Key result
Amiodarone reduced tissue factor activity and impaired carotid artery thrombus formation in a mouse photochemical injury model, and inhibited TF protein translation in human vascular cells.
Why the study?
Does amiodarone inhibit tissue factor expression and thrombus formation in preclinical models?
Does amiodarone inhibit tissue factor expression and thrombus formation in preclinical models?
Amiodarone exhibits pleiotropic antithrombotic effects by inhibiting tissue factor translation and thrombus formation at clinically relevant concentrations.
Amiodarone may exert antithrombotic effects via TF inhibition; hypothesis-generating for mechanisms underlying mortality benefit in CAD with reduced EF.
BACKGROUND: In patients with coronary artery disease and reduced ejection fraction, amiodarone reduces mortality by decreasing sudden death. Because the latter may be triggered by coronary artery thrombosis as much as ventricular arrhythmias, amiodarone might interfere with tissue factor (TF) expression and thrombus formation. METHODS AND RESULTS: Clinically relevant plasma concentrations of amiodarone reduced TF activity and impaired carotid artery thrombus formation in a mouse photochemical injury model in vivo. PTT, aPTT, and tail bleeding time were not affected; platelet number was slightly decreased. In human endothelial and vascular smooth muscle cells, amiodarone inhibited tumor necrosis factor (TNF)-alpha and thrombin-induced TF expression as well as surface activity. Amiodarone lacking iodine and the main metabolite of amiodarone, N-monodesethylamiodarone, inhibited TF expression. Amiodarone did not affect mitogen-activated protein kinase activation, TF mRNA expression, and TF protein degradation. Metabolic labeling confirmed that amiodarone inhibited TF protein translation. CONCLUSIONS: Amiodarone impairs thrombus formation in vivo; in line with this, it inhibits TF protein expression and surface activity in human vascular cells. These pleiotropic actions occur within the range of amiodarone concentrations measured in patients, and thus may account at least in part for its beneficial effects in patients with coronary artery disease.
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Breitenstein et al. (2008) studied this question. Amiodarone was evaluated on Tissue factor activity and carotid artery thrombus formation. Amiodarone reduced tissue factor activity and impaired carotid artery thrombus formation in a mouse photochemical injury model, and inhibited TF protein translation in human vascular cells.
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