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SCIEX helps to improve the world we live in by enabling scientists and laboratory analysts to find answers to the complex analytical challenges they face. The company's global leadership and world-class service and support in the capillary electrophoresis and liquid chromatography-mass spectrometry industry have made it a trusted partner to thousands of the scientists and lab analysts worldwide who are focused on basic research, drug discovery and development, food and environmental testing, forensics and clinical research.

Latest SCIEX Content

SCIEX webinar on July 2nd with speaker Dr. Valentina Calabrese

Enhancing MS-Based Omics Analysis in a Model Organism

Mass spectrometry (MS)-based omics technologies have revolutionized our understanding of molecular changes in organisms and are crucial for studying metabolism and related diseases through lipidomics and metabolomics. Despite significant advances, there is still a need for robust analytical methodologies in data acquisition, data processing and annotation.
This webinar will demonstrate how LC-Zeno SWATH DIA outperforms conventional DDA in annotating metabolites and lipids in the model organism Gammarus fossarum. Additionally, the presentation will showcase the effectiveness of electron activated dissociation (EAD) in characterizing lipid species and elucidating metabolite isomers. Finally, the webinar will illustrate how EAD and high-resolution targeted approaches improve structural elucidation and molecular network construction.
Illustration of a human form

Dissecting the Proteome To Understand Disease

Proteomics provides insights into the regulation of biological processes and mechanisms of disease. In this article, we explore approaches scientists are using to find early markers of disease, new drug targets and strategies to overcome resistance to treatments.
App Note / Case Study

Improving Complex Phosphopeptide Characterization

This app note highlights the use of electron-activated dissociation and collision-induced dissociation to enhance the fragmentation of peptides from casein tryptic digests.
mRNA Strand
App Note / Case Study

High-Resolution mRNA Poly(A) Tail Analysis With CGE-UV

This application note describes how capillary gel electrophoresis with UV detection (CGE-UV) can attain single-nucleotide resolution over a broad size range, making it suitable for the development of QC assays.
Abstract human surrounded by metabolites.

How Advances in Metabolomics Are Driving Disease Research

This article takes a look at some of the latest developments and emerging applications in the metabolomics field.
A row of pipettes filled with red liquid

High-Throughput Screening: Advances, Applications and Combined Approaches

In this article, we highlight various high-throughput screening strategies being used to interrogate large libraries of compounds and hear from researchers working to further streamline specific approaches to increase speed and improve quality and accuracy.
 Echo® MS+ system

Redefine Your High-Throughput Analysis with the Echo® MS+ System

Echo® MS+ system- Don't compromise - obtain high-quality data, at speed.
Combining high data quality and high-throughput analysis. When the quantity of samples is your challenge, break through with the Echo® MS+ system.
Accelerating Drug Discovery Through High-Quality Mass Spectrometry

Accelerating Drug Discovery Through High-Quality Mass Spectrometry

This infographic highlights systems that can produce results with the precision and accuracy required for drug discovery.

The SCIEX ZenoTOF 7600 LC-MS/MS system

A New Era of High Resolution Accurate Mass Quantitation - The SCIEX ZenoTOF 7600 LC-MS/MS system

This technical note demonstrates the ability of the SCIEX ZenoTOF 7600 system to sensitively quantify steroids and to qualitatively characterize their structures using electron-activated dissociation (EAD)-based fragmentation.
App Note / Case Study

Sensitive Quantification and Structural Elucidation of Steroids

This app note highlights why liquid chromatography-tandem mass spectrometry (LC-MS/MS), paired with electron-activated dissociation (EAD)-based fragmentation, has emerged as a key technique for steroid analysis.