Neutrophil microvesicles drive atherosclerosis by delivering miR-155 to atheroprone endothelium

Author:

Gomez Ingrid,Ward Ben,Souilhol Celine,Recarti Chiara,Ariaans MarkORCID,Johnston JessicaORCID,Burnett Amanda,Mahmoud Marwa,Luong Le Anh,West LauraORCID,Long Merete,Parry Sion,Woods RachelORCID,Hulston CarlORCID,Benedikter BirkeORCID,Niespolo Chiara,Bazaz Rohit,Francis SheilaORCID,Kiss-Toth EndreORCID,van Zandvoort Marc,Schober AndreasORCID,Hellewell PaulORCID,Evans Paul C.,Ridger VictoriaORCID

Abstract

AbstractNeutrophils are implicated in the pathogenesis of atherosclerosis but are seldom detected in atherosclerotic plaques. We investigated whether neutrophil-derived microvesicles may influence arterial pathophysiology. Here we report that levels of circulating neutrophil microvesicles are enhanced by exposure to a high fat diet, a known risk factor for atherosclerosis. Neutrophil microvesicles accumulate at disease-prone regions of arteries exposed to disturbed flow patterns, and promote vascular inflammation and atherosclerosis in a murine model. Using cultured endothelial cells exposed to disturbed flow, we demonstrate that neutrophil microvesicles promote inflammatory gene expression by delivering miR-155, enhancing NF-κB activation. Similarly, neutrophil microvesicles increase miR-155 and enhance NF-κB at disease-prone sites of disturbed flow in vivo. Enhancement of atherosclerotic plaque formation and increase in macrophage content by neutrophil microvesicles is dependent on miR-155. We conclude that neutrophils contribute to vascular inflammation and atherogenesis through delivery of microvesicles carrying miR-155 to disease-prone regions.

Funder

British Heart Foundation

RCUK | MRC | Medical Research Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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