Weijun Qian, Ph.D.

Affiliations: 
2002 University of Florida, Gainesville, Gainesville, FL, United States 
Area:
Analytical Chemistry
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"Weijun Qian"
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Robert T. Kennedy grad student 2002 UF Gainesville
 (Dynamic imaging of secretion from pancreatic beta -cells by confocal fluorescence microscopy.)
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Publications

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Martin K, Zhang T, Zhang P, et al. (2020) Carrier-assisted One-pot Sample Preparation for Targeted Proteomics Analysis of Small Numbers of Human Cells. Journal of Visualized Experiments : Jove
Sigdel TK, Piehowski PD, Roy S, et al. (2020) Near-Single-Cell Proteomics Profiling of the Proximal Tubular and Glomerulus of the Normal Human Kidney. Frontiers in Medicine. 7: 499
Zhang T, Gaffrey MJ, Monroe ME, et al. (2020) Block design with common reference samples enables robust large-scale label-free quantitative proteome profiling. Journal of Proteome Research
Shin S, Hong JH, Na Y, et al. (2020) Development of Multiplexed Immuno-N-Terminomics to Reveal the Landscape of Proteolytic Processing in Early Embryogenesis of . Analytical Chemistry
Wang X, Swensen AC, Zhang T, et al. (2020) Accurate Identification of Deamidation and Citrullination from Global Shotgun Proteomics Data Using a Dual-search Delta Score Strategy. Journal of Proteome Research
Zhang T, Gaffrey MJ, Thomas DG, et al. (2020) A proteome-wide assessment of the oxidative stress paradigm for metal and metal-oxide nanomaterials in human macrophages. Nanoimpact. 17
Zhang Y, Ouyang Z, Qian W, et al. (2020) Meta-analysis of peptides to detect protein significance Statistics and Its Interface. 13: 465-474
Piehowski PD, Wang Y, Sanford JA, et al. (2020) Abstract 5125: Evaluation of differential peptide loading on TMT-based proteomic on phosphoproteomic data quality in an AML model Cancer Research. 80: 5125-5125
Dou M, Clair G, Tsai CF, et al. (2019) High-Throughput Single Cell Proteomics Enabled by Multiplex Isobaric Labelling in a Nanodroplet Sample Preparation Platform. Analytical Chemistry
Dou M, Tsai CF, Piehowski PD, et al. (2019) Automated Nanoflow Two-Dimensional Reversed-Phase Liquid Chromatography System Enables In-Depth Proteome and Phosphoproteome Profiling of Nanoscale Samples. Analytical Chemistry
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