| Application | Recommended Dilution |
|---|---|
| FC | 1:50-1:200 |
NANOG serves as a master regulator of pluripotency, playing an essential role in maintaining the undifferentiated state of embryonic stem cells and governing self-renewal capacity. This homeobox transcription factor has garnered significant attention in cancer research due to its aberrant expression in various malignancies, where it contributes to tumor initiation, progression, and the maintenance of cancer stem cell populations. Understanding NANOG expression patterns provides critical insights into both developmental biology and oncogenic mechanisms.
This recombinant monoclonal antibody, clone 2G6, offers the reproducibility and consistency that demanding research applications require. Produced using recombinant technology with a sequence-defined approach, each lot delivers identical performance characteristics, eliminating the variability that can compromise longitudinal studies or multi-site collaborations. The rabbit host and IgG isotype, combined with affinity chromatography purification, ensure high specificity for human NANOG detection.
Flow cytometry validation demonstrates robust performance in intracellular staining applications. Testing in HeLa cells using fixation with formaldehyde and permeabilization with Triton X-100 produced clear positive signal separation from isotype control, with optimal results achieved at dilutions between 1:50 and 1:200. This validation confirms the antibody's suitability for quantitative analysis of NANOG-expressing cell populations.
The unconjugated format provides flexibility for researchers to pair with their preferred secondary detection systems, while the glycerol-containing buffer formulation supports long-term storage stability at recommended temperatures. Whether investigating stem cell differentiation pathways, characterizing pluripotency markers in reprogramming studies, or examining cancer stem cell biology, this antibody delivers the reliable detection needed to advance understanding of NANOG-mediated transcriptional programs.
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