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Seo-Yeon Bok

Pohang University of Science and Technology · 医学

研究室紹介

Professor Seo-Yeon Bok's research lab focuses on the tumor microenvironment, particularly the role of immune cells such as tumor-associated macrophages in promoting therapy resistance through metabolic reprogramming and angiogenesis. The lab investigates molecular mechanisms involving HIF signaling, RUNX2 regulation, and metabolic adaptations like aerobic glycolysis in cancer progression and treatment failure. Innovative nanomaterial platforms, including amPEI-encapsulated quantum dots, are developed for advanced cellular imaging and targeted delivery. The lab integrates preclinical models, patient-derived data, and translational approaches to uncover new therapeutic targets in cancer metabolism and microenvironment modulation.

tumor microenvironmentcancer metabolismimmune cell signalingnanomaterials for deliverytherapy resistance

Research Overview

Papers
47
Total Citations
1,200
Papers (5y)
18
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
18total
2021
2022
2023
2024
2025
Citations per year (5y)
267total
20212022202320242025

Selected Papers

15
1
Article|258 citations·2019
Tumor-Associated Macrophages Enhance Tumor Hypoxia and Aerobic Glycolysis
Hoibin Jeong, Sehui Kim, Beom-Ju Hong, Chan-Ju Lee, Young-Eun Kim, Seoyeon Bok, Jung-Min Oh, Seung-Hee Gwak, Min Young Yoo, Min Sun Lee, Seock‐Jin Chung, Joan Defrêne
SJR Q1Cancer Research

Abstract Tumor hypoxia and aerobic glycolysis are well-known resistance factors for anticancer therapies. Here, we demonstrate that tumor-associated macrophages (TAM) enhance tumor hypoxia and aerobic glycolysis in mice subcutaneous tumors and in patients with non–small cell lung cancer (NSCLC). We found a strong correlation between CD68 TAM immunostaining and PET 18fluoro-deoxyglucose (FDG) uptake in 98 matched tumors of patients with NSCLC. We also observed a significant correlation between CD

Cancer ResearchBiochemistry, Genetics and Molecular Biology
2
Article|116 citations·2014
Transcriptional activation of hypoxia-inducible factor-1 (HIF-1) in myeloid cells promotes angiogenesis through VEGF and S100A8
G‐One Ahn, Jun Seita, Beom-Ju Hong, Young-Eun Kim, Seoyeon Bok, Chan-Ju Lee, Kwang Soon Kim, Jerry C. Lee, Nicholas J. Leeper, John P. Cooke, Hak Jae Kim, Il Han Kim
SJR Q1Proceedings of the National Academy of SciencesOA

Emerging evidence indicates that myeloid cells are essential for promoting new blood vessel formation by secreting various angiogenic factors. Given that hypoxia-inducible factor (HIF) is a critical regulator for angiogenesis, we questioned whether HIF in myeloid cells also plays a role in promoting angiogenesis. To address this question, we generated a unique strain of myeloid-specific knockout mice targeting HIF pathways using human S100A8 as a myeloid-specific promoter. We observed that mutan

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|98 citations·2020
A RUNX2 stabilization pathway mediates physiologic and pathologic bone formation
Jung‐Min Kim, Yeon-Suk Yang, Kwang Hwan Park, Xianpeng Ge, Ren Xu, Na Li, Minkyung Song, Hyunho Chun, Seoyeon Bok, Julia F. Charles, Odile Filhol, Brigitte Boldyreff
SJR Q1Nature CommunicationsOA

The osteoblast differentiation capacity of skeletal stem cells (SSCs) must be tightly regulated, as inadequate bone formation results in low bone mass and skeletal fragility, and over-exuberant osteogenesis results in heterotopic ossification (HO) of soft tissues. RUNX2 is essential for tuning this balance, but the mechanisms of posttranslational control of RUNX2 remain to be fully elucidated. Here, we identify that a CK2/HAUSP pathway is a key regulator of RUNX2 stability, as Casein kinase 2 (C

RheumatologyMedicine
4
Article|84 citations·2023
A vertebral skeletal stem cell lineage driving metastasis
Jun Sun, Lingling Hu, Seoyeon Bok, Alisha R. Yallowitz, Michelle Cung, Jason McCormick, Ling J. Zheng, Shawon Debnath, Yuzhe Niu, Adrian Y. Tan, Sarfaraz Lalani, Kyle W. Morse
SJR Q1NatureOA
GeneticsMedicine
5
Article|77 citations·2015
Quantum Dots in an Amphiphilic Polyethyleneimine Derivative Platform for Cellular Labeling, Targeting, Gene Delivery, and Ratiometric Oxygen Sensing
Joonhyuck Park, Jun Hwa Lee, Jungheon Kwag, Yeonggyeong Baek, Bumju Kim, Calvin J. Yoon, Seoyeon Bok, So‐Hye Cho, Ki Hean Kim, G‐One Ahn, Sungjee Kim
SJR Q1ACS Nano

Amphiphilic polyethyleneimine derivatives (amPEIs) were synthesized and used to encapsulate dozens of quantum dots (QDs). The QD-amPEI composite was ∼100 nm in hydrodynamic diameter and had the slightly positive outer surface that suited well for cellular internalization. The QD-amPEI showed very efficient QD cellular labeling with the labeled cell fluorescence intensity more than 10 times higher than conventional techniques such as Lipofectamine-assisted QD delivery. QD-amPEI was optimal for ma

Materials ChemistryMaterials Science
6
Review|65 citations·2016
Radiation-induced immune responses: mechanisms and therapeutic perspectives
Hoibin Jeong, Seoyeon Bok, Beom-Ju Hong, Hyung-Seok Choi, G‐One Ahn
SJR Q2Blood ResearchOA

Recent advancement in the radiotherapy technology has allowed conformal delivery of high doses of ionizing radiation precisely to the tumors while sparing large volume of the normal tissues, which have led to better clinical responses. Despite this technological advancement many advanced tumors often recur and they do so within the previously irradiated regions. How could tumors recur after receiving such high ablative doses of radiation? In this review, we outlined how radiation can elicit anti

ImmunologyImmunology and Microbiology
7
Article|65 citations·2023
A multi-stem cell basis for craniosynostosis and calvarial mineralization
Seoyeon Bok, Alisha R. Yallowitz, Jun Sun, Jason McCormick, Michelle Cung, Lingling Hu, Sarfaraz Lalani, Zan Li, Branden Sosa, Tomas Baumgartner, P.M. Byrne, Tuo Zhang
SJR Q1NatureOA
GeneticsBiochemistry, Genetics and Molecular Biology
8
Review|60 citations·2016
Tumor hypoxia and reoxygenation: the yin and yang for radiotherapy
Beom-Ju Hong, Jeongwoo Kim, Hoibin Jeong, Seoyeon Bok, Young-Eun Kim, G‐One Ahn
SJR Q2Radiation Oncology JournalOA

Tumor hypoxia, a common feature occurring in nearly all human solid tumors is a major contributing factor for failures of anticancer therapies. Because ionizing radiation depends heavily on the presence of molecular oxygen to produce cytotoxic effect, the negative impact of tumor hypoxia had long been recognized. In this review, we will highlight some of the past attempts to overcome tumor hypoxia including hypoxic radiosensitizers and hypoxia-selective cytotoxin. Although they were (still are)

Cancer ResearchBiochemistry, Genetics and Molecular Biology
9
Article|59 citations·2017
Hypoxia-inducible factor-1α regulates microglial functions affecting neuronal survival in the acute phase of ischemic stroke in mice
Seoyeon Bok, Young-Eun Kim, Young Sik Woo, Soeun Kim, Suk‐Jo Kang, Yoontae Lee, Sang Ki Park, Irving L. Weissman, G‐One Ahn
SJR Q2OncotargetOA

Cells universally adapt to ischemic conditions by turning on a transcription factor hypoxia-inducible factor (HIF), in which its role is known to differ widely across many different types of cells. Given that microglia have been reported as an essential mediator of neuroinflammation in many brain diseases, we examined the role of HIF in microglia in the progression of an acute phase of ischemic stroke by challenging our novel strains of myeloid-specific <i>Hif-1α</i> or <i>Hif-2α</i> knockout (K

NeurologyNeuroscience
10
Article|38 citations·2018
Multiplexed In Vivo Imaging Using Size‐Controlled Quantum Dots in the Second Near‐Infrared Window
Sanghwa Jeong, Yebin Jung, Seoyeon Bok, Yeon‐Mi Ryu, Sumin Lee, Young‐Eun Kim, Jaejung Song, Mi‐Yeon Kim, Sang‐Yeob Kim, G‐One Ahn, Sungjee Kim
SJR Q1Advanced Healthcare Materials

PbS/CdS core/shell quantum dots (QDs) that emit at the second near-infrared (NIR-II, 1000-1700 nm) window are synthesized. The PbS seed size and CdS shell thicknesses are carefully controlled to produce bright and narrow fluorescence that are suitable for multiplexing. A polymer encapsulation yields polymer-encapsulated NIR-II QDs (PQDs), which provides the QDs with long-term fluorescence stability over a week in biological media. Exploiting the simple bioconjugation capability of PQDs, folic ac

Materials ChemistryMaterials Science
11
Article|32 citations·2016
Real-time Tumor Oxygenation Changes After Single High-dose Radiation Therapy in Orthotopic and Subcutaneous Lung Cancer in Mice: Clinical Implication for Stereotactic Ablative Radiation Therapy Schedule Optimization
Changhoon Song, Beom-Ju Hong, Seoyeon Bok, Chan-Ju Lee, Young-Eun Kim, Sang-Rok Jeon, Hong‐Gyun Wu, Yun‐Sang Lee, Gi Jeong Cheon, Jin Chul Paeng, David J. Carlson, Hak Jae Kim
SJR Q1International Journal of Radiation Oncology*Biology*Physics
Cancer ResearchBiochemistry, Genetics and Molecular Biology
12
Article|31 citations·2022
The Extracellular Signal-Regulated Kinase Mitogen-Activated Protein Kinase Pathway in Osteoblasts
Matthew B. Greenblatt, Jae‐Hyuck Shim, Seoyeon Bok, Jung‐Min Kim
SJR Q2Journal of Bone MetabolismOA

Extracellular signal-regulated kinases (ERKs) are evolutionarily ancient signal transducers of the mitogen-activated protein kinase (MAPK) family that have long been linked to the regulation of osteoblast differentiation and bone formation. Here, we review the physiological functions, biochemistry, upstream activators, and downstream substrates of the ERK pathway. ERK is activated in skeletal progenitors and regulates osteoblast differentiation and skeletal mineralization, with ERK serving as a

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|31 citations·2021
SLITRK5 is a negative regulator of hedgehog signaling in osteoblasts
Jun Sun, Dong Yeon Shin, Mark Eiseman, Alisha R. Yallowitz, Na Li, Sarfaraz Lalani, Zan Li, Michelle Cung, Seoyeon Bok, Shawon Debnath, Sofia Jenia Marquez, Tommy E. White
SJR Q1Nature CommunicationsOA

Hedgehog signaling is essential for bone formation, including functioning as a means for the growth plate to drive skeletal mineralization. However, the mechanisms regulating hedgehog signaling specifically in bone-forming osteoblasts are largely unknown. Here, we identified SLIT and NTRK-like protein-5(Slitrk5), a transmembrane protein with few identified functions, as a negative regulator of hedgehog signaling in osteoblasts. Slitrk5 is selectively expressed in osteoblasts and loss of Slitrk5

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|27 citations·2016
Moxifloxacin: Clinically compatible contrast agent for multiphoton imaging
Taejun Wang, Won Hyuk Jang, Seung‐Hun Lee, Calvin J. Yoon, Jun Ho Lee, Bumju Kim, Sekyu Hwang, Chun‐Pyo Hong, Yeoreum Yoon, Gilgu Lee, Viet‐Hoan Le, Seoyeon Bok
SJR Q1Scientific ReportsOA

Multiphoton microscopy (MPM) is a nonlinear fluorescence microscopic technique widely used for cellular imaging of thick tissues and live animals in biological studies. However, MPM application to human tissues is limited by weak endogenous fluorescence in tissue and cytotoxicity of exogenous probes. Herein, we describe the applications of moxifloxacin, an FDA-approved antibiotic, as a cell-labeling agent for MPM. Moxifloxacin has bright intrinsic multiphoton fluorescence, good tissue penetratio

BiophysicsBiochemistry, Genetics and Molecular Biology
15
Article|16 citations·2020
MEKK2 mediates aberrant ERK activation in neurofibromatosis type I
Seoyeon Bok, Dong Yeon Shin, Alisha R. Yallowitz, Mark Eiseman, Michelle Cung, Ren Xu, Na Li, Jun Sun, Alfred L. Williams, J. E. Scott, Bing Su, Jae‐Hyuck Shim
SJR Q1Nature CommunicationsOA

Abstract Neurofibromatosis type I (NF1) is characterized by prominent skeletal manifestations caused by NF1 loss. While inhibitors of the ERK activating kinases MEK1/2 are promising as a means to treat NF1, the broad blockade of the ERK pathway produced by this strategy is potentially associated with therapy limiting toxicities. Here, we have sought targets offering a more narrow inhibition of ERK activation downstream of NF1 loss in the skeleton, finding that MEKK2 is a novel component of a non

NeurologyMedicine

Research Areas

GeneticsCancer ResearchMolecular BiologyRadiology, Nuclear Medicine and ImagingPhysiologyPulmonary and Respiratory Medicine

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