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SKU:E0434Ra

Rat phospho-inhibitory subunit of NF-κBα,pIKBα ELISA Kit

Rat phospho-inhibitory subunit of NF-κBα,pIKBα ELISA Kit

Regular price $428.00 USD
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Introducing the Rat phospho-inhibitory subunit of NF-κBα, pIKBα ELISA Kit, a cutting-edge solution designed to accurately measure and quantify the levels of phosphorylated inhibitory subunit of NF-κBα in rat samples. This ELISA kit is meticulously developed to provide researchers with a reliable and efficient tool for studying the intricate mechanisms of NF-κBα signaling pathway in rats.

The Rat phospho-inhibitory subunit of NF-κBα, pIKBα ELISA Kit boasts a high level of sensitivity, specificity, and precision, ensuring accurate and reproducible results. With its advanced technology and optimized protocols, this kit enables researchers to detect even the slightest changes in the phosphorylation status of IKBα, a key regulator of NF-κBα activation.

This ELISA kit offers a user-friendly and straightforward procedure, allowing researchers to perform the assay with ease and convenience. The kit includes all the necessary components, including pre-coated microplate wells, standards, controls, and detection reagents, ensuring a hassle-free experimental setup. The step-by-step instructions provided in the manual guide researchers through the entire process, minimizing any potential errors and ensuring reliable data acquisition.

The Rat phospho-inhibitory subunit of NF-κBα, pIKBα ELISA Kit is suitable for a wide range of applications, including basic research, drug discovery, and clinical studies. It provides a valuable tool for investigating the role of NF-κBα signaling pathway in various physiological and pathological conditions, such as inflammation, immune response, and cancer.

In summary, the Rat phospho-inhibitory subunit of NF-κBα, pIKBα ELISA Kit offers a comprehensive and reliable solution for studying the phosphorylation status of IKBα in rat samples. With its high sensitivity, specificity, and user-friendly design, this kit empowers researchers to delve deeper into the intricate mechanisms of NF-κBα signaling pathway, ultimately contributing to advancements in biomedical research and therapeutic interventions.

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