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Elabscience

SKU:PKSH031847

Recombinant Human IL1R1/CD121a Protein

Recombinant Human IL1R1/CD121a Protein

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Introducing the Recombinant Human IL1R1/CD121A Protein, a cutting-edge biotechnological advancement in the field of protein research. This meticulously engineered protein is derived from human Interleukin-1 receptor type 1 (IL1R1) and Cluster of Differentiation 121A (CD121A), offering unparalleled quality and reliability.

The Recombinant Human IL1R1/CD121A Protein is produced through a state-of-the-art recombinant DNA technology, ensuring the utmost purity and consistency. This protein exhibits exceptional binding affinity to Interleukin-1 (IL-1), a crucial cytokine involved in various physiological and pathological processes.

With its remarkable specificity, the Recombinant Human IL1R1/CD121A Protein serves as an invaluable tool for researchers and scientists in elucidating the intricate mechanisms underlying IL-1 signaling pathways. Its ability to accurately mimic the natural IL1R1/CD121A protein enables comprehensive investigations into the role of IL-1 in inflammation, immune response, and other related biological processes.

The Recombinant Human IL1R1/CD121A Protein is meticulously characterized and validated through rigorous quality control measures, ensuring its optimal functionality and reproducibility. Its high bioactivity and stability make it an ideal candidate for a wide range of applications, including but not limited to protein-protein interaction studies, drug discovery, and therapeutic development.

Furthermore, this protein is provided in a lyophilized form, preserving its integrity and facilitating convenient storage and transportation. Its reconstitution is effortless, allowing for immediate utilization in various experimental setups.

In summary, the Recombinant Human IL1R1/CD121A Protein represents a groundbreaking advancement in the realm of protein research. Its exceptional purity, specificity, and reliability make it an indispensable asset for scientists and researchers striving to unravel the complexities of IL-1 signaling pathways and their implications in human health and disease.
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