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 Chris Hyunchul Jo's research lab specializes in regenerative medicine and orthopedic tissue repair, with a primary focus on mesenchymal stem cells (MSCs) and platelet-rich plasma (PRP) for treating degenerative joint and tendon diseases. The lab investigates cell-based therapies, particularly autologous adipose-derived MSCs, for knee osteoarthritis through clinical trials, emphasizing safe and effective intra-articular delivery. Another key direction involves optimizing PRP application in arthroscopic rotator cuff repair to enhance structural healing, especially in large to massive tears, while evaluating both clinical and anatomical outcomes. The lab aims to bridge translational research with clinical practice to improve long-term joint and tendon function.
Professor Mona Choi's research lab focuses on improving health outcomes in chronic disease management and aging populations through innovative digital health interventions and public health nursing practices. The lab specializes in mobile health (mHealth) technologies, ecological momentary assessment (EMA) using mobile devices, and the integration of environmental health assessments into community nursing. A key emphasis is on enhancing self-management, quality of life, and social support for older adults and patients with chronic conditions such as peripheral artery disease.
Professor Hyun S. Ahn's research lab specializes in the design, synthesis, and in-depth electrochemical characterization of nanostructured materials for sustainable energy conversion and storage. The lab focuses on understanding the surface-specific reactivity and electronic structure of transition metal-based electrocatalysts—particularly nickel, iron, cobalt, and molybdenum compounds—for key reactions such as the oxygen evolution reaction (OER), hydrogen evolution reaction (HER), and water oxidation. Using advanced in situ and surface-selective techniques like surface interrogation scanning electrochemical microscopy (SI-SECM) and time-resolved redox titrations, the lab probes active sites and reaction mechanisms at the molecular level in liquid environments. Their work bridges fundamental electrocatalysis with practical applications in renewable energy technologies like solar fuels and green hydrogen production.
Professor Jun-Hyuk Lee's research lab specializes in epidemiological and translational studies focusing on the role of oxidative stress, insulin resistance, and lifestyle factors in the development of chronic diseases. The lab investigates biomarkers such as the Oxidative Balance Score (OBS) and insulin resistance indices (e.g., HOMA-IR, METS-IR) to understand their predictive value for hypertension, type 2 diabetes, chronic kidney disease, NAFLD, and cardiovascular diseases. A key research direction involves evaluating the preventive potential of diet and lifestyle interventions, including the impact of electroacupuncture on inflammatory pathways. The lab integrates population-based cohort data with preclinical models to bridge molecular mechanisms with public health outcomes.
Professor Sang Eun Lee's research lab focuses on skin biology and disease mechanisms, with a strong emphasis on epidermal barrier function, keratinocyte differentiation, and the role of proteases and their receptors (such as PAR-2) in inflammatory skin disorders like atopic dermatitis and acne. The lab also investigates natural compounds and stimuli-responsive nanotherapeutics for targeted drug delivery, particularly in inflammatory conditions, leveraging reactive oxygen species and pH as dual triggers for precise therapeutic release. Their work bridges molecular dermatology with translational nanomedicine.
Professor Sangmin Jeon's research lab specializes in the design and fabrication of advanced functional materials for energy, environmental, and biomedical applications. The lab focuses on laser-assisted synthesis of carbon-based nanomaterials, particularly conductive graphitic carbon on cellulose and nanocellulose substrates, for sustainable solar energy conversion and water purification. It also explores multifunctional nanofibrous membranes for air filtration and real-time respiratory monitoring, as well as magnetic nanoclusters for targeted cancer therapy via magnetic hyperthermia. The integration of materials science, nanofabrication, and device engineering defines the lab’s interdisciplinary approach.
Professor Soon-Wook Kwon's research lab specializes in the integration of advanced digital technologies and agricultural biotechnology to enhance construction efficiency and rice crop improvement. The lab focuses on applying Cyber-Physical Systems (CPS), Digital Twins, and Augmented Reality (AR) for smart construction and real-time monitoring of construction processes, while also advancing rice breeding through molecular genetics, genome-wide association studies, and functional genomics. Key research directions include the development of 3D modeling techniques using point cloud data, the application of AR in facility management, and the identification of genes regulating root architecture and starch biosynthesis in rice. The lab bridges digital innovation in civil engineering with biotechnological solutions in agriculture to support sustainable development.
Professor Yun Jung Heo's research lab specializes in the development of advanced biosensors and microfluidic systems for real-time, non-invasive, and point-of-care health monitoring. The lab focuses on innovative technologies such as biodegradable microneedle sensors for continuous glucose and cholesterol monitoring, implantable and wearable devices for physiological biomarker detection, and organ-on-a-chip platforms to study disease mechanisms like hepatic hypoxia. By integrating materials science, electrochemistry, and biomedical engineering, the lab aims to create smart, sensitive, and patient-friendly diagnostic tools for chronic disease management and early detection.
Professor Young Hae Choi's research lab specializes in metabolomics and green solvent technologies, focusing on the comprehensive analysis of metabolic networks in plants under stress conditions such as pathogen infection. The lab employs advanced NMR-based metabolomic approaches combined with multivariate data analysis to uncover key biochemical changes and identify bioactive compounds. A major research direction involves the development and application of natural deep eutectic solvents (NADES) as sustainable alternatives to conventional organic solvents in bioprocessing and natural product extraction.
Professor Myeong Gyu Kim's research lab specializes in health data science, focusing on the application of artificial intelligence and natural language processing to real-world health data. The lab investigates pharmacovigilance signals using social media, evaluates the metabolic effects of dietary patterns and supplements (such as ketogenic diets and n-3 fatty acids), and combats health misinformation—particularly during public health crises like the COVID-19 pandemic—using advanced NLP models like BERT. A central theme is leveraging digital health data to improve public health surveillance and decision-making.
Professor Lak Shin Jeong's research lab specializes in medicinal chemistry and chemical biology, with a focus on the design and synthesis of novel nucleoside analogues for therapeutic applications. The lab investigates enzyme inhibitors targeting key regulatory pathways in cancer and neurodegenerative diseases, particularly through modulation of post-translational modifications such as cullin neddylation and kinase activity (e.g., DYRK1A). A major research direction involves the development of adenosine receptor ligands, especially 4'-modified nucleosides, to create potent and selective antagonists for treating cancer and inflammatory conditions. The lab also explores structure-activity relationships of antiviral agents, particularly L-oxathiolanyl nucleosides, for HIV-1 inhibition.
Professor Murim Choi's research lab focuses on the genetic and molecular mechanisms underlying human diseases, with a strong emphasis on monogenic disorders affecting development and homeostasis. The lab integrates functional genomics, human genetics, and molecular physiology to identify disease-causing mutations and elucidate their pathophysiological mechanisms, particularly in the context of calcium signaling, ion channel function, and ectodermal development. Key research directions include the role of ion channels (e.g., KCNJ5) in endocrine diseases, the regulation of calcium transport in enamel formation, and the genetic basis of tooth and craniofacial malformations.
Professor Suk Kyun Hong's research lab specializes in advanced minimally invasive surgical techniques for living donor liver transplantation, with a primary focus on pure laparoscopic donor hepatectomy (PLDRH). The lab investigates the safety, feasibility, and long-term outcomes of laparoscopic approaches in both donors and recipients, emphasizing surgical innovation, intraoperative imaging (such as ICG fluorescence cholangiography), and 3D visualization. Their work contributes to the paradigm shift from anatomical to biologically guided criteria in selecting candidates for liver transplantation, particularly in hepatocellular carcinoma (HCC) patients. The lab is also at the forefront of advancing surgical training and standardization for complex laparoscopic liver surgery.
Professor Ki Won Lee's research lab focuses on the health-promoting effects of natural bioactive compounds, particularly phenolic phytochemicals and polyphenols found in common foods such as tea, wine, apples, and cocoa. The lab investigates their antioxidant, anti-inflammatory, and chemopreventive properties, with a special emphasis on mechanisms underlying cancer prevention, skin protection against UV damage, and modulation of oxidative stress-related diseases. Research also explores the molecular targets and signaling pathways affected by compounds like resveratrol, quercetin, and conjugated linoleic acid (CLA).
Professor Kook-Hyung Kim's research lab specializes in plant virology and fungal virology, with a focus on mycoviruses that influence fungal pathogenicity and host interactions. The lab investigates the molecular mechanisms of dsRNA viruses in filamentous fungi, particularly their role in reducing virulence and mycotoxin production, which has potential for biological control of plant pathogens. A key research direction involves overcoming vegetative incompatibility barriers to enable inter-strain or inter-species transmission of hypovirulence-associated mycoviruses through techniques like protoplast fusion. The lab also explores viral genome organization and host-virus interactions, including those involving plant-infecting viruses such as Tomato spotted wilt virus and Potato virus X.
Professor Jae Young Kim's research lab specializes in environmental engineering and sustainable waste management, focusing on the fate and transport of organic pollutants in environmental matrices, particularly in geomembranes and landfills. The lab investigates mass transfer mechanisms of contaminants like veterinary antibiotics and hydrocarbons, evaluates ecological risks, and develops innovative solutions for waste valorization through anaerobic digestion. Key research directions include environmental risk assessment, bioremediation, and the optimization of measurement and modeling techniques for greenhouse gas emissions and contaminant behavior.
Professor Jinyoung Moon's research lab specializes in environmental health and epidemiology, focusing on the health impacts of environmental exposures such as PFAS, shift work, and industrial pollutants. The lab conducts rigorous meta-analyses and cohort studies to assess dose-response relationships between occupational and environmental exposures and chronic diseases, particularly cancer and lung disorders. It also develops advanced wastewater treatment technologies, such as membrane bioreactors with granular sulfur, to address emerging contaminants in industrial effluents. The lab emphasizes methodological rigor in epidemiological research, with strong attention to bias control, exposure quantification, and real-world applicability.
Professor Hannah Oh's research lab focuses on the intersection of lifestyle factors, metabolic health, and cancer risk, with a particular emphasis on how dietary patterns, body composition, and hormonal biomarkers influence the development of obesity-related and hormone-sensitive cancers—especially breast cancer. The lab employs large-scale epidemiological studies, including nested case-control designs within prospective cohorts, to investigate the role of biomarkers such as estrogen receptor, progesterone receptor, Ki67, and IGF-1R in normal breast tissue as early indicators of cancer risk. Research also explores the impact of behavioral factors like smartphone use on adolescent body image and weight-related behaviors, highlighting the growing role of digital behaviors in health outcomes. The lab integrates molecular pathology with population-based epidemiology to identify modifiable risk factors and potential preventive strategies.
Professor Hyeong Sik Ahn's research lab focuses on endocrine and cardiovascular health, with a particular emphasis on the clinical and population-level impacts of thyroid disorders. The lab investigates the consequences of widespread thyroid cancer screening, especially its role in overdiagnosis and overtreatment, while also examining the long-term cardiovascular risks associated with thyroid dysfunction. Research spans epidemiological studies using large national databases to evaluate outcomes such as myocardial infarction and stroke in patients with hyperthyroidism or autoimmune thyroid disease.
Professor Soo-Youn Lee's research lab specializes in pharmacogenomics, personalized medicine, and molecular mechanisms underlying disease progression, with a focus on identifying genetic and metabolic biomarkers for precision therapy. The lab investigates genetic polymorphisms—particularly in drug-metabolizing enzymes like CYP2D6—and their clinical implications in diverse populations, including Koreans. It also explores molecular pathways involved in fibrosis, neurodegeneration, and cancer tropism, integrating genomics, proteomics, and metabolomics to uncover novel therapeutic targets. The lab's work bridges basic science and clinical application, aiming to improve diagnostic accuracy and treatment outcomes in conditions such as congenital adrenal hyperplasia, major depressive disorder, and brain tumors.