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Lack of the Antioxidant Enzyme Glutathione Peroxidase-1 Accelerates Atherosclerosis in Diabetic Apolipoprotein E–Deficient Mice

内科学 内分泌学 促炎细胞因子 医学 载脂蛋白E GPX1型 糖尿病 CTGF公司 谷胱甘肽过氧化物酶 血管内皮生长因子 糖基化 生长因子 受体 炎症 超氧化物歧化酶 氧化应激 疾病 血管内皮生长因子受体
作者
Paul L. Lewis,Nada Stefanovic,Josefa Pete,Anna C. Calkin,Sara Giunti,Vicki Thallas‐Bonke,Karin Jandeleit‐Dahm,Terri J. Allen,Ismail Kola,Mark E. Cooper,Judy B. de Haan
出处
期刊:Circulation [Ovid Technologies (Wolters Kluwer)]
卷期号:115 (16): 2178-2187 被引量:242
标识
DOI:10.1161/circulationaha.106.664250
摘要

Background— Recent clinical studies have suggested a major protective role for the antioxidant enzyme glutathione peroxidase-1 (GPx1) in diabetes-associated atherosclerosis. We induced diabetes in mice deficient for both GPx1 and apolipoprotein E (ApoE) to determine whether this is merely an association or whether GPx1 has a direct effect on diabetes-associated atherosclerosis. Methods and Results— ApoE-deficient (ApoE −/− ) and ApoE/GPx1 double-knockout (ApoE −/− GPx1 −/− ) mice were made diabetic with streptozotocin and aortic lesion formation, and atherogenic pathways were assessed after 10 and 20 weeks of diabetes. Aortic proinflammatory and profibrotic markers were determined by both quantitative reverse-transcription polymerase chain reaction analysis after 10 weeks of diabetes and immunohistochemical analysis after 10 and 20 weeks of diabetes. Sham-injected nondiabetic counterparts served as controls. Atherosclerotic lesions within the aortic sinus region, as well as arch, thoracic, and abdominal lesions, were significantly increased in diabetic ApoE −/− GPx1 −/− aortas compared with diabetic ApoE −/− aortas. This increase was accompanied by increased macrophages, α-smooth muscle actin, receptors for advanced glycation end products, and various proinflammatory (vascular cell adhesion molecule-1) and profibrotic (vascular endothelial growth factor and connective tissue growth factor) markers. Quantitative reverse-transcription polymerase chain reaction analysis showed increased expression of receptors for advanced glycation end products (RAGE), vascular cell adhesion molecule-1, vascular endothelial growth factor, and connective tissue growth factor. Nitrotyrosine levels were significantly increased in diabetic ApoE −/− GPx1 −/− mouse aortas. These findings were observed despite upregulation of other antioxidants. Conclusions— Lack of functional GPx1 accelerates diabetes-associated atherosclerosis via upregulation of proinflammatory and profibrotic pathways in ApoE −/− mice. Our study provides evidence of a protective role for GPx1 and establishes GPx1 as an important antiatherogenic therapeutic target in patients with or at risk of diabetic macrovascular disease.
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