ADAMTS13 modulates atherosclerotic plaque progression in mice via a VWF-dependent mechanism

38Citations
Citations of this article
39Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

Background: ADAMTS13 reduces the adhesiveness of hyperactive ultra-large von Willebrand factor (ULVWF) multimers by cleaving them into smaller, less active multimers. Recently, we and others have demonstrated that ADAMTS13 reduces atherosclerosis in hypercholesteremic apolipoprotein E (ApoE-/-) deficient mice. It is not known whether ADAMTS13 modulates atherosclerosis directly or indirectly by cleaving ULVWF multimers. Objective: We generated triple knockout Adamts13-/-/Vwf-/-/ApoE-/- mice to determine whether ADAMTS13 modulates atherosclerosis through its proteolytic effects on VWF or other potential mechanisms. Methods: Female mice were fed a high-fat Western diet beginning at 6 weeks of age until they were sacrificed at 4 months. We compared the extent of atherosclerosis in the serial cross-sections of the aortic sinus using the Verhoeff-Van Gieson stain. Macrophage and neutrophil infiltration were quantified by immunohistochemistry. Under plain polarized light interstitial collagen content in the serial cross-sections of the aortic sinus was quantified using picrosirius red stain. Results: Deficiency of VWF in Adamts13-/-/ApoE-/- mice (Adamts13-/-/Vwf-/-/ApoE-/-) completely reversed exacerbated atherosclerosis (P < 0.05 vs. Adamts13-/-/ApoE-/- mice). The lesion size, macrophage and neutrophil infiltration in the aortic sinus of Adamts13-/-/Vwf-/-/ApoE-/- mice were significantly decreased compared with Adamts13-/-/ApoE-/- mice (P < 0.05), but similar to Vwf-/-/ApoE-/- mice. Additionally, interstitial collagen content in the aortic sinus of Adamts13-/-/Vwf-/-/ApoE-/- mice was significantly reduced compared with Adamts13-/-/ApoE-/- mice (P < 0.05), but similar to Vwf-/-/ApoE-/- mice. Total cholesterol and triglyceride levels were similar among groups. Conclusions: ADAMTS13 modulates inflammatory plaque progression in hypercholesterolemic mice through a VWF-dependent mechanism. These findings provide further evidence on the pathophysiological role for the ADAMTS13/VWF axis in atherosclerosis. © 2013 International Society on Thrombosis and Haemostasis.

Cite

CITATION STYLE

APA

Gandhi, C., Ahmad, A., Wilson, K. M., & Chauhan, A. K. (2014). ADAMTS13 modulates atherosclerotic plaque progression in mice via a VWF-dependent mechanism. Journal of Thrombosis and Haemostasis, 12(2), 255–260. https://doi.org/10.1111/jth.12456

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free