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Huijuan Liu
liumiaomiao333@163.com
Chinese, English
Shanghai
Shanghai Jiao Tong University
Bio-X Research Institute
  • 1996-2000 Bachelor: Shaanxi Normal University
  • 2003-2006 Master: Henan Normal University
  • 2007-2010 Doctorate: Shandong University
  • 2010-2012 Postdoctoral: Shanghai Jiao Tong University
Regulation mechanisms of mesenchymal stem cell self-renewal, differentiation, and aging
DNA damage response, aging, and tumorigenesis
  • c-Abl promotes osteoblast expansion by differentially regulating canonical and non-canonical BMP pathways and p16(INK4a) expression., Kua HY, Liu Huijuan, Leong WF, Li L, Jia D, Ma G, Hu Y, Wang X, Chau JF, Chen YG, Mishina Y, He L, Goff SP, Li B., 2012
  • p53 regulates neural stem cell proliferation and differentiation via BMP-Smad1 signaling and Id1., Liu Huijuan, Jia D, Li A, Chau J, He D, Ruan X, Liu F, Li J, He L, Li B., 2013
  • p53 control of bone remodeling., Liu Huijuan, Li B., 2010
  • Effects of granulocyte colony-stimulating factor on the proliferation and cell-fate specification of neural stem cells., Liu Huijuan, Jia D, Fu J, Zhao S, He G, Ling EA, Gao J, Hao A., 2009
  • S6K1 is a multifaceted regulator of Mdm2 that connects nutrient status and DNA damage response., Lai KP, Leong WF, Chau JF, Jia D, Zeng L, Liu Huijuan, He L, Hao A, Zhang H, Meek D, Velagapudi C, Habib SL, Li B., 2010
  • Atypical Atm-p53 genetic interaction in osteogenesis is mediated by Smad1 signaling., Ma G, Li L, Hu Y, Chau JF, Au BJ, Jia D, Liu Huijuan, Yeh J, He L, Hao A, Li B., 2012
  • Folic acid supplementation affects apoptosis and differentiation of embryonic neural stem cells exposed to high glucose., Jia DY, Liu huijuan, Wang FW, Liu SM, Ling EA, Liu K, Hao AJ., 2008
Stem Cells Self-Renewal Differentiation Aging Regulation Mesenchymal Dna Damage Tumorigenesis Response Mechanisms

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