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Isobaric labeling
Comparative Evaluation of Two Isobaric Labeling Tags, Diart and Itraq † ‡ § † ‡ ‡ ‡ ⊥ ¶ ⊥ ¶ Zhen Chen, , , Quanhui Wang, , Liang Lin, Qi Tang, James L
Comparison of LFQ and IPTL for Protein Identification and Relative
Isobaric Matching Between Runs and Novel PSM-Level Normalization in Maxquant Strongly Improve Reporter Ion-Based Quantification
TMT Quantitation Accuracy on the Orbitrap Eclipse Tribrid Mass Spectrometer
Efficient Interpretation of Tandem Mass Tags in Top-Down Proteomics
A Versatile Isobaric Tag Enables Proteome Quantification in Data
Bioinformatics Methods for Mass Spectrometry-Based Proteomics Data Analysis
Stoichiometric Thiol Redox Proteomics for Quantifying Cellular Responses to Perturbations
Isobaric Labeling-Based Relative Quantification in Shotgun Proteomics
HOTMAQ: a Multiplexed Absolute Quantification Method for Targeted Proteomics
EASI-Tag Enables Accurate Multiplexed and Interference-Free MS2- Based Proteome Quantification
Itraq Labeling Is Superior to Mtraq for Quantitative Global Proteomics and Phosphoproteomics*□S
Evaluation of Differential Peptide Loading on Tandem Mass Tag-Based Proteomic and Phosphoproteomic Data Quality
Current Pharmaceutical Design, 2019, 25, 1536-1553 REVIEW ARTICLE
Emerging Mass Spectrometry-Based Proteomics Methodologies for Novel Biomedical Applications
Single-Cell Protein Analysis by Mass-Spectrometry Nikolai Slavov1,2,3
Aliquoting of Isobaric Labeling Reagents for Low Concentration and Single Cell Proteomics Samples Yuting Yuan and Benjamin C
Trends in the Design of New Isobaric Labeling Reagents for Quantitative Proteomics
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Comparative Proteome Signatures of Ultra-Low Input Samples by TMT Multiplexed Data-Independent Acquisition
Multi-Q 2 Software Facilitates Isobaric Labeling Quantitation Analysis With
Affinity Mass Spectrometry: Strategies for Proteome Profiling Joseph Zaia March 28, 2017 1
Quantitative Proteomics Handbook
Comparison of Label and Label-Free Quantitative Liquid
Standardization Approaches in Absolute Quantitative Proteomics with Mass Spectrometry
2021 Johnson Wuhr Jpr.Pdf
Standardization Approaches in Absolute Quantitative Proteomics with Mass Spectrometry
Gel-Free Proteomic Methodologies to Study Reversible Cysteine Oxidation and Irreversible Protein Carbonyl Formation
Limits for Resolving Tandem Mass Tag Reporter Ions with Identical Integer Mass Using Phase Constrained Spectrum Deconvolution