首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Chang Kyung Kang's research lab specializes in infectious diseases, with a focus on viral pathogenesis, host immune responses, and infection control in healthcare settings. The lab investigates the immunological mechanisms underlying severe outcomes in viral infections such as MERS-CoV and SARS-CoV-2, particularly the dysregulated T-cell responses and persistent immune activation. It also explores host-directed therapies and vaccine responses, especially in vulnerable populations like cancer patients receiving immunotherapy. The lab emphasizes translational research, bridging in vitro findings with clinical outcomes to inform public health strategies and infection management.
Professor Ki Jun Jeong's research lab specializes in synthetic biology and metabolic engineering of industrial microorganisms, with a primary focus on *Corynebacterium glutamicum* and *Escherichia coli*. The lab develops advanced genetic tools—such as synthetic promoters and signal peptides—to enhance microbial cell factories for the efficient production of high-value chemicals, amino acids, and recombinant proteins. Key research directions include cofactor-free photo-biocatalysis using engineered P450 systems, metabolic pathway optimization for sustainable chemical production (e.g., ectoine and cinnamaldehyde), and high-density protein secretion for industrial bioproduction. The lab integrates synthetic biology, systems metabolic engineering, and bioprocess optimization to design robust microbial platforms for biotechnology applications.
Professor Solmoi Park's research lab specializes in sustainable construction materials, with a focus on alkali-activated materials (AAMs) such as slag and fly ash cements. The lab investigates the durability and environmental interactions of these materials, particularly their resistance to carbonation under elevated CO₂ conditions. Using advanced analytical techniques like solid-state NMR spectroscopy, the lab explores the molecular-level evolution of aluminosilicate gels during carbonation, aiming to enhance the long-term performance and sustainability of AAMs. The research also examines the role of key oxides like MgO in mitigating carbonation rates, contributing to the development of low-carbon, durable construction solutions.
Professor Donghyun Lee's research lab specializes in developing advanced biomedical imaging technologies and enzyme-catalyzed synthetic methods for medical diagnostics and therapeutic applications. The lab focuses on innovative hybrid imaging techniques such as photoacoustic imaging, X-ray acoustic computed tomography (XACT), and multimodal optical coherence tomography (OCT) combined with surgical microscopes to enable deep-tissue, non-invasive visualization of anatomical and functional features in diseases like liver disorders and dental implant assessment. Additionally, the lab pioneers biocatalytic strategies using lipases and metal complexes to achieve high enantioselectivity in organic synthesis, particularly for pharmaceutical intermediates.
Professor Hyoungsuk Yoo's research lab specializes in the design and development of advanced wearable and implantable antennas with a focus on mechanical reliability, miniaturization, and electromagnetic performance. The lab explores innovative serpentine and mesh-based antenna structures that integrate mechanical stretchability with high radio frequency efficiency, targeting applications in biomedical sensing and wireless health monitoring. Key research directions include material selection, computational modeling, and system-level integration for next-generation flexible and implantable radio-frequency devices. The lab combines experimental validation with simulation-driven design to establish practical design guidelines for real-world deployment.
Professor Seung-Yong Seong's research lab specializes in host-pathogen interactions, with a focus on innate immunity, microbial pathogenesis, and vaccine development. The lab investigates host immune responses to bacterial infections such as scrub typhus and pneumococcal disease, emphasizing the identification and characterization of protective antigens and host-modulating molecules like bile acids. Utilizing systems biology approaches including proteogenomics and protein microarray technology, the lab aims to uncover novel therapeutic and diagnostic targets for infectious diseases.
Professor Young Ho Jeon's research lab specializes in structural and molecular biology, focusing on the mechanisms of protein-ligand and protein-nucleic acid interactions in both prokaryotes and eukaryotes. The lab investigates key biological processes such as bacterial cell envelope integrity, transcription regulation, extracellular matrix degradation, and ribosome biogenesis, using a combination of X-ray crystallography, NMR spectroscopy, and functional genomics. Major research directions include the structural basis of peptidoglycan recognition by outer membrane proteins, the role of transcription factors in gene regulation, and the function of nucleolar proteins in development and stem cell regulation. The lab also explores enzymatic mechanisms of glycosyltransferases and phosphatases with implications for disease and therapeutic targeting.
Professor Yohan Lee's research lab specializes in biomedical engineering and power electronics, with a focus on innovative surgical techniques and advanced electrical drive systems. The lab investigates clinical applications such as microvascular flap surgery for soft tissue reconstruction and nuclear imaging for diagnosing joint injuries. In parallel, the lab develops cutting-edge pulse width modulation (PWM) strategies for high-power, multi-level inverters used in industrial motor drives, emphasizing harmonic reduction and DC-link voltage balancing. These interdisciplinary efforts reflect a strong commitment to improving both medical outcomes and electrical system efficiency.
Professor Young Uh's research lab specializes in clinical microbiology and antimicrobial resistance, with a focus on the molecular epidemiology and antibiotic resistance mechanisms of Gram-positive bacteria, particularly *Streptococcus agalactiae* (group B streptococcus), *Aerococcus viridans*, and other viridans group streptococci. The lab investigates serotype distribution, resistance gene detection (such as *ermB*, *mefA*, and *ermTR*), and phenotypic resistance patterns, especially to macrolides and beta-lactams, in clinical isolates from Korean populations. Their work contributes critical insights into the emergence of multidrug-resistant pathogens in both pediatric and adult infections.
Professor Pilsung Kang's research lab specializes in cybersecurity, with a focus on insider threat detection, user behavior analytics, and anomaly detection in enterprise systems. The lab develops advanced behavioral modeling and machine learning techniques to identify malicious activities by authorized users that traditional rule-based systems often miss. Their work emphasizes real-world applicability through analysis of user log data and adaptive detection algorithms. The lab also explores privacy-preserving methods to balance security and user confidentiality.
Professor Alam Zeb's research lab specializes in advanced drug delivery systems, with a primary focus on nanotechnology-based formulations to enhance the solubility, stability, and bioavailability of poorly water-soluble and biopharmaceutical drugs. The lab develops innovative lipid-based and nanocrystalline delivery systems—such as solid lipid nanoparticles and nanocrystals—to enable controlled release and targeted delivery, particularly for neuroprotective and anti-rheumatic therapies. Their work also explores biomarkers like NLR and PLR in chronic inflammatory conditions, integrating pharmaceutical science with clinical translational research. The lab emphasizes both in vitro and in vivo evaluation of novel formulations to support therapeutic efficacy and safety.
Professor Yoon Ho Lee's research lab specializes in the design, fabrication, and application of advanced functional nanomaterials for next-generation optoelectronic and energy conversion devices. The lab focuses on developing flexible and high-performance sensors, thin-film solid oxide fuel cells, perovskite-based photodetectors, and chiral plasmonic nanostructures through innovative nanofabrication techniques such as sputtering, block-copolymer lithography, and mechanical force-induced patterning. Key research directions include enhancing device efficiency via nanostructure engineering, band structure modulation, and scalable thin-film processing for real-world applications in health monitoring and renewable energy.
Professor Jonghun Yoon's research lab specializes in advanced optical materials and smart manufacturing technologies. The lab focuses on the optical and luminescent properties of rare-earth-doped glasses, particularly for applications in fiber optics, solid-state lasers, and optical amplifiers. Additionally, the lab develops innovative real-time monitoring and predictive modeling techniques for industrial processes, such as weld pool analysis and springback prediction in precision-formed tubular components. These interdisciplinary efforts bridge materials science, photonics, and advanced manufacturing.
Professor Jonghun Yoon's research lab specializes in radiation shielding materials, with a primary focus on developing and evaluating novel glass systems—particularly borate-bismuthate and metal oxide-based glasses—for effective protection against ionizing radiation, including gamma rays and neutrons. The lab employs advanced computational methods such as MCNPX, Geant4, FLUKA, and Phy-X/PSD to simulate and validate radiation attenuation properties, emphasizing parameters like mass attenuation coefficient, half-value layer (HVL), mean free path (MFP), and effective atomic number (Zeff). Their work also extends to aluminum matrix composites (AMMCs) for structural applications in high-performance industries, combining materials science with radiation safety. The lab’s interdisciplinary approach bridges nuclear engineering, materials science, and medical imaging, with applications in nuclear facilities, medical diagnostics, and radiation therapy.
Professor Ali Bahadur's research lab specializes in the design and synthesis of advanced nanomaterials for environmental remediation and biomedical applications. Key research directions include the development of visible-light-responsive photocatalysts based on doped metal oxide and carbon nitride heterostructures for dye degradation and water splitting, as well as the engineering of multifunctional nanocarriers for combined cancer therapy through chemotherapy and hyperthermia. The lab also explores sustainable polymer-based coatings and ionomer-modified polyurethanes for enhanced durability and chemical resistance. These efforts are underpinned by a strong focus on materials synthesis, structural characterization, and performance optimization under real-world conditions.
Professor Jong-Hun Kim's research lab focuses on advanced materials science and environmental health, with a strong emphasis on graphene-based nanomaterials and their defect engineering for electronic applications. The lab also conducts impactful research in public health, particularly on viral transmission risks among high-risk populations and the health impacts of air pollution. Additionally, the lab develops innovative, personalized health care solutions, including customized diet recommendations for chronic disease management and novel in-situ methods for measuring building energy efficiency. These interdisciplinary efforts bridge materials science, environmental science, and healthcare innovation.
Professor Jae Seung Kang's research lab focuses on the multifaceted roles of vitamin C (sodium ascorbate) and natural compounds like red ginseng in modulating immune responses, cancer progression, and neurodegenerative diseases. The lab investigates the mechanisms by which these compounds influence immune cell activation, tumor cell apoptosis, iron metabolism in melanoma, and inhibition of key enzymes such as BACE1 involved in Alzheimer’s disease. A central theme is the context-dependent biological effects of vitamin C, particularly its dual role in promoting cell death in cancer cells while protecting against inflammation-induced organ damage. The lab also explores the regulation of angiogenesis through VEGF modulation, highlighting the therapeutic potential of micronutrients in chronic disease prevention and treatment.
Professor Jae Seung Kang's research lab specializes in translational oncology and gastrointestinal cancer research, with a focus on understanding the molecular mechanisms of cancer metastasis, immune evasion, and prognostic biomarkers in gastric and pancreatic cancers. The lab investigates key regulatory molecules such as IL-18, CD70, CD44, and VEGF in tumor microenvironment interactions and evaluates clinical staging systems and diagnostic criteria—particularly for intraductal papillary mucinous neoplasm (IPMN) and ductal bile duct (DBD) cancer—aiming to improve diagnostic accuracy and treatment planning. The lab also contributes to fusion energy research through advanced plasma modeling for the K-DEMO reactor, emphasizing steady-state operation and performance optimization.
Professor Dongho Won's research lab specializes in cybersecurity and privacy-preserving protocols, with a primary focus on designing secure and efficient authentication schemes for resource-constrained environments such as wireless sensor networks (WSNs) and the Internet of Medical Things (IoMT). The lab investigates advanced cryptographic techniques to address critical vulnerabilities like offline password guessing attacks, impersonation, and smart card compromise, particularly in medical and multi-server environments. Their work emphasizes practical security solutions that balance robustness, efficiency, and resilience against emerging cyber threats in e-health and IoT systems.
Professor Jae-Seok Roe's research lab focuses on the molecular mechanisms underlying cancer pathogenesis, with a central emphasis on the roles of tumor suppressor proteins, chromatin regulators, and epigenetic modifiers in tumorigenesis. The lab investigates how mutations in genes such as VHL, KRAS, and transcription factors like C/EBPα and p53 contribute to cancer initiation and progression, particularly in renal cell carcinoma and acute myeloid leukemia. A key direction involves understanding the context-specific sensitivity of cancer cells to epigenetic therapies, including inhibitors targeting histone demethylases and BET proteins. The lab also explores the functional interplay between DNA damage response pathways and tumor suppressor networks, aiming to identify novel therapeutic vulnerabilities in cancer.