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Jong-Bae Park

Kyung Hee University · Immunology and Microbiology

About the Lab

Professor Jong-Bae Park's research lab specializes in developing advanced nanomedicines and gene-editing technologies for the treatment of aggressive brain tumors, particularly glioblastoma. The lab focuses on designing smart delivery systems—such as polymer-based nanocapsules and siRNA nanomedicines—that enable targeted, stable, and efficient delivery of therapeutic agents across biological barriers like the blood-brain barrier. Key research directions include understanding and overcoming tumor microenvironment-mediated therapy resistance, particularly through interactions between glioma stem cells, tumor-associated macrophages, and signaling molecules like miR-21, TGM2, and ARS2. The lab also pioneers innovative CRISPR-Cas9 delivery platforms for precise, non-invasive gene editing in the brain.

nanomedicineglioblastomagene therapyCRISPR deliverytumor microenvironment

Research Overview

Papers
140
Total Citations
2,183
Papers (5y)
106
Primary Field
Immunology and Microbiology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
106total
2022
2023
2024
2025
2026
Citations per year (5y)
675total
20222023202420252026

Selected Papers

15
1
Article|218 citations·2019
ROS‐Responsive Polymeric siRNA Nanomedicine Stabilized by Triple Interactions for the Robust Glioblastoma Combinational RNAi Therapy
Meng Zheng, Yuanyuan Liu, Yibin Wang, Dongya Zhang, Yan Zou, Weimin Ruan, Jinlong Yin, Wei Tao, Jong Bae Park, Bingyang Shi
SJR Q1Advanced Materials

Small interfering RNA (siRNA) holds inherent advantages and great potential for treating refractory diseases. However, lack of suitable siRNA delivery systems that demonstrate excellent circulation stability and effective at-site delivery ability is currently impeding siRNA therapeutic performance. Here, a polymeric siRNA nanomedicine (3I-NM@siRNA) stabilized by triple interactions (electrostatic, hydrogen bond, and hydrophobic) is constructed. Incorporating extra hydrogen and hydrophobic intera

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|208 citations·2022
Blood-brain barrier–penetrating single CRISPR-Cas9 nanocapsules for effective and safe glioblastoma gene therapy
Yan Zou, Xinhong Sun, Qingshan Yang, Meng Zheng, Olga Shimoni, Weimin Ruan, Yibin Wang, Dongya Zhang, Jinlong Yin, Xiangang Huang, Wei Tao, Jong Bae Park
SJR Q1Science AdvancesOA

We designed a unique nanocapsule for efficient single CRISPR-Cas9 capsuling, noninvasive brain delivery and tumor cell targeting, demonstrating an effective and safe strategy for glioblastoma gene therapy. Our CRISPR-Cas9 nanocapsules can be simply fabricated by encapsulating the single Cas9/sgRNA complex within a glutathione-sensitive polymer shell incorporating a dual-action ligand that facilitates BBB penetration, tumor cell targeting, and Cas9/sgRNA selective release. Our encapsulating nanoc

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|152 citations·2012
Silencing of MicroRNA-21 Confers Radio-Sensitivity through Inhibition of the PI3K/AKT Pathway and Enhancing Autophagy in Malignant Glioma Cell Lines
Ho‐Shin Gwak, Tae Hoon Kim, Guk Heui Jo, Youn‐Jae Kim, Hee‐Jin Kwak, Jong Heon Kim, Jinlong Yin, Heon Yoo, Seung Hoon Lee, Jong Bae Park
SJR Q1PLoS ONEOA

Radiation is a core part of therapy for malignant glioma and is often provided following debulking surgery. However, resistance to radiation occurs in most patients, and the underlying molecular mechanisms of radio-resistance are not fully understood. Here, we demonstrated that microRNA 21 (miR-21), a well-known onco-microRNA in malignant glioma, is one of the major players in radio-resistance. Radio-resistance in different malignant glioma cell lines measured by cytotoxic cell survival assay wa

Cancer ResearchBiochemistry, Genetics and Molecular Biology
4
Article|138 citations·2020
ARS2/MAGL signaling in glioblastoma stem cells promotes self-renewal and M2-like polarization of tumor-associated macrophages
Jinlong Yin, Sung Soo Kim, Eunji Choi, Young Taek Oh, Weiwei Lin, Tae Hoon Kim, K. Jason, Jun Hee Hong, Se Hwan Park, Hyung Joon Kwon, Xiong Jin, Yeonhee You
SJR Q1Nature CommunicationsOA

Abstract The interplay between glioblastoma stem cells (GSCs) and tumor-associated macrophages (TAMs) promotes progression of glioblastoma multiforme (GBM). However, the detailed molecular mechanisms underlying the relationship between these two cell types remain unclear. Here, we demonstrate that ARS2 (arsenite-resistance protein 2), a zinc finger protein that is essential for early mammalian development, plays critical roles in GSC maintenance and M2-like TAM polarization. ARS2 directly activa

ImmunologyImmunology and Microbiology
5
Article|97 citations·2017
Transglutaminase 2 Inhibition Reverses Mesenchymal Transdifferentiation of Glioma Stem Cells by Regulating C/EBPβ Signaling
Jinlong Yin, Young Taek Oh, Jeong‐Yub Kim, Sung Soo Kim, Eunji Choi, Tae Hoon Kim, Jun Hee Hong, Nakho Chang, Hee Jin Cho, K. Jason, Jeong Cheol Kim, Hyung Joon Kwon
SJR Q1Cancer Research

Abstract Necrosis is a hallmark of glioblastoma (GBM) and is responsible for poor prognosis and resistance to conventional therapies. However, the molecular mechanisms underlying necrotic microenvironment-induced malignancy of GBM have not been elucidated. Here, we report that transglutaminase 2 (TGM2) is upregulated in the perinecrotic region of GBM and triggered mesenchymal (MES) transdifferentiation of glioma stem cells (GSC) by regulating master transcription factors (TF), such as C/EBPβ, TA

Pulmonary and Respiratory MedicineMedicine
6
Article|91 citations·2024
Integrated proteogenomic characterization of glioblastoma evolution
Kyung‐Hee Kim, Simona Migliozzi, Harim Koo, Jun-Hee Hong, Seung Min Park, Sooheon Kim, Hyung Joon Kwon, Seokjun Ha, Luciano Garofano, Young Taek Oh, Fulvio D’Angelo, Chan Il Kim
SJR Q1Cancer CellOA
GeneticsMedicine
7
Article|84 citations·2014
Crosstalk between Glioma-Initiating Cells and Endothelial Cells Drives Tumor Progression
Hye-Min Jeon, Sung-Hak Kim, Xun Jin, Jong Bae Park, Se Hoon Kim, Kaushal Joshi, Ichiro Nakano, Hyunggee Kim
SJR Q1Cancer ResearchOA

Glioma-initiating cells (GIC), which reside within the perivascular microenvironment to maintain self-renewal capacity, are responsible for glioblastoma initiation, progression, and recurrence. However, the molecular mechanisms controlling crosstalk between GICs and endothelial cells are poorly understood. Here, we report that, in both GICs and endothelial cells, platelet-derived growth factor (PDGF)-driven activation of nitric oxide (NO) synthase increases NO-dependent inhibitor of differentiat

Cancer ResearchBiochemistry, Genetics and Molecular Biology
8
Article|84 citations·2025
The multilayered transcriptional architecture of glioblastoma ecosystems
Masashi Nomura, Avishay Spitzer, Kevin C. Johnson, Luciano Garofano, Djamel Nehar-Belaid, Noam Galili Darnell, Alissa Greenwald, Lillian Bussema, Young Taek Oh, Frederick S. Varn, Fulvio D’Angelo, Simon Gritsch
SJR Q1Nature GeneticsOA

In isocitrate dehydrogenase wildtype glioblastoma (GBM), cellular heterogeneity across and within tumors may drive therapeutic resistance. Here we analyzed 121 primary and recurrent GBM samples from 59 patients using single-nucleus RNA sequencing and bulk tumor DNA sequencing to characterize GBM transcriptional heterogeneity. First, GBMs can be classified by their broad cellular composition, encompassing malignant and nonmalignant cell types. Second, in each cell type we describe the diversity o

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|82 citations·2015
DEAD-box RNA helicase DDX23 modulates glioma malignancy via elevating miR-21 biogenesis
Jinlong Yin, Gunwoo Park, Jeong Eun Lee, Eun Young Choi, Ju Young Park, Tae Hoon Kim, Nayun Park, Xiong Jin, Ji-Eun Jung, Daye Shin, Jun Hee Hong, Hyunggee Kim
SJR Q1BrainOA

Upregulation of microRNA-21 (miR-21) is known to be strongly associated with the proliferation, invasion, and radio-resistance of glioma cells. However, the regulatory mechanism that governs the biogenesis of miR-21 in glioma is still unclear. Here, we demonstrate that the DEAD-box RNA helicase, DDX23, promotes miR-21 biogenesis at the post-transcriptional level. The expression of DDX23 was enhanced in glioma tissues compared to normal brain, and expression level of DDX23 was highly associated w

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|79 citations·2014
Tumoral RANKL activates astrocytes that promote glioma cell invasion through cytokine signaling
Jun-Kyum Kim, Xiong Jin, Young-Woo Sohn, Xun Jin, Hee-Young Jeon, Eun Jung Kim, Seok Won Ham, Hye-Min Jeon, So Young Chang, Se-Yeong Oh, Jinlong Yin, Sung-Hak Kim
SJR Q1Cancer Letters
Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|74 citations·2015
Pigment Epithelium-Derived Factor (PEDF) Expression Induced by EGFRvIII Promotes Self-renewal and Tumor Progression of Glioma Stem Cells
Jinlong Yin, Gunwoo Park, Tae Hoon Kim, Jun Hee Hong, Youn-Jae Kim, Xiong Jin, Sangjo Kang, Ji-Eun Jung, Jeong-Yub Kim, Hyeongsun Yun, Jeong Eun Lee, Minkyung Kim
SJR Q1PLoS BiologyOA

Epidermal growth factor receptor variant III (EGFRvIII) has been associated with glioma stemness, but the direct molecular mechanism linking the two is largely unknown. Here, we show that EGFRvIII induces the expression and secretion of pigment epithelium-derived factor (PEDF) via activation of signal transducer and activator of transcription 3 (STAT3), thereby promoting self-renewal and tumor progression of glioma stem cells (GSCs). Mechanistically, PEDF sustained GSC self-renewal by Notch1 cle

Cancer ResearchBiochemistry, Genetics and Molecular Biology
12
Article|71 citations·2023
Tissue factor is a critical regulator of radiation therapy-induced glioblastoma remodeling
Hye-Min Jeon, Jeong‐Yub Kim, Hee Jin Cho, Won Jun Lee, Dayna Nguyen, Sung Soo Kim, Young Taek Oh, Hee‐Jin Kim, Chan‐Woong Jung, Gonzalo Piñero, Tanvi Joshi, Dolores Hambardzumyan
SJR Q1Cancer CellOA

Radiation therapy (RT) provides therapeutic benefits for patients with glioblastoma (GBM), but inevitably induces poorly understood global changes in GBM and its microenvironment (TME) that promote radio-resistance and recurrence. Through a cell surface marker screen, we identified that CD142 (tissue factor or F3) is robustly induced in the senescence-associated β-galactosidase (SA-βGal)-positive GBM cells after irradiation. F3 promotes clonal expansion of irradiated SA-βGal<sup>+</sup> GBM cell

GeneticsMedicine
13
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
14
Article|61 citations·2014
Radiation-Induced Autophagy Contributes to Cell Death and Induces Apoptosis Partly in Malignant Glioma Cells
Guk Heui Jo, Oliver Bögler, Yong-Joon Chwae, Heon Yoo, Seung‐Hoon Lee, Jong Bae Park, Youn-Jae Kim, Jong Heon Kim, Ho‐Shin Gwak
SJR Q1Cancer Research and TreatmentOA

These findings suggest that autophagy appears earlier than apoptosis after irradiation and that a portion of the apoptotic population that appears later is autophagy-dependent. Thus, autophagy is a pathway to cell death after irradiation of MG cells.

EpidemiologyMedicine
15
Article|54 citations·2025
Deciphering the longitudinal trajectories of glioblastoma ecosystems by integrative single-cell genomics
Avishay Spitzer, Kevin C. Johnson, Masashi Nomura, Luciano Garofano, Djamel Nehar-Belaid, Noam Galili Darnell, Alissa Greenwald, Lillian Bussema, Young Taek Oh, Frederick S. Varn, Fulvio D’Angelo, Simon Gritsch
SJR Q1Nature GeneticsOA

The evolution of isocitrate dehydrogenase (IDH)-wildtype glioblastoma (GBM) after standard-of-care therapy remains poorly understood. Here we analyzed matched primary and recurrent GBMs from 59 patients using single-nucleus RNA sequencing and bulk DNA sequencing, assessing the longitudinal evolution of the GBM ecosystem across layers of cellular and molecular heterogeneity. The most consistent change was a lower malignant cell fraction at recurrence and a reciprocal increase in glial and neurona

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

ImmunologyCancer ResearchMolecular BiologyGeneticsOncologyEpidemiology

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