Ferric chloride-induced murine carotid arterial injury: A model of redox pathology☆
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[1] T. McIntyre,et al. Circulating biologically active oxidized phospholipids show on-going and increased oxidative stress in older male mice , 2013, Redox biology.
[2] P. Libby. Inflammation in Atherosclerosis , 2012, Arteriosclerosis, thrombosis, and vascular biology.
[3] R. Silverstein,et al. Advanced glycation end products induce a prothrombotic phenotype in mice via interaction with platelet CD36. , 2012, Blood.
[4] B. Cooley. Murine models of thrombosis. , 2012, Thrombosis research.
[5] H. Deckmyn,et al. Model systems of genetically modified platelets. , 2012, Blood.
[6] N. Mackman,et al. Towards a standardization of the murine ferric chloride‐induced carotid arterial thrombosis model , 2011, Journal of thrombosis and haemostasis : JTH.
[7] J. Major,et al. Vav guanine nucleotide exchange factors link hyperlipidemia and a prothrombotic state. , 2011, Blood.
[8] M. Freund,et al. Mechanisms underlying FeCl3‐induced arterial thrombosis , 2011, Journal of thrombosis and haemostasis : JTH.
[9] G. Vilahur,et al. Atherosclerosis and Thrombosis: Insights from Large Animal Models , 2011, Journal of biomedicine & biotechnology.
[10] S. Reddy,et al. CD36 participates in a signaling pathway that regulates ROS formation in murine VSMCs. , 2010, The Journal of clinical investigation.
[11] I. Fearon,et al. Oxidative stress and cardiovascular disease: novel tools give (free) radical insight. , 2009, Journal of molecular and cellular cardiology.
[12] S. Jackson,et al. Erythrocyte Hemolysis and Hemoglobin Oxidation Promote Ferric Chloride-induced Vascular Injury* , 2009, Journal of Biological Chemistry.
[13] E. Topol,et al. Deficiency of LRP8 in mice is associated with altered platelet function and prolonged time for in vivo thrombosis. , 2009, Thrombosis research.
[14] Christine M. Miller,et al. Vascular smooth muscle-derived tissue factor is critical for arterial thrombosis after ferric chloride-induced injury. , 2009, Blood.
[15] R. Silverstein,et al. A Specific CD36-Dependent Signaling Pathway Is Required for Platelet Activation by Oxidized Low-Density Lipoprotein , 2008, Circulation research.
[16] K. McCrae,et al. Platelet CD36 mediates interactions with endothelial cell-derived microparticles and contributes to thrombosis in mice. , 2008, The Journal of clinical investigation.
[17] Taghreed Adam,et al. The burden and costs of chronic diseases in low-income and middle-income countries , 2007, The Lancet.
[18] R. Westrick,et al. Murine Models of Vascular Thrombosis , 2007 .
[19] Deepak L. Bhatt,et al. Clinical Aspects of Platelet Inhibitors and Thrombus Formation , 2007, Circulation research.
[20] S. Day,et al. Murine thrombosis models , 2004, Thrombosis and Haemostasis.
[21] D. Loskutoff,et al. Plasminogen Activator Inhibitor-1 and Its Cofactor Vitronectin Stabilize Arterial Thrombi After Vascular Injury in Mice , 2001, Circulation.
[22] C. Dunwiddie,et al. Pharmacodynamic activity and antithrombotic efficacy of RPR120844, a novel inhibitor of coagulation factor Xa. , 1999, Journal of cardiovascular pharmacology.
[23] S. Gardell,et al. Assessment of Thrombin Inhibitor Efficacy in a Novel Rabbit Model of Simultaneous Arterial and Venous Thrombosis , 1998, Thrombosis and Haemostasis.
[24] G. Sandusky,et al. Rat model of arterial thrombosis induced by ferric chloride. , 1990, Thrombosis research.
[25] M. Samama,et al. Ultrastructure of a model of thrombogenesis induced by mechanical injury. , 1981, Journal of submicroscopic cytology.
[26] V. Fuster,et al. The year in atherothrombosis. , 2013, Journal of the American College of Cardiology.
[27] R. Silverstein,et al. Mechanisms of cell signaling by the scavenger receptor CD36: implications in atherosclerosis and thrombosis. , 2010, Transactions of the American Clinical and Climatological Association.
[28] H. Whinna,et al. Overview of murine thrombosis models. , 2008, Thrombosis research.
[29] R. Westrick,et al. Murine models of vascular thrombosis (Eitzman series). , 2007, Arteriosclerosis, thrombosis, and vascular biology.