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首页> 外文期刊>Atherosclerosis >Nitric oxide activates PI3-K and MAPK signalling pathways in human and rat vascular smooth muscle cells: influence of insulin resistance and oxidative stress.
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Nitric oxide activates PI3-K and MAPK signalling pathways in human and rat vascular smooth muscle cells: influence of insulin resistance and oxidative stress.

机译:一氧化氮激活人和大鼠血管平滑肌细胞中的PI3-K和MAPK信号通路:胰岛素抵抗和氧化应激的影响。

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摘要

OBJECTIVE: Vascular smooth muscle cells (VSMCs) from the animal model of insulin resistance obese Zucker rats (OZR) show impaired ability of nitric oxide (NO) to increase cGMP and of cGMP to activate its specific kinase PKG, these defects being attributable to oxidative stress. We aimed to investigate the intracellular signalling downstream PKG in human and rat VSMC, and to clarify whether it is modified by insulin resistance and oxidative stress. METHODS: In aortic VSMC from humans, lean Zucker rats (LZR) and OZR, we measured by Western blots the activation induced by NO and cGMP of signalling molecules of PI3-K and MAPK pathways, with or without PKG inhibition, hydrogen peroxide and antioxidants. We explored the mechanism of the increased oxidative stress in VSMC from OZR by measuring superoxide anion concentrations (luminescence method) with or without inhibition of NADPH oxidase, xanthine oxidase, and mitochondrial electron transport chain complex and by measuring superoxide dismutase (SOD) expression (Western blot) and activity. RESULTS: In VSMC from humans and LZR, the NO/cGMP/PKG pathway activates both PI3-K (Akt, mTOR) and MAPK (ERK-1/2, p38MAPK) signalling. This effect is attenuated in VSMC from OZR, in which the greater oxidative stress is mediated by NADPH oxidase and mitochondrial complex and by a reduced synthesis/activity of SOD. Impairment of the NO/cGMP/PKG signalling is reproduced in VSMC from LZR by hydrogen peroxide and reverted in VSMC from OZR by antioxidants. CONCLUSIONS: In VSMC from an animal model of insulin resistance the NO/cGMP/PKG intracellular signalling is impaired due to an increased oxidative stress.
机译:目的:胰岛素抵抗性肥胖祖克大鼠(OZR)动物模型中的血管平滑肌细胞(VSMC)显示一氧化氮(NO)增加cGMP的能力和cGMP激活其特定激酶PKG的能力受损,这些缺陷可归因于氧化性强调。我们旨在研究人和大鼠VSMC中下游PKG的细胞内信号传导,并阐明其是否被胰岛素抵抗和氧化应激修饰。方法:通过Western blots在人,瘦Zucker大鼠(LZR)和OZR的主动脉VSMC中测量PI3-K和MAPK途径的信号分子的NO和cGMP诱导的激活,无论是否抑制PKG,过氧化氢和抗氧化剂。我们通过测量具有或不具有抑制NADPH氧化酶,黄嘌呤氧化酶和线粒体电子传输链复合物抑制作用的超氧阴离子浓度(发光法),以及通过测量超氧化物歧化酶(SOD)表达来探索OZR VSMC中氧化应激增加的机制。污点)和活性。结果:在来自人和LZR的VSMC中,NO / cGMP / PKG途径激活PI3-K(Akt,mTOR)和MAPK(ERK-1 / 2,p38MAPK)信号。在VSMC中,OZR减弱了这种作用,其中更大的氧化应激是由NADPH氧化酶和线粒体复合物以及降低的SOD合成/活性介导的。在VSMC中,过氧化氢从LZR中复制了NO / cGMP / PKG信号的受损,在VSMC中,由抗氧化剂从OZR中恢复了NO / cGMP / PKG信号的受损。结论:在来自胰岛素抵抗动物模型的VSMC中,由于氧化应激增加,NO / cGMP / PKG细胞内信号传导受到损害。

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