유성운
Yu, Seong-Woon학력
- 1993 ~ 1999서울대학교 박사
- 1991 ~ 1993서울대학교 석사
- 1987 ~ 1991서울대학교 학사
경력
- 2016 ~ Current대구경북과학기술원 (DGIST) / 교수
- 2010 ~ Current대구경북과학기술원 (DGIST) / 부교수
- 2006 ~ 2010미시간주립대 / Assitant professor
- 2000 ~ 2006존스홉킨스대 / 박사후연구원
- 1999 ~ 2000서울대학교 / 연구원
수상실적
- 2019 올해의 교세포 연구상 / 한국뇌신경과학회 신경교세포분과
- 2008 Raymond B. Bauer Award / Michigan parkinson Foundation
Research Interests
Related Keyword
- "Anti-depressant effects of a human telomerase-derived peptide GV1001 in an animal model of chronic restraint stress", Behavioural Brain Research, v.494
- "Neural stem cell-specific deletion of Atg7 alleviates hippocampal dysfunction and neuronal alterations induced by chronic restraint stress", Jeong, Hyeonjeong. (2025-03). Neural stem cell-specific deletion of Atg7 alleviates hippocampal dysfunction and neuronal alterations induced by chronic restraint stress. Molecular Brain, 18(1). doi: 10.1186/s13041-025-01189-8
- "Role of the circadian nuclear receptor REV-ERBα in dorsal raphe serotonin synthesis in mood regulation", Park, Inah. (2024-08). Role of the circadian nuclear receptor REV-ERBα in dorsal raphe serotonin synthesis in mood regulation. Communications Biology, 7(1). doi: 10.1038/s42003-024-06647-y
- "Chronic unpredictable stress induces autophagic death of adult hippocampal neural stem cells", Choe, Seongwon. (2024-06). Chronic unpredictable stress induces autophagic death of adult hippocampal neural stem cells. Molecular Brain, 17(1). doi: 10.1186/s13041-024-01105-6
- "Presenilin 2 N141I Mutation Induces Hyperimmunity by Immune Cell-specific Suppression of REV-ERBα without Altering Central Circadian Rhythm", Nam, Hyeri. (2023-08). Presenilin 2 N141I Mutation Induces Hyperimmunity by Immune Cell-specific Suppression of REV-ERBα without Altering Central Circadian Rhythm. Experimental Neurobiology, 32(4), 259–270. doi: 10.5607/en23012
- "FAIM2 stability controls the balance of cell death and survival in adult neural stem cells by regulating autophagy", Hong, Caroline Jeeyeon. (2017-11-15). FAIM2 stability controls the balance of cell death and survival in adult neural stem cells by regulating autophagy. Society for Neuroscience 2017.
- "TLR2-induced astrocyte MMP9 activation compromises the blood brain barrier and exacerbates collagenase-induced intracerebral hemorrhage", Min, Hyunjung. (2015-07-15). TLR2-induced astrocyte MMP9 activation compromises the blood brain barrier and exacerbates collagenase-induced intracerebral hemorrhage. 12th European Meeting on Glial Cell Function in Health and Disease, 342–343.
연구 뉴스
- 알츠하이머 치료를 위한 새로운 공략법 발견! 기억능력 회복하는“신약 후보물질”활용 기대 2022-04-14
- 중증 뇌질환 연구를 위한 신경세포 전달 마이크로로봇 개발 2020-10-04
- Development of neural cell delivery microrobot for research of severe brain diseases 2020-10-04
- 퇴행성 뇌질환, 암 등 각종 질병과 연관된 오토파지 조절분자 발견 2019-12-18
- Identified the Core Mechanism for Obesity Treatment through Brain Cell Control 2019-09-18
연구분야
미래유망 신기술(6T)
