世界の主要大学の研究室を探索 — 研究分野と主要論文を一目で確認できます。
Professor Kyung-Soo Kim's research lab focuses on the pathophysiological roles of metabolic and inflammatory mediators in chronic diseases, particularly type 2 diabetes, obesity, and rheumatoid arthritis. The lab investigates bioactive compounds such as adiponectin, piperine, and taurine to understand their dual roles in metabolism and inflammation, with an emphasis on their therapeutic potential. Key research directions include the regulation of adipokines, matrix metalloproteinases, and pro-inflammatory cytokines in joint and metabolic tissues, as well as the development of novel therapeutic strategies targeting toll-like receptors and insulin resistance. The lab integrates in vitro cell culture models with in vivo animal studies to explore mechanisms underlying diabetic complications and autoimmune joint destruction.
Professor Jang-wook Sohn's research lab focuses on innate immunity and host-pathogen interactions, with a particular emphasis on nucleic acid-sensing toll-like receptors (TLRs) and their role in inflammatory and autoimmune diseases. The lab investigates novel therapeutic strategies, such as nucleic acid-binding polymers, to modulate aberrant TLR activation regardless of nucleic acid type. Additionally, the lab explores infectious disease outbreaks linked to medical procedures, including mycobacterial infections associated with acupuncture, and examines clinical predictors of treatment outcomes in antibiotic-resistant infections like MRSA bacteraemia. The research integrates translational immunology with clinical microbiology to develop biomarkers and interventions for infectious and immune-mediated conditions.
Professor Sok-hyeon Cho's research lab specializes in biomedical engineering and clinical health technology, focusing on non-invasive monitoring systems and the pathophysiology of chronic inflammatory diseases. The lab investigates the application of impulse-radio ultra-wideband (IR-UWB) radar for real-time, contactless measurement of cardiac and respiratory functions, aiming to improve diagnostic tools for conditions like atrial fibrillation and obstructive sleep apnea. Additionally, the lab explores the role of microbiota and extracellular vesicles in chronic rhinosinusitis and examines immune sensitization markers such as staphylococcal enterotoxin IgE in late-onset asthma among the elderly. The integration of advanced imaging, molecular diagnostics, and wearable sensing technologies defines the lab’s interdisciplinary approach to improving patient care and disease understanding.
Professor Jae Min Jeong's research lab focuses on interdisciplinary studies at the intersection of technology, media, and human behavior. Key research directions include consumer behavior in digital environments, particularly regarding social networking advertising, news consumption patterns, and e-book adoption. The lab also investigates technological innovations in mobile security and computer systems, such as machine learning-based malware detection and hybrid file systems for emerging non-volatile memory technologies. These efforts reflect a strong emphasis on understanding user perceptions and developing adaptive, efficient computing solutions in the context of rapid digital transformation.
Professor Hye-young Jeon's research lab specializes in atmospheric dynamics, with a primary focus on gravity wave processes and their impacts on large-scale circulation, particularly in the context of tropical and equatorial meteorology. The lab investigates the generation, propagation, and dissipation of gravity waves—especially those forced by deep convection—and develops advanced parameterizations for use in global climate and weather models. Key research directions include momentum flux estimation, turbulence characterization using high-resolution radiosonde data, and improving the simulation of phenomena such as the quasi-biennial oscillation (QBO) through enhanced gravity wave drag schemes. The lab also explores wave breaking and secondary wave generation in the upper atmosphere using high-resolution numerical models.
Professor Hee-Jung Lee's research lab specializes in the design, synthesis, and functionalization of metal-organic frameworks (MOFs) and coordination polymers (CPs) for advanced materials applications. The lab focuses on controlling the morphology, porosity, and composition of MOFs and their derived materials—such as hollow porous carbons and magnetic porous carbons—through precise synthetic strategies like core-shell templating, solvothermal synthesis, and pyrolysis. Key research directions include the development of multifunctional hybrid nanostructures with tailored gas adsorption, catalytic, and pollutant removal properties.
Professor Suyeong Yoon's research lab specializes in hematopoiesis, myelofibrosis, and molecular diagnostics, with a focus on growth factors, cytokine signaling, and biomarker discovery in hematologic disorders. The lab investigates the cellular and molecular mechanisms underlying bone marrow fibrosis, myeloproliferative neoplasms, and autoimmune arthritis using immunohistochemistry, advanced immunoassays, and molecular virology techniques. Innovative diagnostic platforms, including SERS-based aptamer assays and in vivo probes for proteases, are developed to enable sensitive detection of disease-related proteins.
Professor Cheol Woong Choi's research lab specializes in cardiovascular physiology and clinical cardiology, with a strong focus on arterial stiffness, hemodynamic changes in aging, and the pathophysiology of coronary artery disease. The lab investigates key hemodynamic parameters such as pulse-wave velocity and central blood pressure, particularly in relation to aging and cardiovascular risk. It also explores the impact of medical therapies—like statins—on lipid subfractions and vascular function, as well as novel biomarkers such as mean platelet volume in coronary vasospasm. Additionally, the lab examines functional capacity and exercise tolerance using measures like handgrip strength and 6-minute walk tests in patients with coronary heart disease.
Professor Ye-Ji Lee's research lab specializes in molecular and translational immunology, with a focus on lipid nanoparticle (LNP)-mediated mRNA delivery systems and their immunomodulatory effects. The lab investigates the innate and adaptive immune responses triggered by LNPs, aiming to optimize mRNA therapeutics and vaccines for improved efficacy and safety. Additional research directions include the identification of novel anti-inflammatory and melanogenetic compounds, particularly psoralen derivatives, and the role of key signaling pathways such as STAT6 and PPARγ in macrophage polarization and inflammation resolution. The lab integrates computational genetics with in vitro and in vivo immunological models to advance precision therapeutics.
Professor Sowon Yoon's research lab specializes in the development of innovative transition-metal-catalyzed and metal-free C-H activation methodologies for the efficient synthesis of complex organic molecules, particularly nitrogen-containing heterocycles and natural product scaffolds. The lab focuses on designing mild, selective, and sustainable transformations using earth-abundant or low-toxicity catalysts and oxidants, emphasizing atom-economical and step-economical strategies. Key research directions include Pd- and Ru-catalyzed C-H functionalization, Au-catalyzed cyclizations, and radical-based C-H amination, with applications in total synthesis and drug discovery.
Professor Yoon Seok Oh's research lab specializes in condensed matter physics and functional oxide materials, focusing on quantum phenomena in low-dimensional and correlated electron systems. Key research directions include the discovery and control of unconventional electronic phases—such as charge density waves, hidden order, and spin-driven ferroelectricity—through chemical doping, strain engineering, and external fields. The lab employs advanced experimental techniques like high-resolution electron microscopy, transport measurements, and high-pressure spectroscopy to probe the interplay between electronic, structural, and magnetic degrees of freedom in complex oxides and chalcogenides.
Professor SiHyun Cho's research lab specializes in reproductive medicine and molecular pathology, with a primary focus on identifying novel biomarkers and molecular mechanisms underlying endometriosis. The lab employs advanced proteomic and molecular techniques to investigate dysregulated proteins, cytokines, and gene expression—particularly in urine, serum, and endometrial tissues—aiming to improve early diagnosis and therapeutic strategies. Key research directions include the role of inflammatory mediators (e.g., TNF-α, sFlt-1), angiogenic factors (e.g., VEGF), and signaling molecules (e.g., Cox-2, osteopontin) in disease progression. The lab also evaluates medical interventions, such as LNG-IUS and oral contraceptives, for preventing endometrioma recurrence after surgery.
Professor Il-young Jung's research lab specializes in endodontic microbiology, dental pulp biology, and regenerative endodontics, with a strong focus on the role of microbial pathogens in apical periodontitis and the biological mechanisms underlying pulp inflammation and repair. The lab investigates the molecular and cellular responses to dental infection, including the expression of pain-related ion channels (e.g., TRPV1) and neuronal activation markers (e.g., c-Fos), using both clinical and preclinical models. A key research direction involves developing and evaluating regenerative treatment strategies for necrotic, immature permanent teeth, particularly through revascularization and mineral trioxide aggregate (MTA)-based procedures.
Professor Kyung-Sik Yoon's research lab focuses on cellular and molecular mechanisms underlying inflammatory diseases, cancer, metabolic disorders, and neurodegenerative conditions. The lab investigates the therapeutic potential of natural compounds and signaling modulators—such as MitoQ, melatonin, baicalein, and paclitaxel—using advanced techniques like atomic force microscopy and molecular biology assays. Key research directions include mitochondrial function, endoplasmic reticulum stress, heat shock proteins, and glucose metabolism in disease contexts. The lab also explores extracellular matrix remodeling and metalloproteinases in vascular pathology, particularly in atherosclerosis.
Professor Chang Young Lee's research lab specializes in the development of advanced nanomaterial-based sensors and electronic systems, with a focus on carbon nanotubes, graphene, and liquid-metal composites. The lab explores novel signal transduction mechanisms in 1D and 2D nanomaterials, emphasizing stochastic resonance, reversible molecular adsorption, and high-resolution, stretchable 3D interconnections for soft and wearable electronics. Key research directions include ultrasensitive chemical and gas sensing, dynamic adsorption modeling, and the integration of nanomaterials into miniaturized, rapidly transducing sensor platforms for real-world applications such as environmental and chemical threat detection.
Professor June Young Choi's research lab specializes in advancing minimally invasive and robotic surgical techniques for thyroid diseases, with a strong focus on improving surgical precision, cosmetic outcomes, and patient safety. The lab pioneers innovations in robotic thyroidectomy—particularly the bilateral axillo-breast approach (BABA)—and integrates emerging technologies such as augmented reality (AR) and clinical decision support systems (CDSS) to enhance surgical navigation and treatment planning. Research also emphasizes long-term outcomes, surgical strategy evolution, and the application of artificial intelligence in clinical guideline integration for thyroid nodule management.
Professor Young Suk Seo's research lab specializes in clinical and counseling psychology, with a strong focus on understanding the psychological mechanisms underlying stress, trauma, and interpersonal functioning. The lab investigates complex psychological processes such as mediation and moderation effects in mental health outcomes, particularly examining attachment, perceived stress, post-traumatic stress, social anxiety, and perfectionism. Using advanced statistical methods like structural equation modeling and multilevel regression, the lab emphasizes empirical validation of psychological constructs and their real-world implications in university students and diverse adult populations.
Professor Sang Jeon Chung's research lab specializes in the design and development of smart nanomaterials and molecular probes for biomedical applications, with a focus on targeted drug delivery, theranostics, and environmental remediation. The lab pioneers stimuli-responsive polymeric nanoparticles for pH-activated cancer therapy, integrates imaging and therapeutic agents for real-time monitoring, and develops highly selective fluorescent and chromogenic probes for detecting biologically relevant molecules such as cysteine and protein tyrosine phosphatases. Additionally, the lab is dedicated to sustainable solutions for environmental toxins, particularly the efficient and recyclable catalytic reduction of toxic hexavalent chromium to less harmful trivalent chromium.
Professor Phill-Seung Lee's research lab specializes in advanced structural dynamics and fluid-structure interaction, with a focus on developing innovative reduction techniques for large-scale finite element models and analyzing floating offshore structures under dynamic loading. The lab conducts cutting-edge research in hydrodynamic analysis of flexible floating systems, particularly in the context of offshore renewable energy and ocean nuclear power plants (ONPPs), integrating advanced numerical methods such as component mode synthesis and boundary element methods. Their work emphasizes accuracy, computational efficiency, and practical applicability in marine and nuclear engineering applications.
Professor Jang-Won Park's research lab specializes in orthopedic surgery and joint replacement, with a strong focus on improving surgical outcomes through advanced technologies such as robotic assistance and computer navigation in total knee arthroplasty (TKA). The lab investigates long-term clinical and radiological outcomes, implant survivorship, and functional recovery in patients undergoing TKA, comparing techniques like robotic-assisted, computer-navigated, and conventional methods. Additionally, the lab explores biomaterials and catalytic systems, including cobalt–rhodium nanoparticle catalysts for sustainable chemical synthesis. The research integrates clinical trials with translational science to enhance implant longevity and patient-centered outcomes.