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Wang Yizheng
yzwang@ion.ac.cn
English, Chinese
Shanghai
Fudan University
Brain Science Research Institute
  • 1991 - PhD: Laval University, Canada
  • Achievement: National Outstanding Youth Science Fund, Sanofi-Aventis China Neuroscience Outstanding Scholar Award, Chinese Academy of Sciences Outstanding Scientific Achievement Award, Chinese Academy of Sciences Excellent Graduate Student Supervisor Award
  • 1991-1994 - Case Western Reserve University - Postdoctoral Research
  • 2001-Present - Fudan University - Professor
  • 2001-Present - Fudan University Affiliated Huashan Hospital - Director of National Clinical Research Center for Geriatric Diseases
  • 2001-Present - Military Medical Research Institute - Distinguished Researcher
  • National Outstanding Youth Science Fund
  • Sanofi-Aventis China Neuroscience Outstanding Scholar Award
  • Chinese Academy of Sciences Outstanding Scientific Achievement Award
  • Chinese Academy of Sciences Excellent Graduate Student Supervisor Award
Neural Regulation and Neurological Diseases
Neurobiology
  • PKCα phosphorylation of GLT-1 at Ser562/563 induces glutamate excitotoxicity in ischemia in mice., Wang Y, Du J, Lu S, Li X, Chen Y, Yuan C, Hou ST, Wang Y, 2022
  • Smoothened is a therapeutic target for reducing glutamate toxicity in ischemic stroke., Wang Y, Lu S, Chen Y, Li L, Li X, Qu Z, Huang J, Fan L, Yuan C, Song N, Zhang J, Xu W, Yang S, Wang Y, 2021
  • STN-ANT plasticity is crucial for the motor control in Parkinson's disease model., Zhang H, Zhang C, Qu Z, Li B, Su Y, Li X, Gao Y, Wang Y, 2021
  • TRPC6 specifically interacts with APP to inhibit its cleavage by γ-secretase and reduce Aβ production., Wang J, Lu R, Yang J, Li H, He Z, Jing N, Wang X, Wang Y, 2015
  • Essential role of TRPC channels in the guidance of nerve growth cones by brain-derived neurotrophic factor., Li Y, Jia YC, Cui K, Li N, Zheng ZY, Wang YZ, Yuan XB, 2005
Neural Regulation Neurological Diseases Neurobiology Ion Channels Neurodevelopment Neuroplasticity Trpc6 Ischemic Brain Injury Aβ Amyloid Bio-Inspired Computing

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