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 Kikang Kim's research lab specializes in the synthesis, characterization, and application of two-dimensional materials, with a strong focus on hexagonal boron nitride (h-BN) and graphene. The lab develops advanced chemical vapor deposition (CVD) techniques to grow large-area, high-quality h-BN films—ranging from monolayers to multilayers—on various substrates, aiming to enable next-generation electronic and optoelectronic devices. A key research direction involves achieving wafer-scale single-crystalline h-BN and exploring its potential as a high-performance dielectric or substrate for 2D electronics. Additionally, the lab investigates p-type doping strategies for graphene and carbon nanotubes to enhance their electrical and optical properties for transparent conducting and nanoelectronic applications.
Professor Jae Hyun Park's research lab specializes in health services research with a focus on the psychosocial and occupational impacts of serious illness, particularly cancer and infectious diseases like H1N1. The lab investigates patient-reported outcomes, mental health, employment outcomes, and surgical outcomes, with an emphasis on real-world implications for healthcare policy and practice. Key research directions include cancer-related job loss, re-employment, suicidality in cancer patients, and surgical innovation such as robotic thyroidectomy. The lab integrates epidemiological, psychological, and clinical data to improve patient-centered care and health system responsiveness.
Professor Min Ho Kang's research lab focuses on the intersection of immunology, ophthalmology, and biomedical technology, with a strong emphasis on understanding the role of inflammatory mediators—particularly IL-17 and Th-17 cells—in ocular surface diseases such as dry eye syndrome, Sjögren’s syndrome, and autoimmune keratitis. The lab also explores innovative, non-chemical sterilization methods using plasma and ozone for agricultural applications, especially in seed treatment to combat fungal pathogens. Additionally, the lab investigates the therapeutic potential of plasma-generated nitric oxide in plant fertilization and sanitation, highlighting a translational approach from biomedical to agricultural sciences. Their work bridges clinical ophthalmology with molecular immunology and emerging plasma technologies.
Professor So Yeon Park's research lab focuses on the tumor microenvironment and cancer stem cell biology in breast cancer, with a particular emphasis on intratumoral heterogeneity, immune cell infiltration (especially TILs and tumor-associated macrophages), and the interplay between cellular phenotypes and genetic alterations. The lab investigates how cancer stem cell populations and epithelial-mesenchymal transition (EMT) influence therapeutic response and disease progression, especially in the context of primary systemic therapy. Using integrated approaches combining immunohistochemistry, molecular profiling, and ecological/evolutionary analyses, the lab aims to uncover mechanisms of therapy resistance and identify prognostic and predictive biomarkers.
Professor Dae Jung Kim's research lab focuses on metabolic and chronic disease epidemiology, with a strong emphasis on the role of nutritional factors, lifestyle behaviors, and biomarkers in the development of type 2 diabetes, non-alcoholic fatty liver disease (NAFLD), and cardiovascular outcomes. The lab investigates long-term associations of micronutrients like magnesium, bioactive compounds such as indole-3-carbinol, and sleep duration with metabolic health and systemic inflammation. Using large-scale population-based cohorts and preclinical models, the lab aims to identify modifiable risk factors and develop predictive tools for early detection and prevention of metabolic disorders.
Professor Hyun Kim's research lab focuses on neurodegenerative diseases, particularly Alzheimer’s disease and related conditions such as mild cognitive impairment, with an emphasis on neuroinflammation and systemic contributors like obstructive sleep apnea and metabolic health. The lab investigates molecular mechanisms involving brain-derived neurotrophic factor (BDNF), microtubule-associated proteins (MAP2), and cytokine profiles in neurodegeneration and cerebrovascular health. It also explores fundamental cell biology, including membrane protein topology in model organisms like *Saccharomyces cerevisiae*, to inform broader biological insights. The research integrates molecular neuroscience, systems biology, and translational medicine to uncover pathways linking metabolic, vascular, and neurodegenerative pathologies.
Professor Jung-Sun Kim's research lab specializes in cardiovascular and metabolic disease mechanisms, with a focus on the cardiorenal protective effects of sodium-glucose cotransporter 2 (SGLT2) inhibitors. The lab investigates the anti-inflammatory and anti-fibrotic pathways underlying these benefits, particularly through modulation of the NLRP3 inflammasome and interleukin-1β signaling. Additional research directions include cardiac function improvement in diabetes using pharmacological agents, and the application of advanced imaging techniques such as optical coherence tomography (OCT) to study stent healing and vascular remodeling. The lab also explores natural products with therapeutic potential, including marine-derived polyacetylenic compounds.
Professor Sung-Ha Park's research lab specializes in DNA nanotechnology and structural biology, focusing on the design and self-assembly of programmable DNA nanostructures for precise nanoscale engineering. The lab develops DNA-based architectures such as molecular tubes, DNA tiles, and three-helix bundles to create addressable, size-controlled nanoarrays with applications in nanofabrication and biomolecular patterning. By leveraging the predictable base-pairing and modular design of DNA, the lab achieves precise control over periodic spacing and geometry, enabling the organization of proteins and other molecules with nanometer precision. Their work bridges synthetic biology, materials science, and biomedical engineering, with potential implications in diagnostics, drug delivery, and tissue engineering.
Professor Lee, Kyoung Jin's research lab specializes in spintronics and 2D materials, focusing on the fundamental mechanisms of spin and orbital angular momentum transport in low-dimensional systems. The lab investigates spin-orbit torque phenomena, Rashba effect-based devices, and novel memory technologies such as solid electrolyte memories, with an emphasis on electrical control of magnetism and nanoscale magnetic dynamics. Recent work also extends into 3D volumetric video streaming for immersive AR/VR applications, highlighting interdisciplinary innovation in materials and information systems.
Professor Hong Bin Kim's research lab focuses on antimicrobial resistance, particularly the molecular epidemiology and genetic mechanisms of multidrug-resistant pathogens such as *Escherichia coli*, *Klebsiella pneumoniae*, and *Staphylococcus aureus*. The lab investigates plasmid-mediated resistance genes, including quinolone resistance determinants (e.g., PMQR genes, *oqxAB*), efflux pump systems, and mobile genetic elements like IS26. The lab also explores host-pathogen interactions and diagnostic methods for infectious diseases, including tuberculosis and emerging viral infections such as SARS-CoV-2. Their work integrates molecular diagnostics, antimicrobial resistance surveillance, and public health impact assessment in clinical settings.
Professor Soyeon Park's research lab focuses on the tumor microenvironment and cancer stem cell biology in breast cancer, with a particular emphasis on intratumoral heterogeneity, immune cell infiltration (especially TILs and TAMs), and the interplay between cancer stem cell phenotypes and epithelial-mesenchymal transition (EMT). The lab employs integrated approaches combining immunohistochemistry, genotypic analysis, and ecological/evolutionary modeling to dissect the dynamic cellular and molecular landscapes of breast tumors across subtypes and treatment stages. Their work aims to uncover mechanisms of therapeutic resistance and identify prognostic and predictive biomarkers for personalized therapy.
Professor Byung Ki Kim's research lab specializes in gynecological oncology, focusing on the molecular mechanisms underlying epithelial ovarian and cervical cancers. The lab investigates tumor suppressor genes such as BRD7 and oncogenic pathways involving proteins like FGFR and SK1 to identify novel therapeutic targets. Key research directions include evaluating the efficacy of neoadjuvant chemotherapy, exploring radiation resistance mechanisms, and developing targeted therapies using siRNA and small molecule inhibitors. The lab also emphasizes translational research, integrating in vitro, in vivo, and clinical data to improve patient outcomes.
Professor Sun Young Kim's research lab focuses on translational biomedical research with a strong emphasis on aging, metabolic health, and reproductive immunology. The lab investigates the pathophysiology of nephrotoxicity and sarcopenia, particularly in elderly populations, to identify biomarkers and risk thresholds for conditions like osteoporosis and frailty. It also explores epigenetic regulation—especially DNA methylation—in maternal-fetal immune interactions during pregnancy, and examines the therapeutic potential of natural compounds, such as herbal supplements, in managing menopausal symptoms and cardiovascular risk. The lab integrates clinical epidemiology with molecular mechanisms to develop preventive and personalized health strategies.
Professor Kyung-Jin Lee's research lab specializes in spintronics and quantum materials, focusing on spin-orbit phenomena, magnetic torque effects, and the electrical manipulation of magnetization in nanostructured devices. The lab investigates fundamental mechanisms such as the orbital Hall effect, Rashba spin-orbit coupling, and spin-transfer torque in heterostructures, with applications in next-generation low-power memory and logic devices. They also explore emerging concepts in 2D materials and solid electrolyte memories, combining advanced experimental techniques with theoretical modeling to uncover microscopic switching mechanisms. Their work bridges quantum materials physics with practical device integration, particularly in spintronic and neuromorphic computing platforms.
Professor Seung Woo Lee's research lab specializes in advanced materials for sustainable energy and environmental applications, with a strong focus on electrocatalysis and energy storage systems. The lab investigates novel nanomaterials—particularly carbon nanotubes and transition metal oxides—for use in sodium-ion and sodium-metal batteries, aiming to overcome challenges related to stability and efficiency. A key research direction involves the development of selective electrocatalysts for nitrogen fixation and nitrate reduction, offering pathways to carbon-free fertilizer production. The lab also explores fundamental electrochemical processes in functional thin films and nanostructured electrodes to enable high-performance energy devices.
Professor Sang Hee Kim's research lab focuses on plant molecular biology and biochemistry, with a central emphasis on understanding and engineering plant immune responses and gene regulation. The lab investigates the molecular mechanisms of disease resistance in plants, particularly through the manipulation of nucleotide-binding leucine-rich repeat (NLR) receptors and endogenous immune pathways. Additionally, the lab explores the regulation of key developmental genes such as FLC in Arabidopsis, aiming to decipher the epigenetic and transcriptional control of flowering time. Their work combines molecular genetics, biochemistry, and structural biology to develop sustainable strategies for crop improvement.
Professor Hee-Nam Park's research lab specializes in cardiac electrophysiology and catheter ablation, focusing on the mechanisms and treatment of atrial fibrillation and ventricular arrhythmias. The lab investigates novel ablation strategies, including hybrid epicardial and endocardial procedures, circumferential pulmonary vein isolation, and linear ablation, to improve clinical outcomes in patients with paroxysmal and persistent atrial fibrillation. A key research direction involves evaluating the impact of ablation on cardiac autonomic function and cognitive outcomes, particularly in relation to left atrial remodeling and conduction patterns. The lab also explores the role of stem cells in cardiac repair and neural regeneration following myocardial infarction.
Professor Wan Bae Kim's research lab specializes in advanced materials and next-generation database technologies, with a strong focus on nanomaterials for energy and environmental applications and innovative database systems for complex data management. The lab develops functional nanomaterials such as metal-embedded titanium dioxide nanofibers and conductive polypyrrole nanostructures for applications in catalysis, energy conversion, and sensing. In parallel, the lab explores object-oriented database systems, particularly composite object modeling and efficient query processing for next-generation data management. These interdisciplinary efforts bridge materials science and computer science to address challenges in sustainable energy and intelligent data systems.
Professor Jun Yong Park's research lab specializes in hepatology and gastroenterology, with a primary focus on chronic hepatitis B (CHB) and hepatocellular carcinoma (HCC). The lab investigates viral load markers such as qHBsAg and qHBeAg to predict treatment responses in CHB patients, particularly those on antiviral therapy like entecavir. It also explores non-invasive fibrosis assessment using transient elastography (LSM) and its integration with clinical parameters like ALT and platelet count to improve diagnostic accuracy. Additionally, the lab evaluates interventional therapies such as hepatic arterial infusion chemotherapy (HAIC) for advanced HCC, emphasizing efficacy and safety in real-world settings.
Professor Jae Chan Lee's research lab specializes in the development of advanced heterogeneous catalysts for sustainable chemical transformations, particularly in biomass conversion and renewable fuel production. The lab focuses on enhancing catalytic activity and stability through innovative materials design, such as bimetallic systems and atomic layer deposition (ALD)-derived protective coatings. Key research directions include aqueous-phase hydrogenation (APH) of biomass-derived oxygenates, hydrodeoxygenation (HDO) of bio-oils, and selective oxidation processes for high-value chemicals. The lab also investigates the fundamental structure-activity relationships in transition metal catalysts to enable efficient, selective, and durable catalytic systems.