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Ruijun Tian

Showing results (81-90 of 145) with videos related to

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Journal of Proteome Research|January 14, 2010
Analysis of the subcellular phosphoproteome using a novel phosphoproteomic reactorHoujiang Zhou, Fred Elisma, Nicholas J Denis, et al.
The Analyst|February 10, 2022
A fully integrated sample preparation strategy for highly sensitive intact glycoproteomicsLijun Yang, Jie Liu, Hua Li, et al.
Cell Systems|May 27, 2026
Digital decoding tissue microenvironment heterogeneity from spatial proteomics through graph-enhanced transfer learningYuan Li, Qian Kong, Zihan Wu, et al.
Analytical Chemistry|June 29, 2026
AutoPELSA: An Automated Sample Preparation System for Proteome-Wide Identification of Target Proteins of Diverse LigandsLianji Xue, Xi Wang, Haiqian Yang, et al.
Electrophoresis|January 20, 2006
Large-pore mesoporous SBA-15 silica particles with submicrometer size as stationary phases for high-speed CEC separationRuijun Tian, Junming Sun, He Zhang, et al.
Proteomics|March 5, 2008
Large-scale phosphoproteome analysis of human liver tissue by enrichment and fractionation of phosphopeptides with strong anion exchange chromatographyGuanghui Han, Mingliang Ye, Houjiang Zhou, et al.
Analytical Chemistry|June 11, 2019
Evolution of Nucleic Acid Aptamers Capable of Specifically Targeting Glioma Stem Cells via Cell-SELEXQiaoyi Wu, Ningqin Lin, Tian Tian, et al.
Analytical Chemistry|June 17, 2020
High-Throughput and Integrated Chemical Proteomic Approach for Profiling Phosphotyrosine Signaling ComplexesQian Kong, Peiwu Huang, Bizhu Chu, et al.
Analytical Chemistry|June 4, 2020
AutoProteome Chip System for Fully Automated and Integrated Proteomics Sample Preparation and Peptide FractionationXue Lu, Zhikun Wang, Yan Gao, et al.
Journal of Chromatography. A|October 22, 2008
Selective enrichment of endogenous peptides by chemically modified porous nanoparticles for peptidome analysisRuijun Tian, Lianbing Ren, Huaijun Ma, et al.
Pageof 15

Showing results (81-90 of 145) with videos related to

Sort By:
Pageof 15
Journal of Proteome Research|January 14, 2010
Analysis of the subcellular phosphoproteome using a novel phosphoproteomic reactorHoujiang Zhou, Fred Elisma, Nicholas J Denis, et al.
The Analyst|February 10, 2022
A fully integrated sample preparation strategy for highly sensitive intact glycoproteomicsLijun Yang, Jie Liu, Hua Li, et al.
Cell Systems|May 27, 2026
Digital decoding tissue microenvironment heterogeneity from spatial proteomics through graph-enhanced transfer learningYuan Li, Qian Kong, Zihan Wu, et al.
Analytical Chemistry|June 29, 2026
AutoPELSA: An Automated Sample Preparation System for Proteome-Wide Identification of Target Proteins of Diverse LigandsLianji Xue, Xi Wang, Haiqian Yang, et al.
Electrophoresis|January 20, 2006
Large-pore mesoporous SBA-15 silica particles with submicrometer size as stationary phases for high-speed CEC separationRuijun Tian, Junming Sun, He Zhang, et al.
Proteomics|March 5, 2008
Large-scale phosphoproteome analysis of human liver tissue by enrichment and fractionation of phosphopeptides with strong anion exchange chromatographyGuanghui Han, Mingliang Ye, Houjiang Zhou, et al.
Analytical Chemistry|June 11, 2019
Evolution of Nucleic Acid Aptamers Capable of Specifically Targeting Glioma Stem Cells via Cell-SELEXQiaoyi Wu, Ningqin Lin, Tian Tian, et al.
Analytical Chemistry|June 17, 2020
High-Throughput and Integrated Chemical Proteomic Approach for Profiling Phosphotyrosine Signaling ComplexesQian Kong, Peiwu Huang, Bizhu Chu, et al.
Analytical Chemistry|June 4, 2020
AutoProteome Chip System for Fully Automated and Integrated Proteomics Sample Preparation and Peptide FractionationXue Lu, Zhikun Wang, Yan Gao, et al.
Journal of Chromatography. A|October 22, 2008
Selective enrichment of endogenous peptides by chemically modified porous nanoparticles for peptidome analysisRuijun Tian, Lianbing Ren, Huaijun Ma, et al.
Pageof 15