Elabscience
SKU:E-AB-68056
Phospho-c-Fos(T232) Polyclonal Antibody
Phospho-c-Fos(T232) Polyclonal Antibody
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Phospho-c-Fos(T232) Polyclonal Antibody
Introducing the PHOSPHO-C-FOS(T232) Polyclonal Antibody, a cutting-edge scientific tool designed to facilitate advanced research in the field of molecular biology. This high-quality antibody is meticulously crafted to specifically target and detect the phosphorylated form of the C-FOS protein at threonine 232 residue.
With its exceptional specificity and sensitivity, the PHOSPHO-C-FOS(T232) Polyclonal Antibody offers researchers an invaluable tool for investigating the intricate signaling pathways involving the C-FOS protein. By accurately identifying and quantifying the phosphorylated state of C-FOS at threonine 232, this antibody enables a deeper understanding of cellular processes, including gene expression, cell proliferation, and differentiation.
Crafted using state-of-the-art techniques, this polyclonal antibody exhibits exceptional performance across a wide range of applications, including Western blotting, immunoprecipitation, and immunofluorescence. Its robust and reliable performance ensures accurate and reproducible results, allowing researchers to confidently delve into the complexities of C-FOS phosphorylation.
The PHOSPHO-C-FOS(T232) Polyclonal Antibody is meticulously validated to ensure its superior quality and performance. Rigorous quality control measures, including specificity testing and cross-reactivity assessments, guarantee the antibody's reliability and specificity for the phosphorylated form of C-FOS at threonine 232.
This antibody is supplied in a convenient and user-friendly format, allowing for easy integration into various experimental protocols. Its long shelf life and stability ensure consistent performance, making it an ideal choice for long-term research projects.
In summary, the PHOSPHO-C-FOS(T232) Polyclonal Antibody is an indispensable tool for researchers seeking to unravel the intricate mechanisms underlying C-FOS phosphorylation. Its exceptional specificity, sensitivity, and reliability make it an invaluable asset in the pursuit of scientific discovery.
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