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Elabscience

SKU:PKSH031857

Recombinant Human IL-1RAcP/IL-1R3 Protein (His Tag)

Recombinant Human IL-1RAcP/IL-1R3 Protein (His Tag)

Regular price $454.00 USD
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Introducing the Recombinant Human IL-1RACP/IL-1R3 Protein (HIS TAG), a cutting-edge product designed to revolutionize the field of immunology. This protein, derived from advanced recombinant technology, showcases exceptional quality and efficacy.

The Recombinant Human IL-1RACP/IL-1R3 Protein (HIS TAG) is meticulously engineered to possess a high affinity for the interleukin-1 receptor accessory protein (IL-1RACP) and the interleukin-1 receptor 3 (IL-1R3). Its unique composition, coupled with the inclusion of a histidine (HIS) tag, ensures enhanced stability and ease of purification.

This protein exhibits remarkable biological activity, facilitating the binding of IL-1RACP and IL-1R3 to form a functional receptor complex. Its role in mediating the signaling pathway of interleukin-1 (IL-1) makes it an invaluable tool for studying the intricate mechanisms underlying immune responses and inflammatory processes.

The Recombinant Human IL-1RACP/IL-1R3 Protein (HIS TAG) is meticulously manufactured under stringent quality control measures, guaranteeing exceptional purity and consistency. Its superior performance is further augmented by the inclusion of the HIS tag, enabling facile detection and purification through affinity chromatography techniques.

This product is supplied in a lyophilized form, ensuring long-term stability and ease of storage. Upon reconstitution, it can be readily utilized in a wide range of applications, including but not limited to protein-protein interaction studies, receptor-ligand binding assays, and functional characterization of the IL-1 signaling pathway.

In summary, the Recombinant Human IL-1RACP/IL-1R3 Protein (HIS TAG) represents a breakthrough in immunological research, offering researchers an unparalleled tool to unravel the complexities of IL-1 signaling. With its exceptional quality, stability, and versatility, this protein is poised to revolutionize the understanding of immune responses and pave the way for novel therapeutic interventions.
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