| Code | CSB-RA614884MA1HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:2000 |
| FC | 1:50-1:200 |
Inorganic pyrophosphatase 1 (PPA1) serves as a critical enzyme in cellular energy metabolism, catalyzing the hydrolysis of inorganic pyrophosphate to drive biosynthetic reactions forward. This housekeeping enzyme plays an essential role in nucleic acid synthesis, protein production, and lipid metabolism, making it a valuable marker for studying metabolic regulation and cellular proliferation. Emerging research has also linked PPA1 expression to tumor progression and metabolic reprogramming in cancer cells, positioning it as a target of growing interest in oncology research.
This recombinant monoclonal antibody against PPA1 offers the reproducibility and consistency that demanding experimental workflows require. Produced using recombinant technology with a defined sequence, it eliminates the lot-to-lot variability that can compromise longitudinal studies and multi-site collaborations. The human IgG1 format provides reliable performance across detection platforms while maintaining specificity for your target.
Validation studies demonstrate robust performance across multiple applications. In western blotting, this antibody detects PPA1 at the expected 33 kDa molecular weight across a diverse panel of human cell lines including HT-29, HEK293, MCF-7, K562, U-251MG, HepG2, Jurkat, A549, and HeLa cells. Cross-species reactivity extends to rodent samples, with confirmed detection in mouse and rat small intestine tissue lysates, supporting translational research using animal models. Flow cytometry validation in HEK293 cells demonstrates clear separation from isotype control, enabling intracellular protein quantification studies.
Whether investigating metabolic enzyme regulation, characterizing cancer cell phenotypes, or exploring pyrophosphate-dependent pathways, this antibody provides the specificity and cross-species reactivity needed to advance your research across multiple experimental platforms.
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