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Published on: February 14, 2017
The impact of tissue factor pathway inhibitor on coagulation kinetics determined by thrombelastography
Paul Audu1, Vance G Nielsen, Valerie Armstead
1Department of Anesthesiology, Thomas Jefferson University, Philadelphia, Pennsylvania, USA.
Background:
Tissue factor pathway inhibitor (TFPI) is a 40-kDa, endogenous protein that inhibits tissue factor (TF)-initiated coagulation by bonding with activated factor X (FXa). The TFPI/FXa complex then subsequently binds with TF/activated factor VII (FVIIa) complex, ultimately inhibiting thrombin generation. Heparin administration causes endothelial release of TFPI concentrations up to sixfold normal values. Thrombelastography (TEG) is often used to monitor hemostasis in the perioperative period, and TFPI could potentially affect the diagnostic interpretation of TEG-based data, given its inhibition of both common and TF coagulation pathways. Thus, in this study we characterized the effect of TFPI on coagulation kinetics via TEG.
Methods:
Whole blood, Factor VII-deficient plasma, and normal plasma were exposed in vitro to various concentrations of TFPI, after which unmodified, celite-activated, and TF-activated TEG were performed.
Results:
The addition of 87.5 ng/mL TFPI (twice normal concentration) was required to prolong clot propagation in whole blood, with propagation and strength only significantly affected by the addition of 175 ng/mL concentrations. Experiments with Factor VII-deficient plasma demonstrated that TFPI-mediated suppression of coagulation kinetics at these concentrations was secondary to FXa inhibition. Celite activation markedly attenuated TFPI-mediated effects on coagulation kinetics, whereas TF activation accentuated TFPI-mediated prolongation of clot initiation and diminution of propagation.
Conclusions:
In settings involving heparin administration (e.g., cardiopulmonary bypass), TFPI-mediated inhibition of coagulation should be considered during TEG-based hemostatic monitoring.
Insights
Tissue factor pathway inhibitor (TFPI) affects thrombelastography (TEG) by prolonging clot formation. This inhibition is concentration-dependent and influenced by activation methods, impacting coagulation monitoring during heparin therapy.
Area of Science:
- Coagulation science
- Hemostasis research
- Biochemistry of blood clotting
Background:
- Tissue factor pathway inhibitor (TFPI) is an endogenous protein regulating coagulation.
- TFPI inhibits the tissue factor (TF)-initiated pathway by targeting activated factor X (FXa).
- Heparin administration significantly increases circulating TFPI levels.
Purpose of the Study:
- To investigate the impact of TFPI on coagulation kinetics using thrombelastography (TEG).
- To understand how TFPI influences TEG parameters in various plasma and whole blood samples.
- To assess the clinical relevance of TFPI in interpreting TEG data, especially during heparin therapy.
Main Methods:
- Exposing whole blood, Factor VII-deficient plasma, and normal plasma to varying TFPI concentrations in vitro.
- Performing unmodified, celite-activated, and TF-activated TEG assays.
- Analyzing changes in coagulation kinetics and clot strength.
Main Results:
- TFPI prolonged clot propagation in whole blood at concentrations of 87.5 ng/mL and higher.
- Significant effects on clot propagation and strength were observed at 175 ng/mL TFPI.
- TFPI's suppression of coagulation was confirmed to be FXa-mediated.
- Celite activation reduced TFPI's effect, while TF activation enhanced TFPI-induced prolongation of initiation and reduced propagation.
Conclusions:
- TFPI significantly influences TEG results, particularly clot initiation and propagation.
- The impact of TFPI on TEG is dependent on the activation method used.
- Consider TFPI's inhibitory effects on coagulation during TEG monitoring in patients receiving heparin.
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