| Code | CSB-RA919570A0HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:2000 |
| FC | 1:50-1:200 |
TFAP2A, also known as AP-2 alpha, is a transcription factor that plays essential roles in embryonic development, cell differentiation, and the regulation of gene expression programs. This protein is particularly significant in neural crest development, craniofacial morphogenesis, and epithelial differentiation, making it a key target for researchers investigating developmental biology, cancer progression, and cellular reprogramming pathways.
This recombinant monoclonal antibody against human TFAP2A offers the reproducibility and consistency that demanding experimental workflows require. Generated using recombinant technology with clone 4F6, this rabbit IgG antibody is sequence-defined, ensuring lot-to-lot uniformity that eliminates the variability often encountered with traditional hybridoma-derived antibodies. Researchers can confidently build on previous results knowing their detection reagent will perform consistently across extended studies.
The antibody has been validated for multiple applications, providing flexibility across different experimental approaches. Western blot analysis demonstrates clean detection at the expected 48 kDa molecular weight in HeLa whole cell lysates, with recommended dilutions ranging from 1:500 to 1:2000. Flow cytometry validation in MCF-7 cells confirms reliable intracellular staining performance, with clear separation from isotype control when used at dilutions between 1:50 and 1:200. The antibody is also suitable for ELISA applications.
Raised against a synthetic peptide derived from human TFAP2A and purified by affinity chromatography, this unconjugated antibody arrives in a stabilized liquid format ready for immediate use. Whether investigating AP-2 family transcription factor networks, studying epithelial-mesenchymal transitions, or exploring developmental signaling pathways, this recombinant antibody provides the reliable detection researchers need for meaningful experimental outcomes.
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