| Code | CSB-RA011593MA1HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| IF | 1:50-1:200 |
| FC | 1:50-1:200 |
Interleukin-15 plays a central role in immune system regulation, functioning as a potent cytokine that drives the development, survival, and activation of natural killer cells and memory T cells. Its involvement in both innate and adaptive immunity makes IL-15 a compelling target for researchers investigating cancer immunotherapy, autoimmune conditions, and metabolic disorders where immune modulation is therapeutically relevant.
This recombinant monoclonal antibody against human IL-15 offers the reproducibility that demanding experimental workflows require. Generated through recombinant technology with a defined sequence, this clone (8G6) eliminates the lot-to-lot variability that can compromise longitudinal studies or multi-site collaborations. The human IgG1 isotype format, combined with affinity chromatography purification, ensures consistent performance across your experimental timeline.
Validation studies demonstrate reliable detection in both immunofluorescence and flow cytometry applications using human cell lines. Immunofluorescence staining has been successfully performed in MCF7 breast cancer cells and A549 lung adenocarcinoma cells at 1:100 dilution, revealing clear cytoplasmic signal when counter-stained with DAPI. Flow cytometry analysis in HeLa cells at 1:200 dilution shows distinct positive population shifts compared to isotype controls, confirming specific detection in permeabilized cells. These validated protocols across multiple human cancer cell lines provide flexibility for researchers working with different model systems.
For investigators exploring IL-15 biology in cancer immunology, immune cell development, or metabolic regulation, this antibody delivers the specificity and batch consistency needed for publication-quality data. The non-conjugated format allows pairing with your preferred secondary detection system, accommodating diverse experimental designs across ELISA, immunofluorescence, and flow cytometry platforms.
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