For research use only. Not for use in diagnostic procedures.
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The AlphaLISA® SureFire® Ultra™ total FGF Receptor 3 assay is a sandwich immunoassay for quantitative detection of total FGF Receptor 3 (phosphorylated and non-phosphorylated) in cellular lysates using Alpha Technology.
In the AlphaLISA SureFire Ultra assay, Donor beads are coated with streptavidin to capture one of the antibodies, which is biotinylated. Acceptor beads are coated with a proprietary CaptSure™ agent that immobilizes the other antibody, labeled with a CaptSure tag. In the presence of target protein, the two antibodies bring the Donor and Acceptor beads close together, generating signal. The amount of light emission is directly proportional to the amount of protein present in the sample.
AlphaLISA SureFire Ultra kits are compatible with:
Alpha SureFire kits can be used for:
|Assay Target||FGF Receptor 3|
|Assay Target Class||Protein|
|Experimental Type||In vitro|
|Product Brand Name||AlphaLISA SureFire Ultra|
|Shipping Condition||Blue Ice|
|Unit Size||50,000 Assay Points|
Product brochure for the Alpha Technology, a versatile, no wash, homogeneous assay technology that's suitable for a broad range of applications.
Find out about our range of integrated solutions for drug discovery screening in this e-brochure.
Our screening solutions for high-throughput screening, phenotypic screening and data analysis help to streamline drug discovery workflows in labs across the globe. Our portfolio includes automated liquid handling, assays and reagents, imaging and detection systems, and informatics.
Working independently or together, with our solutions you can achieve consistent and accurate results. By accelerating the identification and characterization of effective and safe drug candidates, the PerkinElmer portfolio enables you to optimize efficiency in your lab and deliver more actionable, real-world results.
Download the brochure to learn more about how we can partner with you so that you can discover smarter, more effective, data-driven breakthroughs in the critical screening stages of drug discovery and development.