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Human Mitogen Activated Protein Kinase 9,MAPK9 ELISA Kit

Human Mitogen Activated Protein Kinase 9,MAPK9 ELISA Kit

UOM
Standard Range
Sensitivity

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The Human Mitogen Activated Protein Kinase 9, MAPK9 ELISA Kit is a highly reliable and efficient tool designed for the quantitative detection of MAPK9 in human samples. This enzyme-linked immunosorbent assay (ELISA) kit is specifically developed to provide accurate and precise measurements of MAPK9 levels, enabling researchers to gain valuable insights into its role in various biological processes.

The MAPK9 ELISA Kit utilizes a sandwich enzyme immunoassay principle, employing specific antibodies that bind to the target protein with high affinity and specificity. The kit includes all the necessary components, including pre-coated microplate wells, standards, controls, and reagents, ensuring convenience and ease of use.

With a wide dynamic range and excellent sensitivity, this ELISA kit allows for the detection of MAPK9 in a variety of sample types, including serum, plasma, and cell lysates. The assay procedure is straightforward, involving a series of incubation and washing steps, followed by the addition of a detection reagent that produces a colorimetric signal proportional to the amount of MAPK9 present in the sample.

The Human Mitogen Activated Protein Kinase 9, MAPK9 ELISA Kit is a valuable tool for researchers studying signal transduction pathways, cellular proliferation, and apoptosis. Its high specificity and sensitivity make it an ideal choice for both basic research and clinical applications. By providing accurate quantitative data, this ELISA kit contributes to a better understanding of MAPK9's involvement in various physiological and pathological processes.

In summary, the Human Mitogen Activated Protein Kinase 9, MAPK9 ELISA Kit offers a reliable and efficient solution for the quantitative detection of MAPK9 in human samples. Its high sensitivity, specificity, and ease of use make it an indispensable tool for researchers seeking to unravel the intricate mechanisms of MAPK9 signaling pathways.

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