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Elabscience
SKU:PKSM041321
Recombinant Mouse IL13RA1 Protein (Fc Tag)
Recombinant Mouse IL13RA1 Protein (Fc Tag)
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$200.00 USD
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Introducing the Recombinant Mouse IL13RA1 Protein (Fc Tag), a cutting-edge product meticulously engineered to meet the demands of advanced scientific research. This protein, derived from the mouse interleukin-13 receptor alpha 1 (IL13RA1), boasts a recombinant nature and is fused with a high-quality Fc tag for enhanced stability and functionality.
The Recombinant Mouse IL13RA1 Protein (Fc Tag) offers an invaluable tool for investigating the intricate mechanisms underlying IL13RA1-mediated signaling pathways. With its exceptional purity and bioactivity, this protein enables researchers to delve into the complex interactions between IL13RA1 and its ligands, facilitating a deeper understanding of various physiological and pathological processes.
Crafted with utmost precision, this product guarantees optimal performance and reproducibility, ensuring reliable and consistent results in a wide range of experimental settings. Its recombinant nature ensures batch-to-batch consistency, eliminating any concerns regarding variability and ensuring the utmost accuracy in scientific investigations.
Furthermore, the fusion of the Fc tag to the Recombinant Mouse IL13RA1 Protein enhances its stability, prolonging its half-life and enabling prolonged experimental windows. This feature is particularly advantageous for time-sensitive studies, allowing researchers to explore IL13RA1-related phenomena over extended periods, thereby unraveling intricate molecular mechanisms.
The Recombinant Mouse IL13RA1 Protein (Fc Tag) is meticulously manufactured using state-of-the-art techniques, adhering to stringent quality control measures. Each batch undergoes rigorous testing to ensure its purity, bioactivity, and absence of contaminants, guaranteeing the utmost reliability and reproducibility in scientific investigations.
In summary, the Recombinant Mouse IL13RA1 Protein (Fc Tag) is an indispensable tool for researchers seeking to unravel the complexities of IL13RA1-mediated signaling pathways. With its exceptional purity, bioactivity, and stability, this product offers unparalleled reliability and reproducibility, enabling groundbreaking discoveries in the field of molecular biology and beyond.
The Recombinant Mouse IL13RA1 Protein (Fc Tag) offers an invaluable tool for investigating the intricate mechanisms underlying IL13RA1-mediated signaling pathways. With its exceptional purity and bioactivity, this protein enables researchers to delve into the complex interactions between IL13RA1 and its ligands, facilitating a deeper understanding of various physiological and pathological processes.
Crafted with utmost precision, this product guarantees optimal performance and reproducibility, ensuring reliable and consistent results in a wide range of experimental settings. Its recombinant nature ensures batch-to-batch consistency, eliminating any concerns regarding variability and ensuring the utmost accuracy in scientific investigations.
Furthermore, the fusion of the Fc tag to the Recombinant Mouse IL13RA1 Protein enhances its stability, prolonging its half-life and enabling prolonged experimental windows. This feature is particularly advantageous for time-sensitive studies, allowing researchers to explore IL13RA1-related phenomena over extended periods, thereby unraveling intricate molecular mechanisms.
The Recombinant Mouse IL13RA1 Protein (Fc Tag) is meticulously manufactured using state-of-the-art techniques, adhering to stringent quality control measures. Each batch undergoes rigorous testing to ensure its purity, bioactivity, and absence of contaminants, guaranteeing the utmost reliability and reproducibility in scientific investigations.
In summary, the Recombinant Mouse IL13RA1 Protein (Fc Tag) is an indispensable tool for researchers seeking to unravel the complexities of IL13RA1-mediated signaling pathways. With its exceptional purity, bioactivity, and stability, this product offers unparalleled reliability and reproducibility, enabling groundbreaking discoveries in the field of molecular biology and beyond.
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