Ki Taek Nam
Yonsei University 의과대학 · 医学
Ki Taek Nam 교수의 연구실은 암 생물학과 정밀 의료를 융합한 연구를 주도하고 있습니다. 특히, 세포극성과 라브 단백질을 통한 암 전이 메커니즘 규명, 그리고 광역학 치료를 활용한 종양세포 전용 치료제 개발에 초점을 맞추고 있습니다. 또한, 병원성 박테리아에 대한 선택적 항균제 설계와 위암 예방을 위한 약물 모색 등 다양한 질병에 대응하는 혁신적 약물 전략을 개발하고 있습니다.
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Transformation of epithelial cells is associated with loss of cell polarity, which includes alterations in cell morphology as well as changes in the complement of plasma membrane proteins. Rab proteins regulate polarized trafficking to the cell membrane and therefore represent potential regulators of this neoplastic transition. Here we have demonstrated a tumor suppressor function for Rab25 in intestinal neoplasia in both mice and humans. Human colorectal adenocarcinomas exhibited reductions in
An effective strategy to engineer selective photodynamic agents to surmount bacterial-infected diseases, especially Gram-positive bacteria remains a great challenge. Herein, we developed two examples of compounds for a proof-of-concept study where reactive differences in reactive oxygen species (ROS) can induce selective ablation of Gram-positive bacteria. Sulfur-replaced phenoxazinium (NBS-N) mainly generates a superoxide anion radical capable of selectively killing Gram-positive bacteria, whil
Our data show that nimesulide prevents H. pylori-associated gastric carcinogenesis, and suggest that COX-2 may be a target for chemoprevention of gastric cancer.
A major challenge in cancer treatment is the development of effective tumor-specific therapeutic methods that have minimal side effects. Recently, a photodynamic therapy (PDT) technique using activatable photosensitizers (aPSs) has shown great potential for cancer-specific treatment. Here, we develop a sequential protein-responsive aPS (PcC4-MSN-O1) that is based on zinc(II) phthalocyanine derivative (PcC4)-entrapped mesoporous silica nanoparticles (MSNs) and a wrapping DNA (O1) as a biogate. In
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