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Lin Wang
Basic Medical Sciences
Wuhan University
Hubei
Language: Chinese, English
Contact
Embryo Implantation Molecular Mechanisms Adverse Intrauterine Environment Embryo Development Reproductive Biology Gene Regulation Cellular Processes Developmental Biology Molecular Biology Cell Biology
Areas of Focus
  • Reproductive Biology
Work Experience
  • 1988-1994: Resident Physician at Wuhan Ninth Hospital
  • 1994-1999: Assistant, Lecturer at Wuhan University Department of Histology and Embryology
  • 1999-2010: Associate Professor at Wuhan University Department of Histology and Embryology
  • 2011-present: Professor, Doctoral Supervisor at Wuhan University Department of Histology and Embryology
Academic Background & Achievements
  • 1983-1988: Bachelor's Degree from Wuhan University Medical College (formerly Hubei Medical College)
  • 1996-1998: Master's Degree from Wuhan University Medical College (formerly Hubei Medical University)
  • 2002-2006: PhD from Wuhan University
  • 2008-2010: Postdoctoral Researcher, Visiting Scholar at University of Southern California
  • 2016: Exchange Study at University of Chicago
Publications
  • ARID1A-dependent permissive chromatin accessibility licenses estrogen-receptor signaling to regulate circadian rhythms genes in endometrial cancer, Lin Wang, 2020
  • Nicotine Reduces Human Brain Microvascular Endothelial Cell Response to Escherichia coli K1 Infection by Inhibiting Autophagy, Lin Wang, 2020
  • The combination of symphysis-fundal height and abdominal circumference as a novel predictor of macrosomia in GDM and normal pregnancy, Lin Wang, 2020
  • Silencing DAPK3 blocks the autophagosome-lysosome fusion by mediating SNAP29 in trophoblast cells under high glucose treatment, Lin Wang, 2020
  • CD48 and α7 nAChR Synergistically Regulate FimH-mediated E. coli K1 Penetration and Neutrophil Transmigration Across Human Brain Microvascular Endothelial Cells, Lin Wang, 2018
  • Systematic Characterization of Autophagy in Gestational Diabetes Mellitus, Lin Wang, 2017
  • Timosapon B-III exhibits antidepressive activity in a mouse model of postpartum depression by the regulation of inflammatory cytokines, BNDF signaling and synaptic plasticity, Lin Wang, 2017
  • AMPK activation through regulation of oxidative stress repairs high glucose-induced damage in human brain microvascular endothelial cells, Lin Wang, 2020
  • High glucose inhibits the formation of trophoblast cell surface microvilli and its mechanism, Lin Wang, 2020
  • High glucose environment enhances autophagy mediated by beclin2 in villous trophoblast cells, Lin Wang, 2017
  • High glucose induces endoplasmic reticulum stress and apoptosis in trophoblast cells, Lin Wang, 2016
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