The fibrinogen αC region promotes arterial thrombosis in the context of hypofibrinogenemia
Abstract
Abstract Hypofibrinogenemia reduces experimental venous thrombosis, but the impact on arterial thrombosis remains unknown. In a cohort of patients with congenital fibrinogen disorders, 19 of 264 (∼7%) patients developed arterial thrombosis, including 4 of 41 (∼10%) patients with hypofibrinogenemia. However, 0 of 8 patients with fibrinogen αC-region truncation mutations reported arterial thrombosis over 286 patient-years. To analyze the impact of hypofibrinogenemia and the fibrinogen αC region on arterial thrombosis, 2 mouse models were employed: (1) wild-type mice treated with lipid nanoparticles encapsulating small interfering RNA against fibrinogen (siFga) and (2) Fga270/270 hypofibrinogenemic mice expressing fibrinogen with a truncated αC region. Although siFga-treated hypofibrinogenemic mice developed occlusive carotid artery thrombi similarly to controls, Fga270/270 mice displayed suppressed carotid thrombosis following FeCl3 challenge, indicating loss of the αC region but not hypofibrinogenemia alone reduces arterial thrombosis. To determine if protection from arterial thrombosis in Fga270/270 mice was linked to loss of αC-region–platelet glycoprotein VI receptor (GPVI) interaction, platelet GPVI was depleted by JAQ1 antibody administration. JAQ1-treated wild-type mice were protected from arterial thrombosis following 5% FeCl3 but not 10% FeCl3 challenge. Interestingly, JAQ1 administration suppressed arterial thrombosis in siFga-treated mice but did not enhance protection in Fga270/270 mice following 10% FeCl3 challenge. Our studies suggest the fibrinogen αC region promotes arterial thrombosis in hypofibrinogenemic conditions.
Article Details
Authors (12)
Robert H. Lee
Francesca Ferraresso
3Department of Biochemistry and Molecular Biology, The University of British Columbia, Vancouver, BC, Canada
Alexander Couzens
5Department of Genetic Medicine and Development, Faculty of Medicine, University of Geneva, Geneva, Switzerland
Angelica T. Jameson
2UNC Blood Research Center, The University of North Carolina at Chapel Hill, Chapel Hill, NC
Haley E. Hanes
2UNC Blood Research Center, The University of North Carolina at Chapel Hill, Chapel Hill, NC
Alessandro Casini
8Division of Angiology and Hemostasis, University Hospitals of Geneva, Geneva, Switzerland
Marguerite Neerman-Arbez
5Department of Genetic Medicine and Development, Faculty of Medicine, University of Geneva, Geneva, Switzerland
Bernhard Nieswandt
9Institute of Experimental Biomedicine I, Würzburg, Germany
Christian J. Kastrup
Versiti Blood Research Institute, Milwaukee, Wisconsin, United States
Wolfgang Bergmeier
Matthew J. Flick
2Department of Pathology and Laboratory Medicine, UNC Blood Research Center, University of North Carolina at Chapel Hill, Chapel Hill, NC
Woosuk S. Hur
2UNC Blood Research Center, The University of North Carolina at Chapel Hill, Chapel Hill, NC