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Updated: Aug 6, 2026

Ferric Chloride-induced Murine Thrombosis Models
Published on: September 5, 2016
Antithrombotic action of annexin V proved as efficient as direct inhibition of tissue factor or thrombin
A M Galán1, W L van Heerde, G Escolar
1Servicio de Hemoterapia y Hemostasia. Hospital Clínic, CDB, IDIBAPS, Facultad de Medicina, Barcelona, Spain. agalan@clinic.ub.es
Abstract:
The role of phospholipid platelet membrane and tissue factor in thrombin generation and thrombus formation is accepted. In the present study we have explored antithrombotic action of strategies aimed to block exposure of negatively charged phospholipids and we compared effects with those obtained through tissue factor or a direct thrombin inhibition. Type III collagen was exposed to flowing blood (5 min, 300 s(-1)). Effects of inhibition of platelet deposition by annexin A5 (ANXA5), hirudin (HIR) or by an antibody against tissue factor (TF) were evaluated. Prothrombin fragment F1 + 2 (F1 + 2) was monitored. Pre-incubation of whole blood with HIR or ANXA5 resulted in a statistically significant reduction of platelet deposition (12.2 +/- 0.6% in control experiments vs. 8.3 +/- 0.4% and 8.5 +/- 0.5%, respectively, P < 0.05). A similar decrease was found when blood was incubated with an antibody against TF. Furthermore, ANXA5 and HIR inhibited the recruitment of platelets into forming aggregates. The height of platelet aggregates generated was decreased in the presence of HIR or ANXA5, but only incubation with both inhibitors reached levels of statistical significance. The presence of ANXA5 or HIR decreased levels of F1 + 2 suggesting a reduced activation of the coagulation system. In our experimental studies, the inhibitory potential of ANXA5 on platelet-thrombus formation was as effective as that of a direct thrombin inhibitor, as HIR, or an antibody against TF. Negatively charged phospholipids exposed on activated platelets potentiate the formation of platelet aggregates on a collagen surface and further suggest that inhibition of platelet procoagulant activity might be a specific target for antithrombotic drugs.
Insights
Blocking negatively charged phospholipids with annexin A5 (ANXA5) effectively inhibits thrombus formation, similar to direct thrombin or tissue factor inhibition. This highlights platelet procoagulant activity as a key antithrombotic target.
Area of Science:
- Biochemistry
- Hematology
- Pharmacology
Background:
- Platelet membrane phospholipids and tissue factor are crucial for thrombin generation and thrombus formation.
- Strategies to block negatively charged phospholipid exposure are explored for antithrombotic effects.
Purpose of the Study:
- To investigate the antithrombotic potential of blocking negatively charged phospholipids.
- To compare this strategy with tissue factor inhibition and direct thrombin inhibition.
Main Methods:
- Type III collagen was exposed to flowing blood.
- Inhibition of platelet deposition was assessed using annexin A5 (ANXA5), hirudin (HIR), and an antibody against tissue factor (TF).
- Prothrombin fragment F1 + 2 (F1 + 2) levels were monitored.
Main Results:
- ANXA5 and HIR significantly reduced platelet deposition compared to controls.
- An antibody against TF also decreased platelet deposition.
- ANXA5 and HIR inhibited platelet aggregate recruitment and formation.
- Both ANXA5 and HIR reduced F1 + 2 levels, indicating decreased coagulation activation.
Conclusions:
- ANXA5 demonstrated comparable antithrombotic efficacy to HIR and anti-TF antibody.
- Inhibition of platelet procoagulant activity, specifically blocking negatively charged phospholipids, is a promising antithrombotic strategy.
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