4.6 Article

An optimized murine model of ferric chloride-induced arterial thrombosis for thrombosis research

Journal

THROMBOSIS RESEARCH
Volume 115, Issue 1-2, Pages 95-100

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.thromres.2004.07.009

Keywords

animal model; antithrombotic; arterial thrombosis; hemostasis; mouse

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Introduction/Objectives: Animal models are important tools in thrombosis research and preclinical drug development. Ferric chloride has been widely used to induce arterial thrombosis in a variety of species. However, almost all previous reports applied a very high concentration of ferric chloride (10-60%) to induce thrombus formation leading to difficulties in evaluating the efficacy of antithrombotic agents. Thus, the purpose of this study was to refine the ferric-chloride-induced thrombosis model to be better suited for thrombosis research. Methods and results: Dose-dependent study was used to identify a threshold concentration of ferric chloride sufficient for consistent occlusion (as reflected by the Doppler blood flow) of the carotid artery in C57BL/6 mice. Ferric chloride concentration at or about a threshold of 2.5% was found to be sensitive to anticoagulant (e.g., heparin) and antiplatelet (e.g., clopidogrel) agents. In contrast, the vessel rapidly occluded at or above 5% ferric chloride concentration despite pretreatment with the antithrombotic agents, even at doses that exerted maximal prolongation of tail bleeding time. Conclusions: Our study provides a simple, sensitive and highly controlled method for limiting vessel injury in mice to better detect the efficacy of antithrombotic drugs and/or evaluate therapeutic targets. (C) 2004 Elsevier Ltd. All rights reserved.

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