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Updated: Sep 26, 2025

Ferric Chloride-induced Murine Thrombosis Models
Published on: September 5, 2016
Protease-activated receptor antagonists prevent thrombosis when dual antiplatelet therapy is insufficient in an
Jess Berry1, Matthew T Harper1
1Department of Pharmacology University of Cambridge Cambridge UK.
Insights
Dual antiplatelet therapy (DAPT) is insufficient for preventing arterial thrombosis in some patients. Combining DAPT with protease-activated receptor (PAR) antagonists effectively prevents thrombosis, suggesting a new therapeutic approach.
Area of Science:
- Cardiovascular Medicine
- Hematology
- Pharmacology
Background:
- Arterial thrombosis on ruptured atherosclerotic plaques causes myocardial infarction.
- Dual antiplatelet therapy (DAPT) with aspirin and a P2Y12 antagonist is standard but insufficient for some patients.
- This highlights the need for additional therapies to prevent thrombosis when DAPT fails.
Purpose of the Study:
- To investigate if protease-activated receptor (PAR) antagonists can prevent occlusive thrombosis when DAPT is insufficient.
- To evaluate the efficacy of PAR1 and PAR4 antagonists, alone and with DAPT, in preventing thrombosis.
Main Methods:
- Human whole blood was used in a microfluidic model of occlusive thrombosis.
- Dual antiplatelet therapy (DAPT) was mimicked using cangrelor (a P2Y12 antagonist) and aspirin.
- The effects of PAR1 antagonist vorapaxar and PAR4 antagonist BMS 986120 were tested, alone and combined with DAPT.
Main Results:
- DAPT prevented occlusive thrombosis without tissue factor (TF).
- DAPT had limited effect when TF was present, a condition common in ruptured plaques.
- PAR antagonists alone were ineffective, but combining DAPT with PAR antagonists prevented thrombosis in TF-present conditions.
Conclusions:
- Protease-activated receptor (PAR) antagonists may be a valuable addition to dual antiplatelet therapy (DAPT) for patients with persistent arterial thrombosis.
- This study validates the use of in vitro models for evaluating antithrombotic therapies.
Background:
Platelet activation and arterial thrombosis on a ruptured atherosclerotic plaque is a major cause of myocardial infarction. Dual antiplatelet therapy (DAPT), the combination of platelet aggregation inhibitors, aspirin and a P2Y12 antagonist, is used to prevent arterial thrombosis. However, many people continue to have arterial thrombosis and myocardial infarction despite DAPT, indicating that additional therapies are required where DAPT is insufficient.
Objectives:
To determine whether antagonists of protease-activated receptors (PARs) can prevent occlusive thrombosis under conditions where DAPT is insufficient.
Methods:
We used human whole blood in a microfluidic model of occlusive thrombosis to compare conditions under which DAPT is effective to those under which DAPT was not. Cangrelor (a P2Y12 antagonist) and aspirin were used to mimic DAPT. We then investigated whether the PAR1 antagonist vorapaxar or the PAR4 antagonist BMS 986120, alone or in combination with DAPT, prevented occlusive thrombosis.
Results And Conclusions:
A ruptured plaque exposes collagen fibers and is often rich in tissue factor, triggering activation of platelets and coagulation. Occlusive thrombi formed on type I collagen in the presence or absence of tissue factor (TF). However, although DAPT prevented occlusive thrombosis in the absence of TF, DAPT had little effect when TF was also present. Under these conditions, PAR antagonism was also ineffective. However, occlusive thrombosis was prevented by combining DAPT with PAR antagonism. These data demonstrate that PAR antagonists may be a useful addition to DAPT in some patients and further demonstrate the utility of in vitro models of occlusive thrombosis.
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