| Code | CSB-RA926985A0HU |
| Size | US$210 |
| Order now | |
| Image |
|
| Have Questions? | Leave a Message or Start an on-line Chat |
| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:2000 |
| IF | 1:50-1:200 |
| FC | 1:50-1:200 |
NPR2, also known as natriuretic peptide receptor B or guanylate cyclase B, serves as a critical membrane receptor in cardiovascular regulation and signal transduction pathways. This receptor binds C-type natriuretic peptide and functions as a guanylate cyclase, generating cGMP to mediate diverse physiological processes including vascular tone regulation, bone growth, and neuronal signaling. Understanding NPR2 expression and localization provides valuable insights for researchers investigating cardiovascular disease mechanisms, skeletal development disorders, and neuroscience applications.
This recombinant monoclonal antibody, clone 19C7, offers the reproducibility and consistency that demanding experimental workflows require. Developed using recombinant technology with a sequence-defined approach, this antibody eliminates the lot-to-lot variability that can compromise longitudinal studies and multi-site collaborations. The rabbit IgG format, raised against a synthetic peptide derived from human NPR2, ensures specificity for your target while the affinity-chromatography purification delivers a clean reagent ready for immediate use.
Validation studies demonstrate reliable performance across multiple experimental platforms. Western blot analysis detects NPR2 at the predicted molecular weight of 117 kDa in both HepG2 and MCF7 whole cell lysates, confirming specificity in human cancer cell models at dilutions of 1:500 to 1:2000. Immunofluorescence staining in HeLa cells reveals clear subcellular localization patterns when used at 1:50 to 1:200 dilutions, while flow cytometry applications enable quantitative analysis of surface expression in the same cell line.
Whether you are characterizing receptor expression in cardiovascular models, investigating signal transduction cascades, or exploring NPR2's emerging roles in neuroscience, this antibody provides the experimental flexibility and technical reliability your research demands.
There are currently no reviews for this product.