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 Heemin Kang's research lab specializes in the design and application of smart nanomaterials for advanced cancer therapy and diagnosis, with a strong focus on stimuli-responsive systems. The lab pioneers innovative strategies that leverage endogenous and exogenous stimuli—such as light, ultrasound, magnetic fields, and biochemical signals—to enable precise, on-demand control over therapeutic responses in deep-seated and intractable tumors. A key research direction involves developing convertible and reversible nanosystems that dynamically interact with immune cells, particularly macrophages, to modulate their adhesion and polarization for enhanced anti-tumor immunity. The lab also explores the unique properties of one-dimensional nanomaterials and mechanical stimulation for synergistic, patient-friendly cancer treatments.
Professor Jaesook Yun's research lab specializes in the development of transition metal-catalyzed asymmetric transformations, with a strong focus on copper- and titanium-based catalysis for enantioselective and stereoselective synthesis. The lab pioneers innovative methods for hydroboration, hydrosilylation, and borylation of unsaturated substrates, achieving high regio-, diastereo-, and enantioselectivity. Key advancements include the design of chiral ligands and catalyst systems for stereodivergent synthesis, particularly in the functionalization of alkenes, alkynes, and ketones. The work emphasizes atom-economical, mild, and scalable processes with broad functional group tolerance.
Professor Jae Hyuk Lee's research lab focuses on translational oncology and biomedical pathology, with a strong emphasis on tumor microenvironment, molecular markers of cancer progression, and the immunological and inflammatory responses in various malignancies. The lab investigates key biomarkers such as PTEN, E-cadherin, MMPs/TIMPs, and monocyte dynamics to understand their roles in tumor behavior, metastasis, and patient outcomes in colorectal, gastric, cervical, and breast cancers. Additionally, the lab extends its research into sustainable development, particularly evaluating the ecological and social sustainability of ecotourism through evidence-based assessment frameworks.
Professor Chang Hyun Lee's research lab specializes in biomedical imaging and radiation safety, with a focus on optimizing diagnostic imaging techniques to reduce patient radiation exposure while maintaining image quality. The lab investigates advanced computed tomography (CT) technologies, including automatic exposure control systems and low-dose imaging protocols, to enhance clinical outcomes. Additionally, the lab explores the impact of environmental factors—such as air pollution—on respiratory diseases, particularly chronic obstructive pulmonary disease (COPD), through epidemiological and imaging-based research. The integration of artificial intelligence in medical image interpretation, including computer-aided detection (CAD) and maximum intensity projection (MIP) techniques, further strengthens the lab’s contributions to diagnostic accuracy.
Professor Sae Jin Lim's research lab focuses on understanding the immunological mechanisms underlying T cell exhaustion in chronic viral infections and cancer. The lab investigates the development, maintenance, and functional regulation of stem-like CD8 T cells—particularly TCF1+ PD-1+ progenitor cells—that sustain the antiviral and antitumor T cell response. Using integrative approaches including single-cell genomics, epigenetics, and in vivo models, the lab explores how these progenitor T cells can be reactivated or expanded for immunotherapy. A central theme is the role of the tumor microenvironment and lymphoid organs in shaping T cell responses and mediating systemic antitumor immunity, especially in the context of radiotherapy and immune checkpoint blockade.
Professor Won Gon Han's research lab specializes in the discovery and clinical translation of novel urinary biomarkers for early detection, prognosis, and pathophysiological insight into acute kidney injury (AKI) and kidney transplant outcomes. The lab focuses on identifying and validating biomarkers such as KIM-1, NGAL, NAG, and IL-18 in critical care, post-cardiac surgery, and transplant settings to enable timely intervention and personalized management. Their work emphasizes the utility of these biomarkers in predicting delayed graft function, dialysis need, and mortality, with a strong translational focus on improving patient outcomes.
Professor Soo-Young Lee's research lab focuses on computational and molecular biology approaches to understand complex cellular signaling pathways and their implications in disease and regenerative processes. The lab specializes in identifying key regulatory proteins and transcription factors—such as NF-κB, STAT3, and GSK-3β—that govern immune responses, cell fate decisions, and tissue homeostasis. By integrating machine learning with experimental validation, the lab also develops predictive models for high-entropy alloys and family-friendly workplace policies, demonstrating a unique interdisciplinary approach bridging materials science and social systems. Current research directions emphasize systems biology, signal transduction, and data-driven design in both biomedical and engineering contexts.
Professor Yongmin Ahn's research lab focuses on the neurobiological and psychological mechanisms underlying mood and psychotic disorders, with a particular emphasis on circadian rhythms, depression phenotypes, and treatment-resistant depression. The lab investigates objective biomarkers—such as voice features and molecular signaling pathways like GSK-3β—for early detection and personalized treatment of psychiatric conditions. Key research directions include the pathophysiology of bipolar disorder and schizophrenia, especially in relation to suicide risk and neurochemical alterations. The lab integrates clinical psychiatry with translational neuroscience to improve diagnostic accuracy and therapeutic outcomes.
Professor Jong-Soo Jeon's research lab specializes in seismic risk assessment and performance-based earthquake engineering, with a focus on developing advanced computational and machine learning methodologies for structural reliability and fragility analysis. The lab investigates the seismic behavior of bridge components—particularly reinforced concrete columns and beam-column joints—under extreme loading, integrating probabilistic modeling, uncertainty quantification, and data-driven techniques. Key research directions include aftershock risk assessment, failure mode prediction, and the development of efficient, bridge-specific fragility curves using machine learning and Bayesian inference.
Professor Kibum Kang's research lab specializes in the design, synthesis, and application of advanced nanomaterials for next-generation energy and electronic devices. The lab focuses on low-dimensional semiconductors, such as transition metal dichalcogenides and ternary metal-oxy-chalcogenides, for high-performance field-effect transistors and gas sensors. A key research direction involves the development of novel nanostructured anodes—particularly silicon and amorphous-silicon core-shell nanowires—for ultra-high-capacity, long-cycle-life lithium-ion batteries. The lab also pioneers flexible and highly sensitive tactile sensors using 2D materials and mechanoluminescent components for bioelectronic applications.
Professor Hee Seung Kim's research lab specializes in gynecologic oncology, with a focus on improving outcomes for patients with ovarian and cervical cancers. The lab investigates prognostic biomarkers such as CA-125, PLR, and NLR to predict disease progression and treatment response, while also exploring supportive therapies like red ginseng to mitigate chemotherapy toxicity and enhance quality of life. Additionally, the lab contributes to the refinement of cancer staging systems, such as the FIGO classification, and examines the efficacy of treatment modalities like chemoradiation in advanced-stage cervical cancer. The integration of molecular techniques, including affinity capillary electrophoresis, further supports their work in drug-protein interactions and pharmacological mechanisms.
Professor Sung Ho Choi's research lab specializes in clinical and health-related data analytics, with a strong focus on surgical oncology and healthcare outcomes. The lab investigates prognostic factors and predictive models for rare and aggressive gastrointestinal malignancies, including intrahepatic cholangiocarcinoma, pancreatic neuroendocrine tumors, and intraductal papillary mucinous neoplasms (IPMN). A key research direction involves developing and validating clinical nomograms and statistical models to improve risk stratification and guide personalized treatment decisions. Additionally, the lab contributes to accounting and financial reporting research, particularly on the impact of international financial standard adoption (K-IFRS) on financial transparency, information quality, and market reactions.
Professor Min-Sung Kim's research lab specializes in service management, corporate social responsibility (CSR), and sustainable tourism, with a strong focus on employee behavior, organizational engagement, and environmentally responsible practices in the hospitality and tourism sectors. The lab investigates how leadership, CSR perceptions, and authentic experiences influence employee performance, traveler trust, and destination loyalty. Key research directions include the role of leader–member exchange (LMX), ethical leadership, and online review authenticity in shaping organizational and consumer outcomes.
Professor Jungwon Kim's research lab specializes in advanced photonic systems and intelligent computing, with a strong focus on ultralow-noise fiber lasers and frequency combs for precision timing applications. The lab also explores adaptive artificial immune systems (AIS) for network intrusion detection, emphasizing dynamic learning and anomaly detection in evolving cyber environments. Key research directions include high-precision jitter characterization in optical pulse trains and the development of robust, scalable algorithms for real-time system monitoring and security. The integration of photonics and bio-inspired computing represents a unique interdisciplinary strength of the lab.
Professor Byoung-Tak Zhang's research lab specializes in computational systems biology, artificial intelligence, and bioinformatics, with a focus on developing advanced machine learning and evolutionary computation methods for biological data analysis. The lab pioneers novel deep learning and genetic programming frameworks to model complex biological systems such as gene regulatory networks, stress responses from ECG signals, and biochemical pathways. Key research directions include the integration of multi-omics data, the discovery of synergistic microRNAs and their target mRNAs, and the development of interpretable and parsimonious neural network architectures. The lab emphasizes data-driven, principled approaches that combine evolutionary algorithms with deep learning for robust and generalizable biological insights.
Professor Hyun Sik Gong's research lab specializes in orthopedic surgery and trauma surgery, with a primary focus on the management of osteoporotic fractures, particularly distal radial fractures, and the impact of bisphosphonate therapy on fracture healing. The lab investigates patient-centered care approaches, including shared decision-making in orthopedic procedures such as carpal tunnel release, and explores innovative surgical techniques for complex hand and foot deformities like Freiberg disease and radial polydactyly. The research also emphasizes improving osteoporosis evaluation and treatment rates following fragility fractures in elderly patients.
Professor Kyung Moon Kim's research lab specializes in cerebrovascular disease, with a focus on acute ischemic stroke mechanisms, collateral circulation, and neuroimaging biomarkers. The lab investigates the impact of baseline collateral flow on recanalization and hemorrhagic transformation after endovascular therapy, as well as the role of white matter integrity and leukoaraiosis in stroke recurrence. Additional research explores neurostimulation techniques like tDCS for cognitive recovery and advanced imaging for plaque vulnerability assessment. The lab integrates clinical neurology with advanced neuroimaging and translational research across diverse patient populations.
Professor Jeong-Kyu Park's research lab specializes in regenerative medicine and immunomodulation, with a primary focus on mesenchymal stem cells (MSCs) and their role in regulating immune responses. The lab investigates the mechanisms by which MSCs suppress T-cell activation and induce immune tolerance, particularly through soluble factors and apoptosis induction. A key research direction involves applying MSC-based immunomodulation to improve outcomes in islet transplantation, including both allogeneic and xenogeneic settings using porcine islets. The lab also explores tolerance induction strategies using regulatory T cells (Tregs) in non-human primate models of diabetes.
Professor Wooseok Choi's research lab specializes in the epitaxial growth and in-situ characterization of complex oxide thin films, with a focus on understanding and controlling their electronic, structural, and functional properties. The lab investigates topotactic phase transformations, metal-insulator transitions, and oxygen nonstoichiometry effects in perovskite and brownmillerite oxides, using advanced real-time spectroscopic techniques such as spectroscopic ellipsometry and optical spectroscopy. A key research direction involves the coherent control of oxidation fronts and interfacial engineering in transition metal oxides for applications in oxide electronics, electrocatalysis, and multifunctional devices.
Professor Jo Eun-young's research lab specializes in diagnostic and molecular pathology, with a focus on hematolymphoid neoplasms, ovarian and breast carcinomas, and viral-associated lymphoproliferative disorders. The lab employs immunohistochemistry, molecular profiling, and tissue microarray techniques to investigate the clinicopathological features and biomarker expression in various malignancies, particularly Epstein-Barr virus-related lymphomas and adhesion molecules in ovarian serous neoplasms. Their work emphasizes translational research that bridges histopathological diagnosis with molecular markers for improved clinical decision-making.