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ETK Cell Based ELISA Kit (A103566)

This product is discontinued

ETK Cell Based ELISA Kit (A103566) has been discontinued and is no longer available.

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Name
ETK Cell Based ELISA Kit
Description
ETK Cell Based ELISA Kit is a Enzyme-Linked Immunosorbent Assay designed for the indirect in vitro quantitative determination of BMX levels in adherent and suspension cells.
Assay Type
Cell-based (qualitative)
Principle of Assay
This ETK Cell Based ELISA Kit allows for the detection of ETK and the effects that certain stimulation conditions have on ETK expression in different cell lines. Qualitative determination of ETK concentration is achieved by an indirect ELISA format. In essence, the ETK is captured by Anti-ETK Antibodies which in turn are detected by HRP-conjugated secondary antibodies. Through this binding, the HRP enzyme (conjugated to the secondary antibody) can catalyze a colorimetric reaction upon substrate addition. Due to the qualitative nature of this ETK Cell Based ELISA Kit, multiple normalization methods are described: 1) Anti-GAPDH Antibody is included to serve as an internal positive control in normalizing the target absorbance values. 2) Following the colorimetric measurement of HRP activity via substrate addition, the Crystal Violet whole-cell staining method is used to determine cell density. After staining, the results can be analyzed by normalizing the absorbance values to cell amounts, by which the plating difference can be adjusted.
Platform
Tissue Culture Treated Microplate
Detection Type
Colorimetric
Sample Type
Adherent and suspension cells.
Product Range
> 5000 Cells
Assay Time
4 hours 30 minutes
Reactivity
Human, Mouse
Storage
Store at + 4°C. Stable for 3-6 months.
Synonyms
Bone marrow tyrosine kinase gene in chromosome X protein, Cytoplasmic tyrosine-protein kinase BMX, Epithelial and endothelial tyrosine kinase, ETK, NTK38
Product Note
Information online is representative. Always refer to the Product Manual inside the kit.
Disclaimer
This product is for research use only. It is not intended for diagnostic or therapeutic use.

Proteins predicted to interact with BMX

Predicted protein interactions based upon String database. Revelancy score correlates with probability of interaction.
95.6% Relevancy Score
86% Relevancy Score
71.3% Relevancy Score
58.7% Relevancy Score
53.1% Relevancy Score
52.1% Relevancy Score
50.4% Relevancy Score
47.2% Relevancy Score
47.1% Relevancy Score