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 Sungmin Park's research lab focuses on biomedical engineering and wearable health technologies, with a strong emphasis on implantable medical devices, biosensors, and real-time physiological monitoring. The lab investigates RF-induced heating in MRI for implantable leads, develops advanced wearable pressure sensors for noninvasive cardiovascular monitoring, and explores machine learning applications for predicting critical glucose events in diabetes. Research spans from fundamental biophysics and sensor design to clinical applications in chronic disease management.
Professor Wan-Kun Oh's research lab specializes in natural product-based drug discovery, focusing on bioactive compounds from marine algae, traditional medicinal plants, and herbal extracts. The lab investigates the molecular mechanisms of these compounds in regulating metabolic diseases such as type 2 diabetes, obesity, and neurodegenerative disorders like Alzheimer’s disease. Key research directions include enzyme inhibition (e.g., PTP1B, ACC2), activation of cellular defense pathways (e.g., Nrf2/HO-1), and antiviral and antioxidant activities of marine and plant-derived compounds. The lab employs integrated approaches combining bioassay-guided fractionation, spectroscopic characterization, and in vitro/in vivo disease models to identify and validate novel therapeutic agents.
Professor Kyu Young Park's research lab focuses on advancing next-generation energy storage materials, particularly in lithium-ion batteries and fuel cell catalysts. The lab explores fundamental degradation mechanisms in high-capacity cathode materials such as LiNiO₂ and LiFePO₄, emphasizing defect engineering, oxygen stability, and ion transport kinetics. Innovative strategies like room-temperature electrochemical annealing and novel electrode designs are developed to enhance performance and durability. The lab also investigates the role of impurities and dopants in improving synthesis efficiency and electrochemical behavior, aiming for cost-effective, sustainable battery technologies.
Professor Beom-Young Kim's research lab specializes in liver disease epidemiology and noninvasive biomarker development, with a focus on chronic hepatitis B (CHB), hepatic fibrosis, and hepatocellular carcinoma (HCC). The lab investigates the clinical implications of viral load duration, fibrosis staging, and advanced elastography techniques such as liver stiffness measurement (LSM) to predict disease progression and guide personalized treatment. Key research directions include validating noninvasive fibrosis scores like FIB-4 and LSPS, assessing the impact of persistent HBV DNA on HCC recurrence, and exploring the interplay between NAFLD, sarcopenia, and cardiovascular risk. The lab aims to improve risk stratification and tailor surveillance and therapeutic strategies in chronic liver disease.
Professor Seung Woo Park's research lab focuses on the molecular mechanisms underlying pancreatic cancer and cholangiocarcinoma, with particular emphasis on early carcinogenesis, tumor microenvironment, and prognostic biomarkers. The lab investigates key transcription factors like Oct4 and Nanog in pancreatic carcinogenesis, explores the role of inflammatory cytokines such as IL-6 in hepatocarcinogenesis using zebrafish models, and identifies critical factors like VEGF-C in lymph node metastasis of intrahepatic cholangiocarcinoma. The lab also contributes to clinical diagnostics, including the application of FDG-PET and novel criteria for autoimmune pancreatitis.
Professor Sook-Hyang Jeong's research lab specializes in viral hepatitis and hepatocellular carcinoma (HCC) biomarkers, with a focus on understanding the immunological responses to hepatitis viruses and identifying novel diagnostic tools. The lab investigates hepatitis A and C virus pathogenesis, vaccine development using virus-like particles, and the clinical utility of biomarkers such as AFP, DKK-1, and osteopontin (OPN) in HCC diagnosis. Their work integrates virology, immunology, and clinical epidemiology, often employing large-scale population studies and nonhuman primate models to translate findings into public health strategies.
Professor Jong-En Park's research lab specializes in single-cell multi-omics technologies to dissect the development, differentiation, and function of immune cells in health and disease. The lab focuses on mapping the human immune system and tumor microenvironment at single-cell resolution, integrating genomics, transcriptomics, and spatial profiling to uncover cellular hierarchies, lineage trajectories, and microenvironmental interactions. A key emphasis is on understanding immune cell maturation in organs like the thymus and the host response to vaccines and cancer, leveraging large-scale single-cell atlases and computational tools such as BBKNN for data integration. Their work contributes significantly to the Human Cell Atlas and systems immunology, with translational implications for vaccine design and cancer immunotherapy.
Professor Seon-Jin Choi's research lab specializes in the development of advanced nanomaterials and nanostructured sensors for biomedical and environmental applications. The lab focuses on designing highly sensitive, selective, and portable gas sensors using metal oxide semiconductors—particularly WO₃ nanostructures—functionalized with noble metals, graphene, or catalytic nanoparticles for real-time detection of disease biomarkers such as acetone and hydrogen sulfide in exhaled breath. Key research directions include nanostructure engineering via templating and plasma modification, surface functionalization for enhanced selectivity, and integration into flexible, wearable, and low-cost sensing platforms for non-invasive medical diagnostics and environmental monitoring.
Professor Tae-Joon Cho's research lab specializes in orthopedic regenerative medicine and skeletal development, focusing on the molecular mechanisms regulating bone and cartilage formation, particularly the roles of growth factors such as BMPs and CNP in fracture healing and longitudinal bone growth. The lab investigates signaling pathways involved in skeletal morphogenesis, including TGF-β superfamily members and natriuretic peptide signaling, with translational applications in skeletal dysplasias and overgrowth syndromes. Clinical research in the lab emphasizes surgical interventions for pediatric foot deformities and limb lengthening, integrating biomechanical and molecular insights to improve outcomes in children with cerebral palsy and other musculoskeletal disorders.
Professor Jaeyong Lee's research lab specializes in interdisciplinary materials science and structural biology, focusing on the development of advanced functional materials and the structural characterization of viral and cellular enzymes. Key research directions include designing highly sensitive and stretchable nanomaterial-based strain sensors using carbon nanotubes, engineering hybrid solar cells with ultra-thin amorphous silicon for tunable optical properties, and elucidating the molecular mechanisms of viral proteases like SARS-CoV-2 Mpro and regulatory enzymes such as CCT. The lab integrates X-ray crystallography, nanofabrication, and bioimaging techniques to address challenges in biomedicine and sustainable energy.
Professor Hyun Gyu Park's research lab specializes in the development of advanced nanomaterials and hybrid systems for biomedical sensing and enzyme stabilization. The lab focuses on designing functional nanomaterials—such as mesoporous silica, magnetic nanoparticles, and polydiacetylene liposomes—that enable sensitive, colorimetric detection of nucleic acids and biomolecules. A key research direction involves enhancing enzyme stability and activity through nano-confinement and crosslinking strategies, particularly for diagnostic applications. The lab also pioneers innovative molecular logic systems and enzyme-mimicking nanocatalysts for point-of-care diagnostics and biocatalysis.
Professor Sung-Kil Ji's research lab specializes in developing advanced nanomaterials and molecular therapeutics for targeted cancer therapy, with a focus on overcoming tumor microenvironment challenges. The lab investigates stimuli-responsive drug delivery systems, particularly those activated by redox (GSH/H₂O₂) and enzymatic (e.g., NQO1) triggers, to enhance precision and efficacy. Key research directions include mitochondria-targeted theranostic agents, autophagy modulation, and the molecular mechanisms of tumor suppressors like XAF1 and CAV1 in cancer metabolism and apoptosis. The lab integrates nanomedicine, molecular biology, and cancer cell signaling to drive translational innovations.
Professor Sok Jeong's research lab specializes in developing advanced microfluidic and 3D cell culture platforms to model complex physiological microenvironments, with a focus on angiogenesis, tumor microenvironments, and islet physiology. The lab integrates precise control of biochemical gradients, mechanical cues, and dynamic flow conditions within hydrogel-embedded 3D systems to study cell behavior at single-cell resolution. Key research directions include vascular morphogenesis, cancer-stroma interactions, and functional tissue engineering for regenerative medicine and drug testing.
Professor Yongchul Kim's research lab focuses on molecular and translational cardiovascular research, with a strong emphasis on redox biology, adenosine receptor pharmacology, and interventional cardiology. The lab investigates cellular signaling pathways involving thioredoxin and transcription factors like Nrf2 in response to oxidative stress, while also developing novel receptor-targeted compounds for cardiovascular and inflammatory diseases. Additionally, the lab contributes to clinical cardiology through large-scale registries such as KAMIR, aiming to improve outcomes in acute myocardial infarction across Asian populations. Their work bridges basic molecular mechanisms with clinical applications in interventional cardiology and drug discovery.
Professor Dong-Ho Lee's research lab specializes in natural product chemistry and metabolomics, focusing on the isolation and structural elucidation of bioactive compounds from medicinal plants, particularly those with therapeutic potential in cancer and inflammatory diseases. The lab employs advanced analytical techniques such as UPLC-QTOF-MS and NMR for metabolite profiling and biomarker discovery, with a strong emphasis on age-dependent metabolite variation in ginseng and other plant species. Additionally, the lab explores the development of sustainable and reusable catalysts, such as NHC-Pd systems on macroporous resins, for efficient organic synthesis. Their work bridges natural product discovery with analytical innovation and environmental sustainability.
Professor Kyoung-Ho Song's research lab specializes in infectious diseases, with a focus on antimicrobial resistance, healthcare-associated infections, and the epidemiology of bacterial and viral infections in vulnerable populations. The lab conducts population-based and multi-center cohort studies to understand the clinical outcomes, risk factors, and burden of infections such as spontaneous bacterial peritonitis, surgical site infections, and bloodstream infections caused by multidrug-resistant organisms like extended-spectrum beta-lactamase-producing Enterobacteriaceae. The lab also investigates immune responses in viral infections, including SARS-CoV-2, contributing to public health policy and infection control strategies in Korea and beyond.
Professor Gi Jeong Cheon's research lab specializes in molecular imaging and biomedical diagnostics, focusing on the development and application of advanced imaging techniques such as PET, SPECT, and MRI for early disease detection, treatment response prediction, and personalized medicine. The lab investigates neuroinflammation, cancer metabolism, and body composition using radioligands and novel imaging probes, with particular emphasis on conditions like complex regional pain syndrome, osteosarcoma, and cholangiocarcinoma. Innovative diagnostic technologies, including exosome detection using multi-quantum dot-based lateral flow assays, are also a key focus, aiming to improve sensitivity and clinical utility in oncology and neurological disorders.
Professor Kwang-il Kim's research lab specializes in geriatric medicine and aging-related diseases, with a focus on frailty, hypertension, and their clinical and molecular underpinnings in elderly populations. The lab develops and validates multidimensional frailty indices using comprehensive geriatric assessments and investigates the role of systemic inflammation and molecular pathways—such as beta-catenin signaling and microsatellite instability—in age-related diseases like cancer and cardiovascular conditions. Their work integrates clinical epidemiology with molecular biology to improve risk prediction and personalized management in older adults.
Professor Jang-Sik Lee's research lab specializes in developing flexible, biocompatible, and sustainable electronic devices inspired by biological neural systems. The lab focuses on designing next-generation neuromorphic computing hardware using renewable organic materials—such as lignin, chitosan, and carrageenan—combined with nanoscale functional materials for nonvolatile memory and synaptic emulation. Key research directions include solution-processed resistive switching memories, ferroelectric transistors, and biomimetic memristors that exhibit analog conductance modulation and synaptic plasticity. The lab emphasizes energy-efficient, low-cost, and environmentally friendly fabrication techniques suitable for wearable and flexible electronics.