Thermo Fisher Scientific’s Olink platform selected for world’s largest human proteome study
UK Biobank Pharma Proteomics Project aims to create a comprehensive map of disease-associated protein levels in the human body to advance biomarker discovery
UK Biobank Pharma Proteomics Project aims to create a comprehensive map of disease-associated protein levels in the human body to advance biomarker discovery
Discover the latest tools and techniques to expand your research capacity with expert-led presentations on in situ material testing, plastic materials, and proteomics
Prolab precision pumps, autosamplers, and nano-flow to cap-LC UHPLC systems to further enhance performance and robustness of timsTOF 4D proteomics and metabolomics solutions
Discover the latest tools and techniques to expand your research capacity with expert-led presentations on spectroscopy, proteomics sample preparation, efficient, cost-effective, and value-based healthcare, and more
Join experts as they discuss the significant hurdles in spatial proteomics and how innovative tools such as the EVOS S1000 Spatial Imaging System are set to redefine research capabilities in this rapidly evolving field
Advancements to include CosMx® Whole Transcriptome Panel; enhanced technology engine to power CellScape™ for spatial proteomics; expansion to 1000-plex protein assay on GeoMx® DSP; and launch of PaintScape™, a revolutionary platform enabling direct visualization of the 3D genome
Abcam's new offering enables proteomic studies by providing
Discover the latest technologies and solutions in proteome analysis at HUPO 2018
Based on ESCAPE™ RNA sequencing technology, the latest proteogenomics assay is designed to characterize both RNA and protein expression levels across thousands of single CAR T cells
New sample preparation tool promises to provide higher extraction of proteins from cells and tissues with minimal cross-contamination
Proteona and AI Singapore partner to improve cell therapies and IO treatments through single cell analysis of tumors and CAR T cells
Learn how the trap-and-elute NanoLC-MS system enables high-throughput, highly sensitive proteomic separation that overcomes small volume limitations of nanocolumns