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  • 교수진
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교수진

교수

학력

  • 2017 연세대학교 생명공학과, 박사
  • 2011 연세대학교 생명공학과, 학사

약력/경력

  • 2021- 현재 성균관대학교 지능형정밀헬스케어융합전공, 조교수
  • 2021- 현재 성균관대학교 글로벌바이오메디컬공학과, 겸임교수
  • 2018-2021 메사추세츠공과대학 (MIT), 박사후연구원
  • 2017-2018 연세대학교, 박사후연구원

관심분야

  • 조직공학, 재생의학, 생체재료

논문

  • Lee JS et al. In situ self-crosslinkable, long-term stable hyaluronic acid filler by gallol autoxidation for tissue augmentation and wrinkle correction. Chemistry of Materials 2019:31(23):9614-9624
  • Lee JS et al. Tissue bead: Tissue-specific extracellular matrix microbeads to potentiate reprogrammed cell-based therapy. Advanced Functional Materials 2019:29(31):1807803
  • Jin Y, Lee JS et al. Three-dimensional brain-like microenvironments facilitate the direct reprogramming of fibroblasts into therapeutic neurons. Nature Biomedical Engineering 2018:2:522-539
  • Cho JH, Lee JS et al. Ascidian-inspired fast-forming hydrogel system for versatile biomedical applications: pyrogallol chemistry for dual modes of crosslinking mechanism. Advanced Functional Materials 2018:28(6):1705244
  • Lee JS et al. Bio-artificial tongue with tongue extracellular matrix and primary taste cells. Biomaterials 2017:151:24-37
  • Lee JS et al. Plant flavonoid-mediated multifunctional surface modification chemistry: catechin coating for enhanced osteogenesis of human stem cells. Chemistry of Materials 2017:29(10):4375-4384
  • Jin Y, Lee JS et al. Bioengineered extracellular membranous nanovesicles for efficient small-interfering RNA delivery: Versatile platforms for stem cell engineering and in vivo delivery. Advanced Functional Materials 2016:26(32):5804-5817
  • Lee JS et al. Surface chemistry of vitamin: Pyridoxal 5’- phosphate (Vitamin B6) as a multifunctional compound for surface functionalization. Advanced Functional Materials. Advanced Functional Materials 2015:25(30):4754-4760
  • Shin J, Lee JS et al. Tissue adhesive catechol-modified hyaluronic acid hydrogel for effective, minimally-invasive cell therapy. Advanced Functional Materials 2015:25(25):3814-3824
  • Seo J, Lee JS et al. Switchable water-adhesive, superhydrophobic palladium-layered silicon nanowires potentiate the angiogenic efficacy of human stem cell spheroids. Advanced Materials 2014;35(37):9811-9823