구태윤 교수
Tae-Youn Koo
KAIST 의과학대학원 · 생화학·유전·분자생물학
연구실 소개
구태윤 교수의 연구실은 신경과학과 생물의학의 융합 분야에서 활동하며, 뇌의 생리적 기능과 질병 메커니즘을 이해하기 위한 혁신적 기술 개발에 주력하고 있습니다. 특히 뇌의 혈액뇌장벽를 비침습적으로 열어 생체분자의 뇌 내 정밀 전달을 가능하게 하는 레이저 기반 접근법과, 조직을 초해상 확대하면서 단백질 항원을 보존하는 고해상도 생체조직 분석 기술(eMAP)을 핵심으로 연구를 전개하고 있습니다. 또한 온라인 게임 중독과 관련된 정서적·인지적 특성에 대한 심리학적 분석을 통해 정신건강 문제의 메커니즘 규명에도 기여하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15OBJECTIVES: This study aimed to explore the relationship between online game addiction and aggression, self-control, and narcissistic personality traits, which are known as the psychological characteristics linked to "at-risk" populations for online game addiction. METHOD: A total of 1471 online game users (males 82.7%, females 17.3%, mean age 21.30+/-4.96) participated in this study and were asked to complete several self-report measures using an online response method. Questionnaires included
Spatial transcriptomics is a newly emerging field that enables high-throughput investigation of the spatial localization of transcripts and related analyses in various applications for biological systems. By transitioning from conventional biological studies to "in situ" biology, spatial transcriptomics can provide transcriptome-scale spatial information. Currently, the ability to simultaneously characterize gene expression profiles of cells and relevant cellular environment is a paradigm shift
A gentle, but fast means for low-stress, high-throughput platelet purification is of significant clinical and biotechnological utility. Current implementations to sort platelets, however, require an external physical field, specialized buffer, or the harsh separation condition of high shear stress that tends to cause platelet stimulation. Here we report the use of hydrophoretic size separation in a wider channel and its parallelization to augment its throughput capability, maintaining physiologi
Systemic delivery of bioactive molecules in the CNS is hampered by the blood-brain barrier, which has bottlenecked noninvasive physiological study of the brain and the development of CNS drugs. Here we report that irradiation with an ultrashort pulsed laser to the blood vessel wall induces transient leakage of blood plasma without compromising vascular integrity. By combining this method with a systemic injection, we delivered target molecules in various tissues, including the brain cortex. This
Synthetic tissue-hydrogel methods have enabled superresolution investigation of biological systems using diffraction-limited microscopy. However, chemical modification by fixatives can cause loss of antigenicity, limiting molecular interrogation of the tissue gel. Here, we present epitope-preserving magnified analysis of proteome (eMAP) that uses purely physical tissue-gel hybridization to minimize the loss of antigenicity while allowing permanent anchoring of biomolecules. We achieved success r
Sin-Young Park, Subash Marasini, Geu-Hee Kim, Taeyun Ku, Chulhee Choi, Min-Young Park, Eun-Hee Kim, Young-Don Lee, Haeyoung Suh-Kim and Sung-Soo Kim*. Exp Neurobiol 2014;23:104-14. https://doi.org/10.5607/en.2014.23.1.104
In preclinical studies of ischemic brain disorders, it is crucial to measure cerebral blood flow (CBF); however, this requires radiological techniques with heavy instrumentation or invasive procedures. Here, we propose a noninvasive and easy-to-use optical imaging technique for measuring CBF in experimental small animals. Mice were injected with indocyanine green (ICG) via tail-vein catheterization. Time-series near-infrared fluorescence signals excited by 760 nm light-emitting diodes were image
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