| Code | CSB-RA011664MA4HU |
| Size | $49.9 |
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| Application | Recommended Dilution |
|---|---|
| IHC | 1:50-1:200 |
| FC | 1:50-1:200 |
Interleukin-6 stands as one of the most extensively studied cytokines in immunology and cancer research, functioning as a central mediator of inflammation, immune regulation, and acute phase responses. This pleiotropic cytokine, also recognized as B-cell stimulatory factor 2 and interferon beta-2, plays critical roles in B-cell differentiation, T-cell activation, and hepatocyte stimulation, making it a key target for researchers investigating inflammatory diseases, autoimmune conditions, and tumor microenvironments.
This recombinant monoclonal antibody targeting human IL-6 offers the reproducibility and consistency that demanding experimental workflows require. Developed using recombinant technology with clone 24A6, this antibody provides sequence-defined specificity that eliminates the lot-to-lot variability often encountered with traditional hybridoma-derived reagents. The human IgG1 isotype format and affinity-chromatography purification ensure reliable performance across multiple detection platforms.
Validation studies demonstrate robust performance in both immunohistochemistry and flow cytometry applications. IHC analysis of paraffin-embedded human tonsil tissue using citrate buffer antigen retrieval shows clear target detection at dilutions ranging from 1:50 to 1:200. Flow cytometry validation performed on 786-O renal carcinoma cells confirms specific intracellular staining with appropriate signal separation from isotype controls, supporting applications in both tissue-based and cell-based analyses.
Whether investigating IL-6 signaling in inflammatory cascades, characterizing cytokine expression in tumor specimens, or screening therapeutic interventions targeting the IL-6 pathway, this antibody delivers the technical reliability needed for publication-quality data. Its validated performance across immunohistochemistry, flow cytometry, and ELISA platforms provides researchers with flexibility to address diverse experimental questions within IL-6 biology.
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