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 Chan-Ho Yang's research lab specializes in the design, synthesis, and characterization of functional oxide thin films, with a focus on multiferroic and ferroic materials. The lab explores emergent phenomena arising from strain engineering, epitaxial growth, and nanoscale symmetry breaking, particularly in complex oxides such as BiFeO₃ and BiMnO₃. Key research directions include topological textures in ferroelectrics, enhanced electromechanical responses at domain walls, and the interplay between orbital ordering, magnetism, and ferroelectricity under epitaxial strain. The lab employs advanced characterization techniques such as resonant x-ray scattering and atomic-scale strain mapping to uncover fundamental mechanisms behind novel functionalities.
Professor Taeseong Son's research lab specializes in gastrointestinal oncology, with a primary focus on improving outcomes for patients with gastric cancer through innovative adjuvant and neoadjuvant treatment strategies. The lab conducts large-scale clinical trials and multinational meta-analyses to evaluate the prognostic and predictive value of molecular biomarkers—such as microsatellite instability (MSI) and specific gene alterations—enabling precision medicine approaches in gastric cancer. Key research directions include optimizing chemoradiotherapy regimens, assessing targeted therapies in metastatic disease, and identifying patient subgroups most likely to benefit from specific treatments. The lab also investigates pathological and clinical factors that guide minimally invasive treatment in early gastric cancer.
Professor Seung Joon Baek's research lab focuses on the molecular mechanisms underlying the chemopreventive and antitumorigenic effects of natural dietary compounds, particularly polyphenols and phytochemicals such as 6-gingerol, resveratrol, and green tea catechins. The lab investigates how these compounds modulate key signaling pathways involving tumor suppressor proteins like NAG-1 and transcription factors such as Egr-1 to induce apoptosis and inhibit cancer cell proliferation, especially in colorectal and other gastrointestinal cancers. A central theme is understanding PPARγ-independent mechanisms of action for anti-cancer agents like troglitazone, highlighting the role of stress-activated kinases and transcriptional regulation in cancer cell death. The lab also explores novel imaging tools, such as lux-based bioluminescent systems, for real-time visualization of cellular processes.
Professor Hyungjun Kim's research lab specializes in biomedical and materials science applications of advanced technologies, focusing on deep learning for medical image analysis and survival prediction in oncology, diagnostic AI for dental imaging, antiviral immunity in aquaculture, dental biomaterials, and resistive switching in nanoscale oxide films. The lab integrates computational methods such as deep learning and micro-CT with experimental biology and materials engineering to address clinical challenges in cancer, oral diseases, fish virology, and next-generation electronic materials. Key research directions include AI-driven diagnostics, biocompatible materials for dentistry, and functional nanomaterials for neuromorphic computing.
Professor Sang Do Shin's research lab specializes in population health sciences, with a primary focus on injury epidemiology, cardiovascular disease outcomes, and prehospital emergency care. The lab conducts large-scale population-based studies using national databases to evaluate injury severity, mortality trends, and the effectiveness of clinical decision rules and public health interventions. Key research directions include developing novel injury severity scoring systems, assessing the impact of resuscitation protocols on out-of-hospital cardiac arrest outcomes, and analyzing patterns and risk factors for poisoning-related mortality. The lab integrates epidemiological methods with clinical decision support tools to improve prehospital care and public health policy.
Professor Han-Ki Kim's research lab specializes in the development of advanced functional thin films and transparent conductive electrodes for next-generation optoelectronic devices. The lab focuses on flexible, transparent, and stretchable electrodes using innovative materials such as ITO, Ag nanowires, and aluminum-based contacts, with applications in organic light-emitting diodes (OLEDs), electrochromic devices, and touch screen panels. Key research directions include plasma-free sputtering techniques, roll-to-roll manufacturing, and the engineering of ohmic contacts on wide-bandgap semiconductors like ZnO:Al to enhance device performance and reliability.
Professor Man Bock Gu's research lab specializes in the development of advanced biosensors and nanomaterial-based platforms for biomedical and environmental applications. The lab focuses on aptamer discovery using innovative techniques like graphene oxide-based SELEX, enabling high-throughput, label-free detection of biomarkers and small molecules. Key research directions include the design of sensitive biosensors for disease diagnostics—such as those targeting RBP4 in type 2 diabetes—and the application of nanomaterials like silver and gold nanoparticles for probing cellular toxicity and ion homeostasis. The lab also explores enzyme immobilization strategies for sustainable biocatalysis and green energy production.
Professor Jeehoon Kim's research lab specializes in the development of advanced functional polymeric materials and stimuli-responsive drug delivery systems for biomedical applications. The lab focuses on designing smart hydrogels and nanostructured platforms for controlled release of bioactive molecules such as nitric oxide (NO) and immunomodulatory agents, with applications in cancer immunotherapy and cardiovascular disease treatment. Key research directions include stimuli-responsive polymers, supramolecular self-assembly of telechelic and block copolymers, and the integration of NO-releasing systems with immune checkpoint blockade. The lab also explores the fundamental mechanisms of phase transitions in functional oxides, such as VO2, for potential use in next-generation electronic and sensing devices.
Professor Sung Yung Park's research lab focuses on interdisciplinary studies at the intersection of biomedical engineering, nanomaterials, and clinical health outcomes. The lab investigates the impact of early-life cardiovascular risk factors—such as hypertension and obesity—on long-term disease outcomes in young adults, while also developing advanced radiation therapy planning tools using novel dose homogeneity metrics. In parallel, the lab explores the optical and structural properties of DNA-templated gold nanoparticle assemblies, combining experimental techniques with theoretical modeling to understand nanoscale self-assembly. These diverse research directions reflect a strong commitment to both clinical translation and fundamental nanoscience.
Professor Ji-Young Lee's research lab focuses on the neurobiological and genetic underpinnings of Parkinson’s disease, with a particular emphasis on the role of neurotransmitter systems—dopamine, glutamate, and serotonin—in motor complications and neuropsychiatric symptoms. The lab investigates genetic susceptibility to levodopa-induced dyskinesias, impulse control disorders, and visual hallucinations, integrating neuroimaging, molecular genetics, and clinical phenotyping. Their work also explores the interplay between tumor suppressor pathways and microRNA regulation in cancer, highlighting translational mechanisms in both neurodegeneration and oncogenesis.
Professor Eun Bong Lee's research lab focuses on autoimmune rheumatic diseases, with a particular emphasis on understanding immune cell biology, optimizing treatment strategies, and improving patient outcomes in conditions such as rheumatoid arthritis, systemic sclerosis, and systemic lupus erythematosus. The lab investigates the role of specific immune cell subsets—like stem cell-like memory T cells—in disease pathogenesis and treatment response, while also evaluating the efficacy and safety of disease-modifying therapies, including JAK inhibitors and methotrexate. Additionally, the lab examines infection risks, such as pneumocystis pneumonia, in patients on long-term steroid therapy, and explores strategies to enhance vaccine responses in immunosuppressed populations. Their work combines clinical trials, immunophenotyping, and advanced statistical modeling to translate immunological insights into personalized therapeutic approaches.
Professor Youngbin Song's research lab specializes in cardiovascular imaging and interventional cardiology, with a strong focus on improving the diagnosis and prognosis of coronary artery disease using advanced imaging modalities such as computed tomography angiography (CTA) and cardiac magnetic resonance (CMR). The lab investigates biomarkers like D-dimer and neutrophil-to-lymphocyte ratio (NLR) to predict myocardial injury and clinical outcomes in acute myocardial infarction. Additionally, the lab explores interventional strategies in complex coronary lesions, including bifurcation stenting and reperfusion timing in ST-elevation myocardial infarction (STEMI), with an emphasis on optimizing patient outcomes in real-world clinical settings.
Professor Taehun Yang's research lab specializes in plant genomics, with a focus on the evolutionary genomics, genome architecture, and molecular phylogenetics of economically and medicinally important plants such as *Panax ginseng*, *Epimedium*, and *Brassiceae* species. The lab employs advanced sequencing technologies and bioinformatic approaches to study whole genome duplications, chloroplast genome evolution, and nuclear ribosomal DNA variation, contributing to the understanding of plant genome dynamics and biodiversity. Their work also supports practical applications in species authentication, conservation, and breeding through the development of molecular markers and genomic databases.
Professor Yun-Tae Lee's research lab focuses on the molecular and cellular mechanisms underlying immune regulation, development, and cancer pathogenesis, with a central emphasis on the transcriptional regulator Capicua (CIC). The lab investigates how CIC functions as a critical transcriptional repressor in diverse biological contexts, including T follicular helper cell differentiation, liver-resident memory T cell development, B-1 cell homeostasis, and hepatocellular carcinoma progression. By integrating genetic, molecular, and immunological approaches, the lab uncovers how CIC maintains immune tolerance and tissue homeostasis, and how its dysregulation contributes to autoimmunity and cancer. The research also extends to the enzymatic mechanisms of RNase III proteins, particularly Drosha, in microRNA biogenesis, highlighting the lab’s broad interest in post-transcriptional gene regulation.
Professor Jun Ho Lee's research lab specializes in translational biomedical research, focusing on neurodegenerative diseases, particularly Alzheimer’s disease, through the development and validation of culturally adapted cognitive assessment tools such as CERAD-K. The lab also investigates molecular mechanisms in epithelial-mesenchymal transitions (EMT) and signaling pathways involving TGF-β and RAS-MAPK in cancer and fibrosis. Additionally, the lab explores clinical oncology aspects, including synchronous cancers in gastric cancer patients and the prognostic significance of clinical staging. The integration of clinical, molecular, and technological approaches—such as intrusion detection systems in cloud computing—demonstrates a multidisciplinary research scope with strong clinical relevance.
Professor Jun Hyung Kim's research lab specializes in biomedical imaging, diagnostic AI, and biomaterials, with a focus on improving early detection of oral diseases using deep learning and advanced imaging techniques. The lab investigates the prognostic value of non-invasive biomarkers in metabolic and cardiovascular diseases, while also exploring antiviral immunity in aquaculture and resistive switching mechanisms in nanoscale oxide materials for next-generation electronics. Current research spans from clinical applications in dentistry and cardiology to fundamental studies in nanomaterials and virology. The lab integrates clinical data, machine learning, and materials science to develop innovative diagnostic and therapeutic solutions.
Professor Han Suk Kim's research lab focuses on plant molecular pathology and host-microbe interactions, particularly the mechanisms by which bacterial effectors manipulate host immunity. The lab investigates key signaling pathways in plant defense, including systemic acquired resistance (SAR) mediated by salicylic acid and NPR1, and the role of transcription factors such as TGA2 and TGA5 in disease resistance. Additionally, the lab explores redox regulation in stress responses, including the induction of 1-cysteine peroxiredoxin under oxidative stress. More recently, the lab has expanded into neonatal critical care, examining ventilatory support strategies and neurodevelopmental outcomes in preterm infants with bronchopulmonary dysplasia and pulmonary hypertension.
Professor Joo Myung Lee's research lab specializes in interventional cardiology and structural heart disease, with a strong focus on optimizing percutaneous coronary intervention (PCI) strategies using advanced imaging and functional assessment. The lab investigates the role of intravascular imaging, fractional flow reserve (FFR), and hemodynamic optimization in complex coronary artery disease, aiming to improve clinical outcomes and reduce revascularization rates. Additionally, the lab explores respiratory support strategies in critical care, particularly prone positioning in acute respiratory distress syndrome (ARDS), to enhance survival and reduce complications. Their work is deeply rooted in clinical trials, with a commitment to evidence-based interventional cardiology and critical care innovation.
Professor Kyungsik Kim's research lab focuses on interdisciplinary studies spanning biomedical engineering, environmental health, and civil infrastructure. The lab investigates clinical outcomes and risk factors in gastrointestinal and liver cancers, particularly bile duct and hepatocellular carcinomas, with an emphasis on surgical resection and postoperative recurrence. It also explores environmental and behavioral factors influencing thyroid cancer, including iodine intake and thyroid function. Additionally, the lab applies advanced computational modeling to improve structural design standards, particularly for buried box culverts and soil-structure interaction in highway infrastructure.
Professor Sung-Yoon Chung's research lab specializes in advanced materials and electrochemical systems, with a strong focus on energy conversion and storage technologies. The lab investigates the atomic-scale structure–property relationships in complex oxides, particularly perovskite-type materials, for applications in electrocatalysis and solid oxide fuel cells. Key research directions include defect engineering in polycrystalline and epitaxial oxide thin films, the development of high-performance electrocatalysts for oxygen evolution reactions, and the optimization of electrical machines through advanced control algorithms and sensor integration. The lab combines advanced electron microscopy, thin-film epitaxy, and electrochemical characterization to enable next-generation energy materials and systems.