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Elabscience

SKU:PKSH031536

Recombinant Human TFPI2 Protein (His Tag)(Active)

Recombinant Human TFPI2 Protein (His Tag)(Active)

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Introducing the Recombinant Human TFPI2 Protein (His Tag)(Active), a cutting-edge product meticulously engineered to revolutionize the field of protein research. This innovative protein variant, derived from human tissue factor pathway inhibitor 2 (TFPI2), boasts an active state and is conveniently tagged with a histidine (His) tag for enhanced detection and purification.

Crafted with utmost precision, this recombinant protein exhibits exceptional bioactivity, rendering it an invaluable tool for elucidating the intricate mechanisms underlying TFPI2's physiological functions. Its active nature ensures accurate and reliable results, enabling researchers to delve deeper into the intricate pathways and interactions involving TFPI2.

The inclusion of a His tag further amplifies the utility of this protein, facilitating its purification and subsequent analysis. This tag enables facile detection and isolation of the recombinant protein, streamlining experimental workflows and expediting research progress. Researchers can now focus their efforts on the core aspects of their investigations, confident in the reliability and efficiency of this advanced protein variant.

The Recombinant Human TFPI2 Protein (His Tag)(Active) is meticulously manufactured in state-of-the-art facilities, adhering to stringent quality control measures to ensure utmost purity and consistency. Each batch undergoes rigorous testing to guarantee its bioactivity, stability, and integrity, empowering researchers with a reliable and reproducible tool for their scientific endeavors.

In summary, the Recombinant Human TFPI2 Protein (His Tag)(Active) represents a breakthrough in protein research, offering an active and tagged variant of TFPI2 that enables comprehensive investigations into its intricate biological functions. With its exceptional bioactivity, ease of purification, and stringent quality control, this product is poised to revolutionize the scientific community's understanding of TFPI2 and its associated pathways.
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