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LCMS webinars focusing on LC/MS - page 71

Intelligent LC/MS tools for quantitation and characterization of biopharmaceuticals

Intelligent LC/MS tools for quantitation and characterization of biopharmaceuticals

We will present end-to-end solutions for biopharma lab workflows with a focus on multiple mass spectrometry- based analysis techniques, ranging from SQ, TQ, TOF and Q-TOF.
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Already taken place Tu, 7.11.2023
Wiley
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Intelligent LC/MS tools for quantitation and characterization of biopharmaceuticals
SCIEX Biopharma meeting (Day 1) - Gene therapy, vaccines and oligonucleotides

SCIEX Biopharma meeting (Day 1) - Gene therapy, vaccines and oligonucleotides

Gene therapy, vaccines and oligonucleotides. The technologies presented will be CE and LC-MS.
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Already taken place Tu, 7.11.2023
SCIEX
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SCIEX Biopharma meeting (Day 1) - Gene therapy, vaccines and oligonucleotides
Biomarkers for liver cancer using N-Glycan MALDI Imaging

Biomarkers for liver cancer using N-Glycan MALDI Imaging

The principles of MALDI Imaging and how it is used to analyze N-linked glycans. Sample preparation and data acquisition techniques. Multiomic and multimodal data analysis strategies.
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Already taken place Th, 2.11.2023
Bruker
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Biomarkers for liver cancer using N-Glycan MALDI Imaging
Discover how Bristol-Myers Squibb uses electron-activated dissociation (EAD) to confidently identify drug metabolites and localize site of metabolism.

Discover how Bristol-Myers Squibb uses electron-activated dissociation (EAD) to confidently identify drug metabolites and localize site of metabolism.

Learn how EAD can be advantageous in confident identification and localization of drug metabolites.
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Already taken place Th, 2.11.2023
SCIEX
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Discover how Bristol-Myers Squibb uses electron-activated dissociation (EAD) to confidently identify drug metabolites and localize site of metabolism.
Redefining Hiplexed Spatial Multiomics

Redefining Hiplexed Spatial Multiomics

How Bruker’s new MALDI HiPLEX-IHC Imaging workflow delivers greater speed and field-of-view for multiplexed protein imaging in tissue.
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Already taken place Th, 2.11.2023
Bruker
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Redefining Hiplexed Spatial Multiomics
Trace-level Targeted Analysis for PFAS: The Challenges, and Best Practices for Success

Trace-level Targeted Analysis for PFAS: The Challenges, and Best Practices for Success

Advances in LC-MS/MS technology with enhancements in negative ion sensitivity from the Xevo TQ Absolute Mass Spectrometer.
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Already taken place We, 1.11.2023
Waters Corporation
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Trace-level Targeted Analysis for PFAS: The Challenges, and Best Practices for Success
Benefits of Adopting Routine Mass detection in Traditional LC-UV Workflows for the Analysis of Synthetic Oligonucleotides

Benefits of Adopting Routine Mass detection in Traditional LC-UV Workflows for the Analysis of Synthetic Oligonucleotides

Join us for this demonstration of a typical oligonucleotide impurities workflow using the ACQUITY Premier system with the ACQUITY QDa Mass Detector.
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Already taken place We, 1.11.2023
Waters Corporation
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Benefits of Adopting Routine Mass detection in Traditional LC-UV Workflows for the Analysis of Synthetic Oligonucleotides
Building an MS Imaging Facility

Building an MS Imaging Facility

We will discuss the steps necessary to set up an MS imaging core lab and answer questions such as: “who runs this type of lab?” and “who are the main customers?”.
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Already taken place Tu, 31.10.2023
Waters Corporation
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Building an MS Imaging Facility
Single-cell proteomics on the Orbitrap Astral MS for the exploration of cell heterogeneity

Single-cell proteomics on the Orbitrap Astral MS for the exploration of cell heterogeneity

This webcast will present recently-developed approaches in single-cell proteomics including the novel Orbitrap Astral MS, and how to use both TMTPro-labeled and label-free approaches.
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Already taken place Fr, 27.10.2023
Thermo Fisher Scientific
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Single-cell proteomics on the Orbitrap Astral MS for the exploration of cell heterogeneity
Push low-flow separations for LC-MS proteomic workflows further with integrated column-emitter and innovative micro-pillar array column (µPAC) technology

Push low-flow separations for LC-MS proteomic workflows further with integrated column-emitter and innovative micro-pillar array column (µPAC) technology

Thermo Scientific low-flow chromatography (capLC/NanoLC) columns and demonstrate how they are specifically designed to push nanoLC separations further.
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Already taken place Th, 26.10.2023
Thermo Fisher Scientific
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Push low-flow separations for LC-MS proteomic workflows further with integrated column-emitter and innovative micro-pillar array column (µPAC) technology
 

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