1.Prospective Evaluation of Irreversible Electroporation With Clustered Electrodes as a Novel Palliative Approach for Locally Advanced Pancreatic Cancer
Joon Ho KWON ; Man-Deuk KIM ; Maher Salamah ALANAZI ; Jiwon SUK ; Seung JEONG ; Seungmin BANG ; Moon Jae CHUNG ; Ho Kyoung HWANG ; Seung Soo HONG ; Kichang HAN ; Gyoung Min KIM ; Jong Yun WON ; Juil PARK ; Jaesung CHO ; Seok Min JEONG ; Tae Yang CHOI
Korean Journal of Radiology 2026;27(2):152-160
Objective:
This study aimed to evaluate the feasibility, safety, and oncologic outcomes of irreversible electroporation (IRE) using a clustered electrode in patients with locally advanced pancreatic cancer (LAPC).
Materials and Methods:
In this single-center prospective cohort study, 13 patients with LAPC (median age, 60 years; range, 48–78 years) underwent clustered electrode IRE between September 2022 and September 2024. Patient characteristics, procedural details, and clinical outcomes were recorded. Endpoints included technical success, procedure-related complications, overall survival (OS), and progression-free survival (PFS).
Results:
Tumors were located in the pancreatic head in four patients (30.8%) and in the body/tail in nine (69.2%). The median tumor size was 2.4 cm (1.5–4.0 cm), and vascular invasion was present in all patients. Technical success was achieved in all patients. Intraoperative IRE was performed in 11 (84.6%) patients, and 2 (15.4%) patients underwent percutaneous IRE. Gastrointestinal bleeding events as major complications occurred in two patients (15.4%) and, both were successfully controlled by embolization. No 60-day mortality was observed. At a median follow-up of 24.5 months (range, 9.9–33.4 months) after IRE, median OS and PFS from IRE were 20.1 and 14.5 months, respectively.
Conclusion
IRE using clustered electrodes for LAPC appears to be a feasible therapeutic approach, offering reliable technical success and acceptable safety. Survival outcomes are encouraging; however, larger, controlled studies are required.
2.Ferroptosis-Driven Senescence Loop as a Central Amplifier of Osteoarthritis Progression
Rajib HOSSAIN ; Hyun Jae LEE ; Md. Solayman HOSSAIN ; Jiwon JEONG ; Choong Jae LEE ; Sun-Chul HWANG
Biomolecules & Therapeutics 2026;34(3):506-518
Osteoarthritis (OA) is a prevalent, chronic joint disorder characterized by cartilage degradation, synovial inflammation, and extracellular matrix (ECM) remodeling, yet disease-modifying therapies remain elusive. Emerging evidence implicates ferroptosis, an iron-dependent form of regulated cell death driven by lipid peroxidation, and cellular senescence, characterized by growth arrest and a senescence-associated secretory phenotype (SASP), as central contributors to OA pathogenesis. Ferroptotic chondrocytes release reactive lipid species and damage-associated molecular patterns (DAMPs) that induce paracrine senescence in neighboring cells, while senescent cells amplify oxidative stress and ferroptotic susceptibility, forming a self-perpetuating feed-forward loop that accelerates tissue degeneration. Histological, molecular, and in vivo studies demonstrate iron accumulation, lipid peroxidation, glutathione peroxidase 4 (GPX4) depletion, and SASP factor secretion in human OA cartilage, synovium, and animal models, linking these processes to ECM breakdown and joint inflammation. Targeted interventions, alone or in combination, can disrupt this pathological loop, preserve chondrocyte viability, reduce SASP-mediated inflammation, and mitigate cartilage damage. Integration of biomarker-guided patient stratification, advanced imaging, and spatial transcriptomic profiling may enable precision-targeted, disease-modifying therapies. Therefore, elucidating the crosstalk between ferroptosis and senescence offers a conceptual and translational framework for shifting OA management from symptomatic relief toward preservation of joint integrity and long-term disease modification.
3.In Silico Prediction of EZHIP Post-Translational ModificationSites and Small-Molecule High-Throughput Screening for Quantitative EZHIP Modulation
Jimin MOON ; Jiwon HWANG ; Chan CHUNG
Brain Tumor Research and Treatment 2026;14(2):91-101
Background:
Posterior fossa group A (PFA) ependymoma is a lethal pediatric brain tumor drivenpredominantly by epigenetic dysregulation. Enhancer of Zeste Homologs Inhibitory Protein (EZHIP) is a defining oncogenic factor in PFA ependymoma that inhibits PRC2 activity, inducing a global loss of H3K27me3 and sustaining aberrant developmental transcriptional programs. Although the metabolic modulator, metformin, reduces EZHIP protein levels, the mechanisms governing EZHIP regulation remain undefined.
Methods:
We generated a stable HEK293T reporter cell expressing HA- and RFP-taggedEZHIP together with a GFP viability control, enabling quantitative and viability-normalized assessment of EZHIP abundance. In silico post-translational modification prediction was performed using PhosphoSitePlus and NetPhos 3.1 to identify candidate regulatory residues and upstream kinases. A focused panel of pathway targeting compounds was evaluated using fluorescence-based high-throughput screening, followed by secondary validation including cell counting, LC 50 (half-maximal lethal concentration) analysis, and Western blotting.
Results:
Computational analyses identified multiple high-confidence serine phosphorylationsites on EZHIP and implicated AMPK, MAPK, PKC, AKT, and CK2 signaling pathways. High-throughput screening revealed that activation of the AMPK axis robustly suppressed EZHIP protein levels.Secondary validation demonstrated that biguanides activating AMPK reduced EZHIP abundance independently of cytotoxicity and restored global H3K27me3 levels. In contrast, PKC activation increased EZHIP protein abundance.
Conclusion
Our study identifies EZHIP as a dynamically regulated oncoprotein controlled by post-translational signaling pathways. AMPK and PKC exert opposing effects on EZHIP stability, defining actionable regulatory mechanisms for therapeutic targeting in EZHIP-driven cancers.
4.Chrysanthemum zawadskii Flower Extract Rescues Inflammatory Cognitive Impairment
Yeongwoo CHOI ; Jisun HWANG ; Bohee JANG ; Jiwon PARK ; Inn-Oc HAN ; Eok-Soo OH
Experimental Neurobiology 2026;35(1):29-41
Chrysanthemum zawadskii flower ethanol extract (CZ-F) was evaluated for its neuroprotective potential against inflammation-associated cognitive impairment. To assess its anti-inflammatory properties, we first conducted in vitro studies using LPS-stimulated BV2 microglial cells. CZ-F demonstrated strong antioxidant activity with IC₅₀ values of 186.04 µg/ml (DPPH) and 94.56 µg/ml (ABTS), suppressed the production of reactive oxygen species and nitric oxide, and downregulated the expression of iNOS and IL-1β, likely via inhibiting the NF-κB signaling pathway. CZ-F also decreased inflammation-induced acetylcholinesterase (AChE) expression and directly inhibited AChE activity. Among the constituents of CZF, quercetin and luteolin exhibited the strongest anti-inflammatory and antioxidant effects, while linarin most potently inhibited AChE activity. In an in vivo zebrafish model, CZ-F treatment ameliorated learning and memory impairments induced by sleep deprivation. These findings suggest that CZ-F can attenuate neuroinflammation and modulate cholinergic dysfunction, providing a potential therapeutic approach for inflammationrelated cognitive deficits.
5.Higher Microbial Abundance and Diversity in Bronchus-Associated Lymphoid Tissue Lymphomas Than in Non-cancerous Lung Tissues
Jung Heon KIM ; Jae Sik KIM ; Noorie CHOI ; Jiwon KOH ; Yoon Kyung JEON ; Ji Hyun CHANG ; Eung Soo HWANG ; Il Han KIM
Cancer Research and Treatment 2025;57(2):580-589
Purpose:
It is well known that the majority of the extranodal marginal zone lymphomas of mucosa-associated lymphoid tissues (MALT lymphomas) are associated with microbiota, e.g., gastric MALT lymphoma with Helicobacter pylori. In general, they are very sensitive to low-dose radiotherapy and chemotherapeutic agents. The microbiota profile is not clearly elucidated in bronchus-associated lymphoid tissue (BALT) lymphoma, a rare type of MALT lymphoma in the lung. Thus, this study aimed to clarify the intratumor microbiome in BALT lymphoma using the third-generation next-generation sequencing (NGS) method.
Materials and Methods:
DNAs were extracted from 12 formalin-fixed paraffin-embedded (FFPE) tumor tissues obtained from BALT lymphoma patients diagnosed between 1990 and 2016. 16S rRNA gene was amplified by polymerase chain reaction. Amplicons were sequenced using a Nanopore platform. Next-generation sequencing analysis was performed to assess microbial profiles. For comparison, FFPE specimens from nine non-cancerous lung tissues were also analyzed.
Results:
Specific bacterial families including Burkholderiaceae, Bacillaceae, and Microbacteriaceae were associated with BALT lymphoma by a linear discriminant analysis effect size approach. Although the number of specimens was limited, BALT lymphomas exhibited significantly higher microbial abundance and diversity with distinct microbial composition patterns and correlation networks than non-cancerous lung tissues.
Conclusion
This study provides the first insight into intratumor microbiome in BALT lymphoma using the third-generation NGS method. A distinct microbial composition suggests the presence of a unique tumor microenvironment of BALT lymphoma.
6.Higher Microbial Abundance and Diversity in Bronchus-Associated Lymphoid Tissue Lymphomas Than in Non-cancerous Lung Tissues
Jung Heon KIM ; Jae Sik KIM ; Noorie CHOI ; Jiwon KOH ; Yoon Kyung JEON ; Ji Hyun CHANG ; Eung Soo HWANG ; Il Han KIM
Cancer Research and Treatment 2025;57(2):580-589
Purpose:
It is well known that the majority of the extranodal marginal zone lymphomas of mucosa-associated lymphoid tissues (MALT lymphomas) are associated with microbiota, e.g., gastric MALT lymphoma with Helicobacter pylori. In general, they are very sensitive to low-dose radiotherapy and chemotherapeutic agents. The microbiota profile is not clearly elucidated in bronchus-associated lymphoid tissue (BALT) lymphoma, a rare type of MALT lymphoma in the lung. Thus, this study aimed to clarify the intratumor microbiome in BALT lymphoma using the third-generation next-generation sequencing (NGS) method.
Materials and Methods:
DNAs were extracted from 12 formalin-fixed paraffin-embedded (FFPE) tumor tissues obtained from BALT lymphoma patients diagnosed between 1990 and 2016. 16S rRNA gene was amplified by polymerase chain reaction. Amplicons were sequenced using a Nanopore platform. Next-generation sequencing analysis was performed to assess microbial profiles. For comparison, FFPE specimens from nine non-cancerous lung tissues were also analyzed.
Results:
Specific bacterial families including Burkholderiaceae, Bacillaceae, and Microbacteriaceae were associated with BALT lymphoma by a linear discriminant analysis effect size approach. Although the number of specimens was limited, BALT lymphomas exhibited significantly higher microbial abundance and diversity with distinct microbial composition patterns and correlation networks than non-cancerous lung tissues.
Conclusion
This study provides the first insight into intratumor microbiome in BALT lymphoma using the third-generation NGS method. A distinct microbial composition suggests the presence of a unique tumor microenvironment of BALT lymphoma.
7.Higher Microbial Abundance and Diversity in Bronchus-Associated Lymphoid Tissue Lymphomas Than in Non-cancerous Lung Tissues
Jung Heon KIM ; Jae Sik KIM ; Noorie CHOI ; Jiwon KOH ; Yoon Kyung JEON ; Ji Hyun CHANG ; Eung Soo HWANG ; Il Han KIM
Cancer Research and Treatment 2025;57(2):580-589
Purpose:
It is well known that the majority of the extranodal marginal zone lymphomas of mucosa-associated lymphoid tissues (MALT lymphomas) are associated with microbiota, e.g., gastric MALT lymphoma with Helicobacter pylori. In general, they are very sensitive to low-dose radiotherapy and chemotherapeutic agents. The microbiota profile is not clearly elucidated in bronchus-associated lymphoid tissue (BALT) lymphoma, a rare type of MALT lymphoma in the lung. Thus, this study aimed to clarify the intratumor microbiome in BALT lymphoma using the third-generation next-generation sequencing (NGS) method.
Materials and Methods:
DNAs were extracted from 12 formalin-fixed paraffin-embedded (FFPE) tumor tissues obtained from BALT lymphoma patients diagnosed between 1990 and 2016. 16S rRNA gene was amplified by polymerase chain reaction. Amplicons were sequenced using a Nanopore platform. Next-generation sequencing analysis was performed to assess microbial profiles. For comparison, FFPE specimens from nine non-cancerous lung tissues were also analyzed.
Results:
Specific bacterial families including Burkholderiaceae, Bacillaceae, and Microbacteriaceae were associated with BALT lymphoma by a linear discriminant analysis effect size approach. Although the number of specimens was limited, BALT lymphomas exhibited significantly higher microbial abundance and diversity with distinct microbial composition patterns and correlation networks than non-cancerous lung tissues.
Conclusion
This study provides the first insight into intratumor microbiome in BALT lymphoma using the third-generation NGS method. A distinct microbial composition suggests the presence of a unique tumor microenvironment of BALT lymphoma.
8.Recurrent Submandibular Mass and Bilateral Periorbital Edema in IgG4-Related Disease: A Case Report
Jiwon HWANG ; Yeon-Ah LEE ; Seung-Jae HONG
Korean Journal of Medicine 2024;99(6):296-302
Immunoglobulin G4-related disease (IgG4-RD) is an immune-mediated systemic disorder characterized by inflammatory, proliferative, and fibrotic lesions that can affect any body organ. The severity and extent of organ involvement vary significantly among individuals. Diagnosis of IgG4-RD necessitates a comprehensive assessment, including clinical presentation, radiological findings, laboratory tests, and histopathological examination. The 2019 American College of Rheumatology/European League Against Rheumatism classification criteria offer a valuable framework for diagnosing IgG4-RD. Although glucocorticoids and rituximab are the primary treatment options, the optimal long-term management strategy for IgG4-RD remains undetermined.
9.Clinical Manifestations and Adverse Cardiovascular Events in Patients with Cardiovascular Symptoms after mRNA Coronavirus Disease 2019 Vaccines
William D. KIM ; Min Jae CHA ; Subin KIM ; Dong-Gil KIM ; Jae-Jin KWAK ; Sung Woo CHO ; Joon Hyung DOH ; Sung Uk KWON ; June NAMGUNG ; Sung Yun LEE ; Jiwon SEO ; Geu-ru HONG ; Ji-won HWANG ; Iksung CHO
Yonsei Medical Journal 2024;65(11):629-635
Purpose:
The number of patients presenting with vaccination-related cardiovascular symptoms after receiving mRNA vaccines (mRNA-VRCS) is increasing. We investigated the incidence of vaccine-related adverse events (VAEs), including myocarditis and pericarditis, in patients with mRNA-VRCS after receiving BNT162b2-Pfizer-BioNTech and mRNA-1273-Moderna vaccines.
Materials and Methods:
We retrospectively collected data on patients presenting with mRNA-VRCS who visited the outpatient clinic of two tertiary medical centers. Clinical characteristics, laboratory findings, echocardiographic findings, and electrocardiographic findings were evaluated. VAE was defined as myocarditis or pericarditis in patients after mRNA vaccination. Clinical outcomes during short-term follow-up, including emergency room (ER) visit, hospitalization, or death, were also assessed among the patients.
Results:
A total of 952 patients presenting with mRNA-VRCS were included in this study, with 89.7% receiving Pfizer-BioNTech and 10.3% receiving Moderna vaccines. The mean duration from vaccination to symptom was 5.6±7.5 days. VAEs, including acute myocarditis and acute pericarditis, were confirmed in 11 (1.2%) and 10 (1.1%) patients, respectively. The VAE group showed higher rates of dyspnea, echocardiography changes, and ST-T segment changes. During the short-term follow-up period of 3 months, the VAE group showed a higher hospitalization rate compared to the control group; there was no significant difference in ER visit (p=0.320) or mortality rates (p>0.999).
Conclusion
Amongst the patients who experienced mRNA-VRCS, the total incidence of VAEs, including acute myocarditis and pericarditis, was 2.2%. Patients with VAEs showed higher rates of dyspnea, echocardiographic changes, and ST-T segment changes compared to those without VAEs. With or without the cardiovascular events, the prognosis in patients with mRNA-VRCS was favorable.
10.Recurrent Submandibular Mass and Bilateral Periorbital Edema in IgG4-Related Disease: A Case Report
Jiwon HWANG ; Yeon-Ah LEE ; Seung-Jae HONG
Korean Journal of Medicine 2024;99(6):296-302
Immunoglobulin G4-related disease (IgG4-RD) is an immune-mediated systemic disorder characterized by inflammatory, proliferative, and fibrotic lesions that can affect any body organ. The severity and extent of organ involvement vary significantly among individuals. Diagnosis of IgG4-RD necessitates a comprehensive assessment, including clinical presentation, radiological findings, laboratory tests, and histopathological examination. The 2019 American College of Rheumatology/European League Against Rheumatism classification criteria offer a valuable framework for diagnosing IgG4-RD. Although glucocorticoids and rituximab are the primary treatment options, the optimal long-term management strategy for IgG4-RD remains undetermined.

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