| Code | CSB-RA963626A0HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:5000 |
| IF | 1:20-1:200 |
| IP | 1:200-1:1000 |
Integrin-linked kinase serves as a critical signaling hub at the intersection of cell adhesion, survival, and cytoskeletal organization. As a serine/threonine kinase that connects integrins to the actin cytoskeleton, ILK participates in PI3K/Akt signaling and influences processes ranging from epithelial-mesenchymal transition to cardiac development. Its dysregulation has been implicated in cancer progression and fibrotic diseases, making it a compelling target for researchers investigating mechanotransduction and oncogenic signaling pathways.
This recombinant monoclonal antibody, generated against a synthetic peptide derived from human ILK, offers the reproducibility that demanding experimental workflows require. Because recombinant production yields a sequence-defined reagent from a single rabbit clone, you can expect consistent performance across experiments and between lot numbers, eliminating the variability that can complicate long-term studies or multi-site collaborations.
Validation across multiple applications demonstrates genuine experimental flexibility. Western blot analysis confirms reliable detection at approximately 51 kDa in HeLa, HL60, and A549 cell lysates, as well as mouse kidney tissue, supporting cross-species reactivity between human and mouse samples. The observed molecular weight aligns closely with predicted sizes, reflecting detection of the mature protein. Immunofluorescence staining in MCF7 cells reveals clear subcellular localization patterns, while immunoprecipitation from HeLa lysates confirms the antibody's capacity to capture native ILK protein complexes for downstream analysis.
Whether you are mapping ILK-dependent signaling networks, investigating focal adhesion dynamics, or exploring its role in disease models, this antibody provides a dependable tool across western blotting, immunofluorescence, and immunoprecipitation workflows in signal transduction research.
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