Date published: 2026-1-8

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Immunoprecipitation Reagents

Santa Cruz Biotechnology now offers a broad range of immunoprecipitation reagents for use in various applications. Immunoprecipitation reagents are essential tools in molecular biology and biochemistry for isolating and studying specific proteins and their interactions within a complex mixture. These reagents, which include antibodies, protein A/G beads, and buffers, enable researchers to selectively precipitate a target protein from cell lysates or other biological samples. Immunoprecipitation is a widely used technique to analyze protein-protein interactions, post-translational modifications, and protein-DNA interactions, providing valuable insights into cellular signaling pathways and regulatory mechanisms. Researchers utilize immunoprecipitation reagents to investigate the composition of protein complexes, identify binding partners, and study the functional roles of specific proteins in various biological processes. This technique is pivotal in explaining the molecular underpinnings of cellular responses and disease states. By offering a comprehensive selection of high-quality immunoprecipitation reagents, Santa Cruz Biotechnology supports advanced research in cell biology, genetics, and proteomics, empowering scientists to achieve precise and reproducible results. These products facilitate the detailed characterization of protein dynamics and interactions, driving advancements in our understanding of cellular mechanisms and the development of novel approaches. View detailed information on our available immunoprecipitation reagents by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Anti-c-Myc Magnetic Beads

sc-500772
sc-500772A
1 ml
5 ml
$697.00
$2141.00
1
(1)

Anti-c-Myc Magnetic Beads are engineered for efficient immunoprecipitation, specifically targeting the c-Myc oncoprotein. These beads utilize high-affinity antibodies that selectively bind to c-Myc, enabling the isolation of protein complexes. Their magnetic properties facilitate easy separation from solution, enhancing experimental throughput. The beads exhibit robust stability and minimal non-specific binding, ensuring reliable results in protein interaction studies and pathway analysis.