Juan Wang
Chinese, English
Shanghai
Shanghai University
Medicine
  • 2021 - PhD: Fudan University, School of Pharmacy
  • Granted two Chinese invention patents
  • Hosted several research projects including National Natural Science Foundation of China
  • 2021 - Present - Shanghai University, School of Medicine - Lecturer
Skin development, damage repair, aging, and fibrosis
Mechanisms of skin-related disease progression
Mechanisms of hair development
Molecular targeted drug screening and mechanism exploration
  • ABT-199 inhibits Hedgehog pathway by acting as a competitive inhibitor of oxysterol, rather as a BH3 mimetic, Wang J, Zhang Y, Huang WJ, Yang J, Tang WG, Huang TM, Tan W, 2021
  • PGE2-JNK signaling axis non-canonically promotes Gli activation by protecting Gli2 from ubiquitin-proteasomal degradation, Yang J, Wang J, Liu Y, Zhang Y, et al., 2021
  • IL-17 signaling in skin repair: safeguarding metabolic adaptation of wound epithelial cells, Wang J, Ding XL, 2022
  • The regulation of skin homeostasis, repair and the pathogenesis of skin diseases by spatiotemporal activation of epidermal mTOR signaling, Wang J, Cui BP, Chen ZJ, Ding XL, 2022
  • Role of mTOR Signaling Cascade in Epidermal Morphogenesis and Skin Barrier Formation, Wang J, Eming SA, Ding XL, 2022
  • ABT-737 suppresses aberrant Hedgehog pathway and overcomes resistance to smoothened antagonists by blocking Gli, Huang WJ, Li H, Tan WF, Wang J, 2022
  • Discovery of Novel Macrocyclic Hedgehog Pathway Inhibitors Acting by Suppressing the Gli-Mediated Transcription, Liu G, Huang W, Wang J, Liu X, Yang J, Zhang Y, et al., 2017
Skin Development Damage Repair Skin Aging Fibrosis Disease Mechanisms Skin Diseases Hair Growth Drug Screening Molecular Targets Mechanism Exploration

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