Poster Hall Proteomics

Poster Hall Proteomics and PASEF

Poster Hall Proteomics and PASEF

Download the posters below to learn more about the TIMS and PASEF technologies on the timsTOF Pro. Learn how TIMS and PASEF yield true CCS values and how they improve sensitivity, specificity and depth of coverage for proteomics as well as metabolomics, lipidomics, HCP, biopharma workflows.

Poster Hall Proteomics and PASEF

HUPO

Poster 2020:SpatialOMx® utilizing MALDI-2 technology adds tissue context to traditional Omics data for in-depth investigation of regional cellular processes

Poster 2020:Glycopeptide profiling in a trapped ion mobility quadrupole time-of-flight mass spectrometer (timsTOF Pro)

Poster 2020:PASEF-DDA enables deep coverage single-shot phosphoproteomics and ion mobility-based elucidaton of phosphosite isomers

Poster 2020:High throughput quantitative plasma proteomics

Poster 2020:PASEF-PRM LIVE on the timsTOF Pro

Poster 2020:Benefits of Collisional Cross Section Assisted Precursor Selection (caps-PASEF) for Cross-linking Mass Spectrometry (XL-MS)

Poster 2020:High resolution acquisition on TIMS-QTOF for multiplexed proteomics

Poster 2020:High throughput proteomics Application of dia-PASEF and Evosep One for short gradients

Poster 2020:dia-PASEF: Bottom-up proteomics with near optimal ion usage

Poster 2020:A supervised learning approach to select the collision energy maximizing peptide fragmentation in ion mobility-mass spectrometry

Poster 2020:High-precision ion mobility calibration for dia-PASEF analysis increases proteome coverage for high throughput 4D-Proteomics

Poster 2020:MALDI guided SpatialOMx® on a timsTOF fleX uncovers proteomic profiles of breast cancer subpopulations

Poster 2019:Turnover optimized short nanoLC gradients on a tims equipped QTOF for high throughput and deep proteome measurements

Poster 2019:Intact glycopeptide analysis by trapped ion mobility tandem mass spectrometry

Poster 2019:Characteristics of MALDI-imaging on a new dual ion source QTOF with TIMS separation

Poster 2019:Evaluation of a tims-Q-TOF instrument for targeted proteomics

Poster 2019:Establishing a Rapid, Sensitive QC protocol Utilizing Trapped Ion Mobility Mass Spectrometry and Parallel Accumulation Serial Fragmentation

Poster 2019:diaPASEF: toward the ideal mass analyzer with data-independent acquisition and parallel accumulation – serial fragmentation

Poster 2019:High throughput plasma proteomics with PASEF and 4D feature alignment

Poster 2019:分析使用QT从HEK293T细胞组蛋白OF with Trapped Ion Mobility and PASEF Workflows

Poster 2018:Ion Mobility High Resolution QTOF MS - Impact of PASEF on detection of posttranslational modifications

Poster 2018:Toward the ideal mass analyzer with data-independent acquisition and parallel accumulation - serial fragmentation (diaPASEF)

Poster 2018:CCSPredict: Using a Machine Learning Approach for higher Confidence in Lipid Identification

Poster 2018:High Sensitivity Phosphoproteomics using PASEF on a TIMS-QTOF mass spectrometer

ASMS

Poster 2020:Deeper proteome coverage of musculoskeletal samples

Poster 2020:High-precision ion mobility calibration greatly improves diaPASEF analysis

Poster 2020:PASEF-DDA enables deep coverage single-shot phosphoproteomics and ion mobility-based elucidation of phosphosite isomers

Poster 2020:Streamlined sample processing coupled to PASEF strategy for in-depth proteome quantification

Poster 2020:"TimsPy": access timsTOF Pro data easily from Python

Poster 2020:New PRM-PASEF for highly multiplexed targeted acquisition in clinical samples

Poster 2020:Comparison of different processing pipelines for diaPASEF data

Poster 2020:Characterization of single-shot plasma proteomics performance using the PASEF method and systematic investigation into the quantitative proteome depth

Poster 2020:PASEF for sensitive shotgun proteomics: toward single cell analysis

Poster 2020:Deep Profiling of Tyrosine Phosphorylation in Gastric Cancer Cells

Poster 2020:PASEF and Bolt: enabling comprehensive analysis via high MS/MS acquisition speed and MS/MS sequencing through vast protein databases in minutes

Poster 2020:Deep, reproducible and high-throughput FFPE analyses: moving toward large-scale clinical omics applications

Poster 2020:PASER: Parallel Database Search Engine in Real-Time

Poster 2020:Ion Mobility Mass Spectrometry of Glyco- and Phospho-Peptides

Poster 2020:Reducing compression effects and expanding the multiplex capabilities on a trapped ion mobility Q-TOF

Poster 2020:Proteomic Analysis of BALF using the PASEF method: toward Lung Cancer Biomarker Discovery with 1D LC separation

Poster 2020:Trapped Ion Mobility Spectrometry and PASEF Enables In-depth Characterization of Protein Ubiquitination from Human Cells

Poster 2020:Highly Sensitivity Lysine Acetylation Profiling with Trapped Ion Mobility Spectrometry and PASEF

Poster 2020:Enhanced identification of bioactive peptides in meat hydrolysates by 4D peptidomics

Poster 2020:Simplified high-throughput methods for deep and targeted proteome analysis on the timsTOF Pro

Poster 2020:High throughput proteomics - Application of diaPASEF for short gradients

Poster 2020:Parallel accumulation – serial fragmentation combined with data-independent acquisition (diaPASEF): Bottom-up proteomics with near optimal ion usage

Poster 2020:Skyline Support for Proteome-wide Data Analysis of Bruker timsTOF diaPASEF Acquisition

Poster 2019:Effects of in-source supercharging and subcharging for glycopeptide analysis in a trapped ion mobility quadrupole time-of-flight mass spectrometer

Poster 2019:Fast nanoLC separations for high throughput body fluid analysis with a TIMS equipped QTOF and 4D feature alignment

Poster 2019:Short nanoLC gradients optimize throughput on a tims equipped QTOF for deep proteome measurements

Poster 2019:High Sensitivity PTM Characterization in Cell Lysates Using Trapped Ion Mobility

Poster 2019:Analysis of Histones from HEK293 Cells using a QTOF with Trapped Ion Mobility and PASEF Workflows

Poster 2019:Proteome quality control addressing qualitative and quantitative needs for trapped ion mobility spectrometry and parallel accumulation serial fragmentation

Poster 2019:Investigating Phytophthora methylation using Trapped Ion Mobility Spectrometry Mass Spectrometry

Poster 2019:Identification and Quantitation of Phosphopeptide Positional Isomers using Trapped Ion Mobility Spectrometry and PASEF

Poster 2019:Comparison of targeted proteomics approaches on a TIMS-Q-TOF

Poster 2019:Ion mobility enhanced matching between LC-MS runs improves identification and quantification in MaxQuant

Poster 2019:一个systemati法分析神经组织磷酸化蛋白质组c comparison of Fusion Lumos and timsTOF Pro data

Poster 2018:Generation of a Collisional Cross Section Library for Plant Metabolomics using Trapped Ion Mobility Spectrometry (TIMS)

Poster 2018:Routine Analysis of Host Cell Proteins in Antibody Preparations using PASEF

Poster 2018:TMT Quantification for Shotgun Proteomics on a Trapped-Ion-Mobility quadrupole-Time-Of-Flight mass spectrometer (TIMS-QTOF) powered by Parallel-Accumulation and Serial-Fragmentation (PASEF)

Poster 2018:Applying Trapped Ion Mobility Separation (TIMS) in combination with Parallel Accumulation Serial Fragmentation (PASEF) for analysis of lipidomics samples

Poster 2018:The PASEF method on a TIMS-QTOF mass spectrometer for High Sensitivity Phosphoproteomics

Poster 2018:Evaluation of TIMS MS and MS/MS data for targeted proteomics

Poster 2018:Maximized throughput and analytical depth for shotgun proteomics using PASEF on a TIMS equipped QTOF

Poster 2018:Evaluation of a timsTOF PRO UHR-Q-TOF bottom-up proteomics platform for Proteoform Profiling and Top-Down approaches

Poster 2018:PASEF on a TIMS-QTOF for reproducible, sensitive and highthroughput shotgun proteomics

Poster 2018:High speed, high sensitivity and high reproducible and accurate label-free quantification using the PASEF method on a TIMS-QTOF

Poster 2018:timsTOF Pro and PASEF Multiplying Sequencing Speed and Sensitivity in Mass Spectrometry-based Proteomics

Poster 2018:Trapped Ion Mobility Spectrometry and PASEF for Enhanced Observation of Chemically Crosslinked Peptides

Poster 2018:Rapid Isobaric Peptide Classification by Trapped Ion Mobility Spectrometry

Poster 2018:Deep proteome mining of FFPE tissue with PASEF Technology

Poster 2018:PEAKS™ Software for the processing of timsTOF Pro PASEF data: identification and label-free quantitation

Poster 2018:Data-dependent auto-MSMS 3D-precursor selection for bottom-up proteomics with Parallel-Accumulation SErialFragmentation (PASEF) on a Trapped-Ion-Mobility quadrupole-Time-Of-Flight mass spectrometer (TIMS-QTOF)

Poster 2018:Application of PASEF MS/MS scans to monoclonal antibody peptide mapping

For Research Use Only. Not for use in clinical diagnostic procedures.