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首页> 外文期刊>American Journal of Physiology >Direct evidence of a role for Nox2 in superoxide production, reduced nitric oxide bioavailability, and early atherosclerotic plaque formation in ApoE-/- mice.
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Direct evidence of a role for Nox2 in superoxide production, reduced nitric oxide bioavailability, and early atherosclerotic plaque formation in ApoE-/- mice.

机译:直接证据表明NOX2在超氧化物生产中的作用,减少一氧化氮生物利用度和ApoE - /小鼠早期动脉粥样硬化斑块形成。

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The Nox family NADPH oxidases are reactive oxygen species (ROS)-generating enzymes that are strongly implicated in atherogenesis. However, no studies have examined which Nox isoform(s) are involved. Here we investigated the role of the Nox2-containing NADPH oxidase in atherogenesis in apolipoprotein E-null (ApoE(-/-)) mice. Wild-type (C57Bl6/J), ApoE(-/-), and Nox2(-/y)/ApoE(-/-) mice were maintained on a high-fat (21%) diet from 5 wk of age until they were 12 or 19 wk old. Mice were euthanized and their aortas removed for measurement of Nox2 expression (Western blot analysis and immunohistochemistry), ROS production (L012-enhanced chemiluminescence), nitric oxide (NO) bioavailability (contractions to N(omega)-nitro-L-arginine), and atherosclerotic plaque development along the aorta and in the aortic sinus. Nox2 expression was upregulated in the aortic endothelium of ApoE(-/-) mice before the appearance of lesions, and this was associated with elevated ROS levels. Within developing plaques, macrophages were also a prominent source of Nox2. The absence of Nox2 in Nox2(-/y)/ApoE(-/-) double-knockout mice had minimal effects on plasma lipids or lesion development in the aortic sinus in animals up to 19 wk of age. However, an en face examination of the aorta from the arch to the iliac bifurcation revealed a 50% reduction in lesion area in Nox2(-/y)/ApoE(-/-) versus ApoE(-/-) mice, and this was associated with a marked decrease in aortic ROS production and an increased NO bioavailability. In conclusion, this is the first demonstration of a role for Nox2-NADPH oxidase in vascular ROS production, reduced NO bioavailability, and early lesion development in ApoE(-/-) mice, highlighting this Nox isoform as a potential target for future therapies for atherosclerosis.
机译:NOx系列NADPH氧化酶是反应性氧物质(ROS) - 生成酶,其牢固地涉及血液发生。然而,没有研究研究涉及哪种NOx同种型。在这里,我们研究了含NOx2的NADPH氧化酶在载脂蛋白E-NULL(ApoE( - / - ))小鼠中的发生中的作用。野生型(C57BL6 / J),ApoE( - / - )和NOX2( - / Y)/ ApoE( - / - )小鼠在5周龄的高脂肪(21%)饮食中保持直至它们年龄为12或19周。使小鼠制止并除去它们的主动脉,用于测量NOx2表达(Western印迹分析和免疫组织化学),ROS生产(L012-增强化学发光),一氧化氮(NO)生物利用度(与N(OMEGA) - Nitro-L-精氨酸的收缩),和主动脉和主动脉窦的动脉粥样硬化斑块。在病变外观之前的Apoe(/ - / - )小鼠的主动脉内皮内上调NOx2表达,这与ROS水平升高有关。在开发斑块内,巨噬细胞也是NOX2的突出来源。没有NOx2( - / Y)/ apoE( - / - )双敲除小鼠的缺失对动物的主动脉脂质或病变在动物中的血浆脂质或病变发育中的效果最小,高达19周。然而,从弓形到髂骨分叉的主动脉的en面部检查显示NOx2( - / Y)/ apoE( - / - )小鼠中的病变面积减少了50%,而apoe( - / - )小鼠。与主动脉ROS产生的显着降低相关,并且没有增加生物利用度。总之,这是第一次证明NOX2-NADPH氧化酶在血管ROS生产中的作用,在Apoe(/ - )小鼠中没有生物利用度,以及早期病变发育,突出显示该NOx异构作为未来疗法的潜在目标动脉粥样硬化。

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