1995Blood Coagulation & FibrinolysisRequires access

Tissue factor pathway inhibitor and the current concept of blood coagulation

G. J. Broze

Open publisher page 165 citations

Abstract

Tissue factor pathway inhibitor (TFPI) is a multivalent, Kunitz-type plasma proteinase inhibitor that regulates tissue factor-induced coagulation. TFPI directly inhibits activated factor X and, in a factor Xa-dependent manner, produces feedback inhibition of the factor VIIa/tissue factor catalytic complex. The properties of this inhibitor help explain the clinical need for 'extrinsic' and 'intrinsic' coagulation pathways and have led to a reformulation of the coagulation cascade. In the revised hypothesis, factor VIIa/tissue factor is responsible for the initiation of coagulation but, owing to TFPI-mediated feedback inhibition, amplification of the procoagulant response though the actions of factor VIII, IX and XI is required for sustained haemostasis.

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What this paper is about

Tissue factor pathway inhibitor (TFPI) is a multivalent, Kunitz-type plasma proteinase inhibitor that regulates tissue factor-induced coagulation. TFPI directly inhibits activated factor X and, in a factor Xa-dependent manner, produces feedback inhibition of the factor VIIa/tissue factor catalytic complex. The properties of this inhibitor help explain the clinical need for 'extrinsic' and 'intrinsic' coagulation pathways and have led to a reformulation of the coagulation cascade. In the revised hypothesis, factor VIIa/tissue factor is responsible for the initiation of coagulation but, owing to TFPI-mediated feedback inhibition, amplification of the procoagulant response though the actions of factor VIII, IX and XI is required for sustained haemostasis.

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Available abstract

Tissue factor pathway inhibitor (TFPI) is a multivalent, Kunitz-type plasma proteinase inhibitor that regulates tissue factor-induced coagulation. TFPI directly inhibits activated factor X and, in a factor Xa-dependent manner, produces feedback inhibition of the factor VIIa/tissue factor catalytic complex. The properties of this inhibitor help explain the clinical need for 'extrinsic' and 'intrinsic' coagulation pathways and have led to a reformulation of the coagulation cascade. In the revised hypothesis, factor VIIa/tissue factor is responsible for the initiation of coagulation but, owing to TFPI-mediated feedback inhibition, amplification of the procoagulant response though the actions of factor VIII, IX and XI is required for sustained haemostasis.

Key concepts: Tissue factor pathway inhibitor, Tissue factor, Coagulation, Factor VII, Factor X, Factor IX, Thromboplastin, Cell biology

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