| Code | CSB-RA004957MA1HU |
| Size | $49.9 |
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| Application | Recommended Dilution |
|---|---|
| ELISA | 1:5000-1:50000 |
| FC | 1:50-1:200 |
CD79A serves as an essential component of the B-cell antigen receptor complex, where it pairs with CD79B to form the signaling module that transduces activation signals following antigen recognition. This membrane glycoprotein plays a fundamental role in B-cell development, activation, and differentiation, making it a critical marker for studying B-cell biology, lymphoma classification, and immune system function.
This recombinant monoclonal antibody, clone 6F5, offers researchers the consistency and reliability that comes with sequence-defined production. Unlike traditional hybridoma-derived antibodies, recombinant technology ensures lot-to-lot reproducibility, giving you confidence that your experimental results will remain comparable across studies and over time. The human IgG1 isotype format and affinity-chromatography purification deliver a reagent with greater than 95% purity as confirmed by SEC-HPLC analysis.
Validation studies demonstrate robust performance across multiple experimental platforms. In functional ELISA assays, this antibody binds immobilized human CD79A with an EC50 in the low nanogram per milliliter range, confirming high-affinity target recognition. Notably, the antibody also recognizes CD79A when complexed with its natural partner CD79B, reflecting its utility in studying the physiologically relevant heterodimer. Flow cytometry validation using HEK-293T cells transfected with either CD79A alone or the CD79A/CD79B complex shows clear discrimination between transfected and untransfected populations, demonstrating specificity for cell surface detection applications.
The antibody is supplied in a glycerol-based PBS buffer optimized for long-term storage stability. For researchers investigating B-cell malignancies, immunodeficiencies, or fundamental aspects of adaptive immunity, this antibody provides a dependable tool for characterizing CD79A expression and function in human samples.
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