Xanthine Oxidase Inhibition by Febuxostat Attenuates Experimental Atherosclerosis in Mice

Johji Nomura(Teijin (Japan)), Nathalie Busso(University Hospital of Lausanne), Annette Ives(University Hospital of Lausanne), Chieko Matsui(Teijin (Japan)), Syunsuke Tsujimoto(Teijin (Japan)), Takashi Shirakura(Teijin (Japan)), Mizuho Tamura(Teijin (Japan)), Tsunefumi Kobayashi(Teijin (Japan)), Alexander So(University Hospital of Lausanne), Yoshihiro Yamanaka(Teijin (Japan))
Scientific Reports
April 1, 2014
Cited by 184Open Access
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Abstract

Atherosclerosis is a chronic inflammatory disease due to lipid deposition in the arterial wall. Multiple mechanisms participate in the inflammatory process, including oxidative stress. Xanthine oxidase (XO) is a major source of reactive oxygen species (ROS) and has been linked to the pathogenesis of atherosclerosis, but the underlying mechanisms remain unclear. Here, we show enhanced XO expression in macrophages in the atherosclerotic plaque and in aortic endothelial cells in ApoE(-/-) mice, and that febuxostat, a highly potent XO inhibitor, suppressed plaque formation, reduced arterial ROS levels and improved endothelial dysfunction in ApoE(-/-) mice without affecting plasma cholesterol levels. In vitro, febuxostat inhibited cholesterol crystal-induced ROS formation and inflammatory cytokine release in murine macrophages. These results demonstrate that in the atherosclerotic plaque, XO-mediated ROS formation is pro-inflammatory and XO-inhibition by febuxostat is a potential therapy for atherosclerosis.


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