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TFPI2 ELISA Kit

  • Product Information
  • Description
Catalog: C-EL-1903T
Product Type: Test kit
Size: 96 tests
Principle: Solid Phase Sandwich ELISA
Conjugation: HRP
Species: Mouse
Detection range: 7.82-500 pg/mL
Sensitivity: 2.62 pg/mL
Specificity: Recognizes both recombinant and natural Mouse TFPI2
Sample type: Serum
Test type: Quantitative
Analysis mode: ELISA
Shipping: This ELISA Kit is shipped at ambient temperature.
Storage: 2-8℃
Full name: tissue factor pathway inhibitor 2
Application: Serine Proteases and Regulators

This TFPI2 ELISA Kit, Mouse is an enzyme-linked immunosorbent assay for the quantitative measurement of Mouse TFPI2 protein in Serum . It contains recombinant Mouse TFPI2, and antibodies raised against the recombinant protein. This ELISA kit is complete and ready-to-use.Tissue factor pathway inhibitor-2 (TFPI2), a member of the Kunitz-type serine proteinase inhibitor family, is a structural homologue of tissue factor pathway inhibitor (TFPI). It is a 32 kDa matrix-associated glycoprotein consisting of a short amino-terminal region, three tandem Kunitz-type domains and a positively charged carboxy-terminal tail. TFPI2 inhibits plasmin-dependent activation of several metalloproteinases. TFPI2 is highly abundant in the full-term placenta and widely expressed in various adult human tissues, such as the liver, skeletal muscle, heart, kidney, and pancreas. The expression of TFPI2 in tumors is inversely related to an increasing degree of malignancy, which may suggest a role for TFPI2 in the maintenance of tumor stability and inhibition of the growth of neoplasms. TFPI2 inhibits the tissue factor/factor VIIa (TF/VIIa) complex and a wide variety of serine proteinases including plasmin, plasma kallikrein, factor XIa, trypsin, and chymotrypsin. TFPI2 is involved in regulating pericellular proteases implicated in a variety of physiologic and pathologic processes including cancer cell invasion, vascular inflammation, and atherosclerosis. TFPI2 has also been shown to induce apoptosis and inhibit angiogenesis, which may contribute significantly to tumor growth inhibition.

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