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SKU:E0344Mo

Mouse Pyruvate kinase isozymes M1/M2,M2-PK ELISA Kit

Mouse Pyruvate kinase isozymes M1/M2,M2-PK ELISA Kit

Regular price $428.00 USD
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Introducing the Mouse Pyruvate Kinase Isozymes M1/M2, M2-PK ELISA Kit, a cutting-edge solution designed to accurately measure the levels of M1 and M2 isozymes of pyruvate kinase in mouse samples. This ELISA kit is meticulously crafted to provide researchers with a reliable and efficient tool for studying the metabolic activity and regulation of pyruvate kinase in mice.

With its advanced technology and high sensitivity, this ELISA kit enables precise quantification of M1 and M2 isozymes of pyruvate kinase in a wide range of mouse samples, including tissues, cells, and biological fluids. The kit includes all the necessary components, including pre-coated microplate wells, standards, controls, and reagents, ensuring convenience and accuracy in every experiment.

The Mouse Pyruvate Kinase Isozymes M1/M2, M2-PK ELISA Kit offers exceptional specificity, allowing for the differentiation between M1 and M2 isozymes of pyruvate kinase. This distinction is crucial in understanding the diverse roles and functions of these isozymes in various physiological and pathological processes, such as cancer metabolism, energy metabolism, and cellular signaling.

Furthermore, this ELISA kit boasts a user-friendly protocol, enabling researchers to perform the assay with ease and efficiency. The step-by-step instructions provided ensure a seamless workflow, minimizing errors and maximizing reproducibility. The kit also offers a wide dynamic range, allowing for the accurate measurement of pyruvate kinase isozymes across a broad concentration spectrum.

In summary, the Mouse Pyruvate Kinase Isozymes M1/M2, M2-PK ELISA Kit is an indispensable tool for researchers seeking to delve into the intricate mechanisms of pyruvate kinase regulation and its impact on cellular metabolism. With its exceptional sensitivity, specificity, and user-friendly design, this ELISA kit empowers scientists to unravel the complexities of pyruvate kinase isozymes in mouse models, ultimately advancing our understanding of metabolic processes and their implications in various diseases.

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