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Updated: Mar 26, 2026

Quantification of Atherosclerosis in Mice
Published on: June 12, 2019
Factor XI Deficiency Protects Against Atherogenesis in Apolipoprotein E/Factor XI Double Knockout Mice
Reut Shnerb Ganor1, Dror Harats1, Ginette Schiby1
1From the The Bert W. Strassburger Lipid Center (R.S.G., D.H., H.L., A.S.) and Department of Pathology (G.S., C.A.), and Thrombosis Unit (R.S.G., I.T., O.S.), Sheba Medical Center, Tel-Hashomer, Israel; Sackler Faculty of Medicine (R.S.G., D.H., G.S., H.L., C.A., I.T., O.S.), Tel-Aviv University, Tel-Aviv, Israel; and Department of Pathology, Microbiology, and Immunology, Vanderbilt University, Nashville, TN (D.G.).
Objective:
Atherosclerosis and atherothrombosis are still major causes of mortality in the Western world, even after the widespread use of cholesterol-lowering medications. Recently, an association between local thrombin generation and atherosclerotic burden has been reported. Here, we studied the role of factor XI (FXI) deficiency in the process of atherosclerosis in mice.
Approach And Results:
Apolipoprotein E/FXI double knockout mice, created for the first time in our laboratory. There was no difference in cholesterol levels or lipoprotein profiles between apolipoprotein E knockout and double knockout mice. Nevertheless, in 24-week-old double knockout mice, the atherosclerotic lesion area in the aortic sinus was reduced by 32% (P=0.004) in comparison with apolipoprotein E knockout mice. In 42-week-old double knockout mice, FXI deficiency inhibited atherosclerosis progression significantly in the aortic sinus (25% reduction, P=0.024) and in the aortic arch (49% reduction, P=0.028), with a prominent reduction of macrophage infiltration in the atherosclerotic lesions.
Conclusions:
FXI deprivation was shown to slow down atherogenesis in mice. The results suggest that the development of atherosclerosis can be prevented by targeting FXI.
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