• 基本信息
    导师姓名: 张慧慧 学科代码: 100100
    性别: 学科名称: 基础医学
    培养单位: 基础医学院 三级学科
    导师类型: 硕士生导师 专业领域名称:
    联系方式: huizha@shsmu.edu.cn 上海市黄浦区重庆南路280号上海交通大学医学院西5号楼1004 专业领域代码:
    邮编: 200025 邮箱地址: huizha@shsmu.edu.cn
  • 研究方向 (点击浏览详细信息)
  • 社会任职
  • 科研项目
    项目编号项目名称课题来源起止年月批准经费承担职责
    32070885系统性红斑狼疮中自身反应性CD11c+B细胞的分化途径及其调控机制研究国家自然科学基金面上项目 2021-01~2024-12 58万元  课题负责人
    31600704谷氧还蛋白2在B细胞发育中的作用与机制国家自然科学基金青年项目 2017-01~2019-12 20万元  课题负责人
    2015上海市高校特聘教授(青年)东方学者计划上海市教委 2015-03~2018-03 60万元  课题负责人
    15ZR1436400Fc-huCD40L融合蛋白的抗肿瘤活性及其副作用的研究上海市科委自然科学基金面上项目 2015-01~2018-12 10万元  课题负责人
  • 学术论文
    作者论文标题期刊名出版年卷期页码
    Zhao R,, Zhang Y, Li D, Huang C, Li F.  In vivo Screen Identifies Zdhhc2 as a Critical Regulator of Germinal Center B Cell Differentiation.  Front Immunol.  2020  10;11:1025. doi: 10.3389/fimmu.2020.01025. eCollection 2020. 
    Li M, Lazorchak A, Ouyang X,, Liu H, Arojo O, Yan L, Jin J, Han Y, Qu G, Xu X, Liu X, Zhang W, Wang Q, Liu D, Li F, Su B.  Sin1/mTORC2 regulates B cell growth and metabolism via mTORC1 and Myc activation  Cellular & Molecular Immunology  2019  16(9):757-769. 
    Xiaobo Liu, Yingjie Zhao, Huan Shi, Yan Zhang, Xueying Yin, Mingdong Liu,, Yongning He, Boxun Lu, Tengchuan Jin & Fubin Li.  Human immunoglobulin G hinge regulates agonistic anti-CD40 immunostimulatory and antitumor activities through biophysical flexibility.  Nature Communications  2019  4206 
    Zhang W,, Liu S, Xia F, Kang Z, Zhang Y, Liu Y, Xiao H, Chen L, Huang C, Shen N, Xu H, Li F.  Excessive CD11c+Tbet+ B cells promote aberrant TFH differentiation and affinity-based germinal center selection in lupus.  PNAS  2019  116 (37) 18550-18560. 
    , Du Y, Zhang X, Lu J, and Holmgren A.  Glutaredoxin2 Reduces both Thioredoxin2 and Thioredoxin1 and Protects Cells from Apoptosis Induced by Auranofin and 4-Hydroxynonenal.  Antioxid. Redox Signal.  2014  21,669-81  
    Du Y,, Montano S, Hegestam J, Ekberg N, Holmgren A, Brismar K, and Ungerstedt J.  Plasma glutaredoxin activity in healthy subjects and patients with abnormal glucose levels or overt type 2 diabetes.  Acta diabetologica  2014  51,225-32  
    Du Y,, Zhang X, Lu J, and Holmgren A.   Thioredoxin 1 is inactivated due to oxidation induced by peroxiredoxin under oxidative stress and reactivated by glutaredoxin system.  J. Biol. Chem.  2013  288, 32241-7  
    Du Y,, Lu J, and Holmgren A.  Glutathione and glutaredoxin act as a backup of human thioredoxin reductase 1 to reduce thioredoxin 1 preventing cell death by aurothioglucose.  J. Biol. Chem.  2012  287, 38210-9 
    Ungerstedt J, Du Y,, Nair D, and Holmgren A.  In vivo redox state of human thioredoxin and redox shift by the histone deacetylase inhibitor suberoylanilide hydroxamic acid (SAHA).  Free Radic. Biol. Med.  2012  53, 2002-7 
    , and Zhong L.  Opposing regulation of histamine-induced calcium signaling by sodium selenite and ebselen via alterations of thiol redox status.  Eur. J. Pharmacol.  2010  626, 276-82  
    , Cao D, Cui W, Ji M, Qian X, and Zhong L.  Molecular bases of thioredoxin and thioredoxin reductase-mediated prooxidant actions of (-)-epigallocatechin-3-gallate.  Free Radic. Biol. Med.   2010  49, 2010-8 
    Cao D, Zhang Y,, Zhong L, and Qian X.  Systematic Characterization of the Covalent Interactions between (-)-Epigallocatechin Gallate and Peptides at Physiological Conditions by Mass Spectrometry.  Rapid Commun. Mass Spectrom.  2009  23, 1147-57