| Code | CSB-RA292519A0HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:5000 |
Transforming growth factor-beta-induced protein ig-h3, encoded by the TGFBI gene, is an extracellular matrix protein that plays essential roles in cell adhesion, migration, and proliferation. This RGD-containing collagen-associated protein mediates critical interactions between cells and their surrounding matrix, making it a significant target for researchers investigating signal transduction pathways, tissue development, and various pathological conditions including corneal dystrophies and cancer progression.
This recombinant monoclonal antibody, clone 18C5, offers the reproducibility and consistency that demanding research applications require. Developed using recombinant technology with a defined sequence, this rabbit IgG antibody eliminates the lot-to-lot variability often encountered with traditional hybridoma-derived antibodies. Researchers can confidently plan long-term studies knowing that antibody performance will remain consistent across experiments and reorders.
Raised against a synthesized peptide from human TGFBI protein and purified by affinity chromatography, this antibody has been validated for Western blot applications with recommended dilutions ranging from 1:500 to 1:5000, giving you flexibility to optimize conditions for your specific experimental system. Validation studies using HepG2 whole cell lysate demonstrate clear detection of TGFBI, with an observed band at 68 kDa. This migration pattern, slightly below the predicted 75 kDa molecular weight, is consistent with the post-translational processing commonly observed with secreted extracellular matrix proteins.
The unconjugated format provides maximum flexibility for pairing with your preferred detection systems. Whether you are exploring TGFBI's role in TGF-beta signaling cascades, investigating its contributions to extracellular matrix remodeling, or studying its involvement in disease mechanisms, this antibody delivers the reliable performance your research demands.
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