically relevant biomimetic model that recapitulates the GBM-specific ECM microenvironment. Here, we propose biomimetic GBM-specific ECM microenvironment for studying mode and dynamics of glioblasto

Cell BiologyBiochemistry, Genetics and Molecular Biology
5
Article|93 citations·2017
Regulation of bioenergetics through dual inhibition of aldehyde dehydrogenase and mitochondrial complex I suppresses glioblastoma tumorspheres
Junseong Park, Jin‐Kyoung Shim, Joon Hee Kang, Junjeong Choi, Jong Hee Chang, Soo‐Youl Kim, Seok‐Gu Kang
SJR Q1Neuro-OncologyOA

Background: Targeted approaches for treating glioblastoma (GBM) attempted to date have consistently failed, highlighting the imperative for treatment strategies that operate on different mechanistic principles. Bioenergetics deprivation has emerged as an effective therapeutic approach for various tumors. We have previously found that cancer cells preferentially utilize cytosolic NADH supplied by aldehyde dehydrogenase (ALDH) for ATP production through oxidative phosphorylation (OxPhos). This stu

Cancer ResearchBiochemistry, Genetics and Molecular Biology
6
Article|86 citations·2010
Isolation and Perivascular Localization of Mesenchymal Stem Cells From Mouse Brain
Seok‐Gu Kang, Naoki Shinojima, Anwar Hossain, Joy Gumin, Raymund L. Yong, Howard Colman, Frank C. Marini, Michael Andreeff, Frederick F. Lang
SJR Q1NeurosurgeryOA

BACKGROUND: Although originally isolated from the bone marrow, mesenchymal stem cells (MSCs) have recently been detected in other tissues. However, little is known about MSCs in the brain. OBJECTIVE: To determine the extent to which cells with the features of MSCs exist in normal brain tissue and to determine the location of these cells in the brain. METHODS: Single-cell suspensions from mouse brains were cultured according to the same methods used for culturing bone marrow-derived MSCs (BM-MSCs

GeneticsMedicine
7
Article|83 citations·2003
Insulin can block apoptosis by decreasing oxidative stress via phosphatidylinositol 3-kinase- and extracellular signal-regulated protein kinase-dependent signaling pathways in HepG2 cells
Seok‐Gu Kang, Jinghai Song, Hyunju Kang, Sarah Kim-Hellmuth, Youngsook Lee, Daeui Park
SJR Q1European Journal of Endocrinology

OBJECTIVE: Insulin has well-known activities in controlling energy metabolism, cellular proliferation and biosynthesis of functional molecules to maintain a biological homeostasis. Recently, several studies have suggested that insulin may protect cells from apoptosis in different cell lines; however, little is known about the nature of its anti-apoptotic activity. In many clinical disorders, including type 2 diabetes mellitus, oxidative stress and the production of reactive oxygen species (ROS)

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|73 citations·2018
Effect of combined anti-PD-1 and temozolomide therapy in glioblastoma
Junseong Park, Chang Gon Kim, Jin‐Kyoung Shim, Jong Hoon Kim, Hoyoung Lee, Jae Eun Lee, Min Hwan Kim, Keeok Haam, Inkyung Jung, Su‐Hyung Park, Jong Hee Chang, Eui‐Cheol Shin
SJR Q1OncoImmunologyOA

Background: Although programmed death-1 (PD-1) blockade is effective in treating several types of cancer, the efficacy of this agent in glioblastoma (GBM) is largely unknown.Methods: We evaluated therapeutic effects of anti-PD-1, temozolomide (TMZ), and their combination in an orthotopic murine GBM model. The phenotype, number, and composition of lymphocytes were evaluated using flow cytometry. Transcriptional profiles of tumor tissues were analyzed using microarrays. Generation of antitumor imm

GeneticsMedicine
9
Article|73 citations·2020
Crosstalk between GBM cells and mesenchymal stemlike cells promotes the invasiveness of GBM through the C5a/p38/ZEB1 axis
Eun-Jung Lim, Seungmo Kim, Yoonjee Oh, Yongjoon Suh, Neha Kaushik, Ji-Hyun Lee, Hae‐June Lee, Min-Jung Kim, Myung Jin Park, Rae-Kwon Kim, Junghwa Cha, Se Hoon Kim
SJR Q1Neuro-OncologyOA

BACKGROUND: Mesenchymal stemlike cells (MSLCs) have been detected in many types of cancer including brain tumors and have received attention as stromal cells in the tumor microenvironment. However, the cellular mechanisms underlying their participation in cancer progression remain largely unexplored. The aim of this study was to determine whether MSLCs have a tumorigenic role in brain tumors. METHODS: To figure out molecular and cellular mechanisms in glioma invasion, we have cultured glioma wit

ImmunologyImmunology and Microbiology
10
Article|72 citations·2012
Isolation of glioma cancer stem cells in relation to histological grades in glioma specimens
Byung Ho Kong, Na-Ri Park, Jin‐Kyoung Shim, Bo‐Kyung Kim, Hye-Jin Shin, Ji-Hyun Lee, Yong‐Min Huh, Su‐Jae Lee, Se Hoon Kim, Eui Hyun Kim, Eun-Kyung Park, Jong Hee Chang
SJR Q2Child s Nervous SystemOA
GeneticsMedicine
11
Article|66 citations·2022
Etomoxir, a carnitine palmitoyltransferase 1 inhibitor, combined with temozolomide reduces stemness and invasiveness in patient-derived glioblastoma tumorspheres
Jin‐Kyoung Shim, Seonah Choi, Seon‐Jin Yoon, Ran Joo Choi, Junseong Park, Eun Hee Lee, Hye Joung Cho, Suji Lee, Wan‐Yee Teo, Ju Hyung Moon, Hyun Sil Kim, Eui Hyun Kim
SJR Q1Cancer Cell InternationalOA

INTRODUCTION: The importance of fatty acid oxidation (FAO) in the bioenergetics of glioblastoma (GBM) is being realized. Etomoxir (ETO), a carnitine palmitoyltransferase 1 (CPT1) inhibitor exerts cytotoxic effects in GBM, which involve interrupting the FAO pathway. We hypothesized that FAO inhibition could affect the outcomes of current standard temozolomide (TMZ) chemotherapy against GBM. METHODS: The FAO-related gene expression was compared between GBM and the tumor-free cortex. Using four dif

Cancer ResearchBiochemistry, Genetics and Molecular Biology
12
Article|63 citations·2018
Proinvasive extracellular matrix remodeling in tumor microenvironment in response to radiation
Ki-Chun Yoo, Yongjoon Suh, Yoojeong An, Hae‐June Lee, Ye Ji Jeong, Nizam Uddin, Yan‐Hong Cui, Tae Hoon Roh, Jin‐Kyoung Shim, Jong Hee Chang, Jong Bae Park, Min-Jung Kim
SJR Q1OncogeneOA
OncologyMedicine
13
Article|62 citations·2019
Transcriptome profiling-based identification of prognostic subtypes and multi-omics signatures of glioblastoma
Junseong Park, Jin‐Kyoung Shim, Seon‐Jin Yoon, Se Hoon Kim, Jong Hee Chang, Seok‐Gu Kang
SJR Q1Scientific ReportsOA

Glioblastoma (GBM) is a lethal tumor, but few biomarkers and molecular subtypes predicting prognosis are available. This study was aimed to identify prognostic subtypes and multi-omics signatures for GBM. Using oncopression and TCGA-GBM datasets, we identified 80 genes most associated with GBM prognosis using correlations between gene expression levels and overall survival of patients. The prognostic score of each sample was calculated using these genes, followed by assigning three prognostic su

GeneticsMedicine
14
Article|52 citations·2006
Surgical results in pediatric moyamoya disease: Angiographic revascularization and the clinical results
Dal-Soo Kim, Seok‐Gu Kang, Do-Sung Yoo, Pil‐Woo Huh, Kyoung Suok Cho, Chun Kun Park
SJR Q2Clinical Neurology and Neurosurgery
RheumatologyMedicine
15
Article|50 citations·2006
Combination celecoxib and temozolomide in C6 rat glioma orthotopic model
Seok‐Gu Kang, Jong‐Won Kim, Kwan Park, Morris D. Groves, Do‐Hyun Nam
SJR Q1Oncology Reports

The purpose of this study was to determine whether a combination treatment of temozolomide with celecoxib is effective in the rat orthotopic glioma model. After stereotactic injection of C6/LacZ rat glioma cells into the Sprague Dawley rat brain, the rats were randomly assigned to four treatment groups [group 1, control treatment; group 2, celecoxib (25 mg/kg p.o. everyday) alone; group 3, temozolomide (7.5 mg/kg i.p. for 5 days at 2nd week) alone; group 4, a combination of celecoxib and temozol

PharmacologyMedicine

Research Areas

GeneticsMolecular BiologyCancer ResearchPulmonary and Respiratory MedicineOncologyEpidemiology

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