Sociedad Americana de Hirudoterapia

Structure and biology of tissue factor pathway inhibitor.

Review published in Thrombosis and haemostasis (2001)

Última actualización: 18 de junio de 2026Revisado por: ASH Editorial Board
Artículo de investigación — revisión de evidenciaReferencia del artículo
Evidence: Observational studyDesarrollo de fármacosFarmacología salivalBajaj et al. · Thrombosis and haemostasis, 2001

Abstract

Human tissue factor pathway inhibitor (TFPI) is a modular protein comprised of three Kunitz type domains flanked by peptide segments that are less structured. The sequential order of the elements are: an N-terminal acidic region followed by the first Kunitz domain (K1), a linker region, a second Kunitz domain (K2), a second linker region, the third Kunitz domain (K3), and the C-terminal basic region. The K1 domain inhibits factor VIIa complexed to tissue factor (TF) while the K2 domain inhibits factor Xa. No direct protease inhibiting functions have been demonstrated for the K3 domain. Importantly, the Xa-TFPI complex is a much more potent inhibitor of the VIIa-TF than TFPI by itself. Furthermore, the C-terminal basic region of TFPI is required for rapid physiologic inhibition of coagulation and is needed for the inhibition of smooth muscle cell proliferation. Although a number of additional targets for attachment have been reported, the C-terminal basic region appears to play an important role in binding of TFPI to cell surfaces. A primary site of TFPI synthesis is endothelium and the endothelium-bound TFPI contributes to the antithrombotic potential of the vascular endothelium. Further, increased levels of plasma TFPI under septic conditions may represent endothelial dysfunction. We have proposed that the extravascular cells that synthesize TF also synthesize TFPI providing dual components necessary for the regulation of clotting in their microenvironment. Like the TF synthesis in these cells is augmented by serum, so is the case with the TFPI gene expression. TFPI gene knock out mice reveal embryonic lethality suggesting a possible role of this protein in early development. Since TF-induced coagulation is thought to play a significant role in many disease states, including disseminated intravascular clotting, sepsis, acute lung injury and cancer, recombinant TFPI may be a beneficial therapeutic agent in these disease states to attenuate pathologic clotting. The purpose of this review is to outline recent developments in the field related to the structural specificity and biology of TFPI.

Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.

Publication typeComparative StudyJournal ArticleResearch Support, Non-U.S. Gov'tResearch Support, U.S. Gov't, P.H.S.Review
Indexed MeSH termsAcute DiseaseAmino Acid SequenceAmino AcidsAntiphospholipid SyndromeBlood CoagulationCardiovascular DiseasesEndothelium, VascularHumansLipoproteinsLung DiseasesModels, BiologicalModels, Molecular

Resumen

Human tissue factor pathway inhibitor (TFPI) is a modular protein comprised of three Kunitz type domains flanked by peptide segments that are less structured. The sequential order of the elements are: an N-terminal acidic region followed by the first Kunitz domain (K1), a linker region, a second...

Por qué esto importa para la hirudoterapia

Esta revisión describe la especificidad estructural y la función biológica del inhibidor de la vía del factor tisular humano (TFPI), una proteína modular tipo Kunitz que inhibe la vía del factor tisular de la coagulación sanguínea. Se analiza el papel del TFPI unido al endotelio en el mantenimiento del potencial antitrombótico vascular y se explora el potencial del TFPI recombinante como agente terapéutico para condiciones como sepsis y coagulación intravascular diseminada. Si bien el TFPI es un anticoagulante fisiológico crucial, su conexión con la hirudoterapia o el secretoma de la sanguijuela es estrictamente indirecta, sirviendo únicamente como contexto comparativo para comprender los mecanismos anticoagulantes endógenos. El resumen no menciona sanguijuelas, compuestos derivados de la sanguijuela ni hirudina.

Citación

Structure and biology of tissue factor pathway inhibitor.

Bajaj et al. · Thrombosis and haemostasis, 2001

Contexto clínico relacionado

Añadido a la biblioteca ASH: May 28, 2026 · Última actualización del sitio: 18 de junio de 2026

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