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Haojie Lu
luhaojie@fudan.edu.cn
Chinese, English
Shanghai
Fudan University
Biomedical Sciences
  • 1996-2001 PhD: Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences
  • 1992-1996 Bachelor's: Xiamen University, Department of Chemistry
  • 2014 Innovation Talent Promotion Plan, Ministry of Science and Technology
  • 2013 Oriental Scholar - Tracking Plan, Shanghai Municipal Education Commission
  • 2011 Shanghai Outstanding Academic Leader, Shanghai Science and Technology Commission
  • 2010 National Outstanding Youth Science Fund, National Natural Science Foundation
  • 2009 Oriental Scholar, Shanghai Municipal Education Commission
  • 2008 Dawn Scholar, Shanghai Municipal Education Commission
  • 2006 New Century Excellent Talents, Ministry of Education
  • 2008.9-present - Fudan University, Department of Chemistry, Institute of Biomedical Sciences - Professor
  • 2004.9-2008.7 - Fudan University, Department of Chemistry - Associate Professor
  • 2003.9-2004.7 - Fudan University, Department of Chemistry - Lecturer
  • 2006.9-2007.9 - University of California, Los Angeles (UCLA) School of Medicine - Visiting Scholar
  • 2001.9-2003.7 - Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences - Postdoctoral Fellow
  • 2014 Second Prize in Natural Science (Second), Ministry of Education
  • 2014 Third Prize in Shanghai Science and Technology (Second), Shanghai Association for Science and Technology
  • 2009 Young Chemist Award, Chinese Chemical Society
  • 2005 First Prize Nomination in Natural Science (Fourth), Ministry of Education
Establishment and application of new technologies and methods in proteomics based on biological mass spectrometry
  • Highly Selective and Large Scale Mass Spectrometric Analysis of 4-Hydroxynonenal Modification via Fluorous Derivatization and Fluorous Solid-Phase Extraction, Yuan, W., Zhang, Y., Xiong, Y., Tao, T., Wang, Y., Yao, J., Zhang, L., Yan, G., Bao, H., Lu, H., 2017
  • Direct digestion of living cells via a gel-based strategy for mass spectrometric analysis, Xiong, Y., Zhang, Y., Yao, J., Yan, G., Lu, H., 2017
  • Fluorinated carbon tag derivatization combined with fluorous solid-phase extraction: a new method for the highly sensitive and selective mass spectrometric analysis of glycans, Li, L., Jiao, J., Cai, Y., Zhang, Y., Lu, H., 2015
  • Positive enrichment of C-terminal peptides using oxazolone chemistry and biotinylation, Liu, M., Fang, C., Pan, X., Jiang, H., Zhang, L., Zhang, L., Zhang, Y., Yang, P., Lu, H., 2015
  • Fishing the PTM proteome with chemical approaches using functional solid phases, Zhang, Y., Zhang, C., Jiang, H., Yang, P., Lu, H., 2015
  • Highly specific enrichment of N-linked glycopeptides based on hydrazide functionalized soluble nanopolymers, Zhang, L., Jiang, H., Yao, J., Wang, Y., Fang, C., Yang, P., Lu, H., 2014
  • An accessible protocol for solid-phase extraction of N-linked glycopeptides through reductive amination by amine-functionalized magnetic nanoparticles, Zhang, Y., Kuang, M., Zhang, L., Yang, P., Lu, H., 2013
  • Approach for identification and quantification of C-terminal peptides: incorporation of isotopic arginine labeling based on oxazolone chemistry, Liu, M., Zhang, L., Zhang, L., Yao, J., Yang, P., Lu, H., 2013
  • Regulation of acetylation restores proteolytic function of diseased myocardium in mouse and human, Wang, D., Fang, C., Zong, N., Liem, D., Cadeiras, M., Scruggs, S., Yu, H., Kim, A., Yang, P., Deng, M., Lu, H., Ping, P., 2013
  • Tailor-Made Magnetic Fe3O4@mTiO2 Microspheres with a Tunable Mesoporous Anatase Shell for Highly Selective and Effective Enrichment of Phosphopeptides, Ma, W., Zhang, Y., Li, L., You, L., Zhang, P., Zhang, Y., Li, J., Yu, M., Guo, J., Lu, H., Wang, C., 2012
  • Surfactant-free synthesis of SnO2@PMMA and TiO2@PMMA core-shell nanobeads designed for peptide/protein enrichment and MALDI-TOF MS analysis, Xiong, H., Guan, X., Jin, L., Shen, W., Lu, H., Xia, Y., 2008
  • Revealing the dynamics of the 20 S proteasome phosphoproteome: a combined CID and electron transfer dissociation approach, Lu, H., Zong, C., Wang, Y., Young, G., Deng, N., Souda, P., Li, X., Whitelegge, J., Drews, O., Yang, P., Ping, P., 2008
  • Mass spectrometry analysis of phosphopeptides after peptide carboxy group derivatization, Xu, Y., Zhang, L., Lu, H., Yang, P., 2008
  • ZnO-poly(methyl methacrylate) nanobeads for enriching and desalting low-abundant proteins followed by directly MALDI-TOF MS analysis, Shen, W., Xiong, H., Xu, Y., Cai, S., Lu, H., Yang, P., 2008
  • CaCO3-poly(methyl methacrylate) nanoparticles for fast enrichment of low-abundance peptides followed by CaCO3-core removal for MALDI-TOF MS analysis, Jia, W., Chen, X., Lu, H., Yang, P., 2006
Proteomics Mass Spectrometry Biomarkers Low-Abundance Proteins Post-Translational Modifications Quantitative Analysis Qualitative Analysis Sample Preparation Disease-Related Proteins High Sensitivity

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