| Code | CSB-RA554340A0HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| IF | 1:50-1:200 |
| FC | 1:50-1:200 |
The insulin-like growth factor 2 receptor, also known as the cation-independent mannose-6-phosphate receptor or CD222, serves as a critical multifunctional protein in cellular biology. This receptor plays essential roles in the intracellular trafficking of lysosomal enzymes bearing mannose-6-phosphate residues and mediates the internalization and degradation of IGF-II, thereby regulating growth factor availability. IGF2R has garnered significant research attention due to its involvement in tumor suppression, with loss of function implicated in various malignancies, making it a compelling target for cancer biology and developmental studies.
This recombinant monoclonal antibody, clone 9F3, offers researchers the reproducibility advantages inherent to recombinant technology. Because the antibody sequence is defined and produced from a stable expression system, you can expect consistent performance across experiments and between lots, eliminating the variability concerns that can complicate long-term studies or multi-site collaborations.
Validation studies demonstrate reliable performance in immunofluorescence and flow cytometry applications using human cell lines. Immunofluorescence analysis of HeLa cells reveals clear cellular staining patterns when used at dilutions between 1:50 and 1:200, with overnight incubation at 4°C following standard fixation and permeabilization protocols. Flow cytometric analysis of HepG2 cells confirms specific detection with distinct peak separation from isotype control, supporting applications in quantitative single-cell analysis of receptor expression levels.
This antibody is particularly well-suited for researchers investigating IGF-II signaling pathways, lysosomal enzyme trafficking, or exploring IGF2R as a potential biomarker in oncology research. The validated performance in both imaging and flow cytometry platforms provides flexibility for comprehensive receptor expression studies across different experimental approaches.
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