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April 27, 2014Journal of Thrombosis and Haemostasis67 citationsOpen Access

Direct thrombin inhibitors, but not the direct factor Xa inhibitor rivaroxaban, increase tissue factor‐induced hypercoagulability in vitro and in vivo

EPElisabeth PerzbornSHStefan HeitmeierUBUlf Buetehorn

Structured PICO

Do direct thrombin inhibitors and direct factor Xa inhibitors differentially affect tissue factor-induced hypercoagulability in vitro and in vivo?

P
Population
Normal human plasma, protein C-deficient plasma (in vitro), and an in vivo rat model of tissue factor-induced hypercoagulability
I
Intervention
Rivaroxaban, melagatran, and dabigatran
C
Comparator
Control conditions (absence of recombinant human soluble thrombomodulin) and dose comparisons
O
Outcome
Thrombin generation (endogenous thrombin potential, peak TG, F1+2 formation) and in vivo hypercoagulability markers (thrombin-antithrombin levels, fibrinogen, and platelet count)surrogate

Low concentrations of direct thrombin inhibitors (melagatran, dabigatran) paradoxically enhance thrombin generation and hypercoagulability, likely via protein C system inhibition, whereas the factor Xa inhibitor rivaroxaban consistently reduces hypercoagulability.

Abstract

BACKGROUND: Increased hypercoagulability has been reported with low doses of direct thrombin inhibitors but not with direct factor Xa inhibitors. OBJECTIVES: To compare the effects of rivaroxaban with those of melagatran and dabigatran on thrombin generation (TG) and tissue factor-induced hypercoagulability and to explore the possible involvement of the thrombin-thrombomodulin/activated protein C system. METHODS: In normal human plasma and in protein C-deficient plasma, TG was investigated in vitro in the presence and absence of recombinant human soluble thrombomodulin (rhs-TM). TG was determined by calibrated automated thrombography and an ELISA for prothrombin fragments 1+2 (F1+2 ). In an in vivo rat model, hypercoagulability was induced by tissue factor; levels of thrombin-antithrombin (TAT) and fibrinogen and the platelet count were determined. RESULTS: Rivaroxaban inhibited TG in a concentration-dependent manner. In the absence of rhs-TM, melagatran and dabigatran also inhibited TG concentration dependently. However, in the presence of rhs-TM, lower concentrations of melagatran (119-474 nmol L(-1) ) and dabigatran (68-545 nmol L(-1) ) enhanced endogenous thrombin potential, peak TG, and F1+2 formation in normal plasma but not in protein C-deficient plasma. In vivo, rivaroxaban dose-dependently inhibited TAT generation, whereas melagatran showed a paradoxical effect, with an increase in TAT and a small decrease in fibrinogen and platelet count at lower doses. CONCLUSION: Low concentrations of the direct thrombin inhibitors melagatran and dabigatran enhanced TG and hypercoagulability, possibly via inhibition of the protein C system. In contrast, rivaroxaban reduced TG and hypercoagulability under all conditions studied, suggesting that it does not suppress this negative-feedback system.

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Cite This Study

Perzborn et al. (2014) studied this question.

synapsesocial.com/papers/6a76b736576efb0ddaf6c50ahttps://doi.org/10.1111/jth.12591
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Direct Thrombin Inhibitors, but Not Factor Xa Inhibitors, Enhance Thrombin Formation in Human Plasma by Interfering with the Thrombin–Thrombomodulin–Protein C System2008 · 13 citations
  2. 2An in-vitro evaluation of direct thrombin inhibitor and factor Xa inhibitor on tissue factor-induced thrombin generation and platelet aggregation2016 · 21 citations
  3. 3Antithrombin-independent thrombin inhibitors, but not direct factor Xa inhibitors, enhance thrombin generation in plasma through inhibition of thrombin-thrombomodulin-protein C system2011 · 60 citations
  4. 4Abstract 34: Impact of Thrombomodulin and Thrombin-activatable Fibrinolysis Inhibitor on the Anti-coagulant and Pro-fibrinolytic Effects of Rivaroxaban2016 · 1 citations
  5. 5Comparative Evaluation of Direct Thrombin and Factor Xa Inhibitors with Antiplatelet Agents under Flow and Static Conditions: An In Vitro Flow Chamber Model2014 · 25 citations