Understanding the Secrets of Cancer Hidden in Protein Sequences

Delve into the world of cancer research with Quantum-Si’s next-gen protein sequencing technology. Explore proteins with a crucial role in cancer progression and immune evasion. Our advanced platform provides detailed insights into the molecular landscape of cancer-related proteins, shedding light on mutations and alterations relevant to therapeutic development. Download now to unlock the potential of […]

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Joining Forces: Next-Gen Protein Sequencing and Mass Spectrometry to Power PTM Analysis

Quantum-Si brings the groundbreaking power of single-molecule proteomics with the first-to-market next-generation protein sequencer, the Platinum® instrument, to every lab, everywhere. Attend this session to hear the latest updates on applications and workflows and discover the power of using Kinetic Signatures to sequence proteins and detect changes in the proteome, including PTM analysis. Additionally, hear […]

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Enzymatic Addition of Azides to C-termini for Single-Molecule Sequencing

Summary:  The enzymatic addition of C-terminal azides to polypeptides (ENZ-A-CAP for short) aims to expand on Quantum-Si’s Platinum® single-molecule sequencing platform to enable protein sequencing of peptides generated with any digest patterns and hopes to extend this feature to full-length proteins for full proteoform sequencing.

Quantum-Si’s Next-Gen Protein Sequencer Enables Protein Detection and Peptide Characterization

Summary:  Sequencing proteins and correlating amino acid changes to biological function is critical to advancing our understanding of human health and disease. Next-generation protein sequencing (NGPS) on Platinum® enables researchers to identify and characterize proteins with single-molecule resolution in a simple workflow and on a benchtop instrument. To demonstrate the versatility of Platinum and the […]

Unravel the Secrets of Human Disease with Next-Gen Protein Sequencing

Protein-level analyses are crucial to advancing human disease research. However, traditional proteomic methods often lack the accuracy, specificity and depth recorded at the genomic or transcriptomic level. The latest protein sequencing technology offers information-rich insights into the primary structure, interactions, and modifications of diverse proteins, supporting an understanding of biological function in human disease. This […]