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首页> 外文期刊>BioMed research international >A Short-Term Incubation with High Glucose Impairs VASP Phosphorylation at Serine 239 in response to the Nitric Oxide/cGMP Pathway in Vascular Smooth Muscle Cells: Role of Oxidative Stress
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A Short-Term Incubation with High Glucose Impairs VASP Phosphorylation at Serine 239 in response to the Nitric Oxide/cGMP Pathway in Vascular Smooth Muscle Cells: Role of Oxidative Stress

机译:短期孵育高葡萄糖可损害血管平滑肌细胞中一氧化氮/ cGMP途径对丝氨酸239处VASP磷酸化的影响:氧化应激的作用

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摘要

A reduction of the nitric oxide (NO) action in vascular smooth muscle cells (VSMC) could play a role in the vascular damage induced by the glycaemic excursions occurring in diabetic patients; in this study, we aimed to clarify whether a short-term incubation of cultured VSMC with high glucose reduces the NO ability to increase cGMP and the cGMP ability to phosphorylate VASP at Ser-239. We observed that a 180 min incubation of rat VSMC with 25 mmol/L glucose does not impair the NO-induced cGMP increase but reduces VASP phosphorylation in response to both NO and cGMP with a mechanism blunted by antioxidants. We further demonstrated that high glucose increases radical oxygen species (ROS) production and that this phenomenon is prevented by the PKC inhibitor chelerythrine and the NADPH oxidase inhibitor apocynin. The following sequence of events is supported by these results: (i) in VSMC high glucose activates PKC; (ii) PKC activates NADPH oxidase; (iii) NADPH oxidase induces oxidative stress; (iv) ROS impair the signalling of cGMP, which is involved in the antiatherogenic actions of NO. Thus, high glucose, via oxidative stress, can reduce the cardiovascular protection conferred by the NO/cGMP pathway via phosphorylation of the cytoskeleton protein VASP in VSMC.
机译:血管平滑肌细胞(VSMC)中一氧化氮(NO)活性的降低可能在糖尿病患者发生的血糖波动引起的血管损伤中起作用;在这项研究中,我们旨在阐明培养的VSMC与高葡萄糖的短期孵育是否会降低NO的增加cGMP的能力以及cGMP磷酸化Ser-239的VASP的能力。我们观察到大鼠VSMC与25 mmol / L葡萄糖孵育180分钟不会损害NO诱导的cGMP升高,但会降低NO和cGMP响应的VASP磷酸化,其机制被抗氧化剂削弱。我们进一步证明,高血糖会增加自由基氧(ROS)的产生,而PKC抑制剂白屈菜红碱和NADPH氧化酶抑制剂Apocynin可以防止这种现象。这些结果支持以下事件顺序:(i)在VSMC中,高葡萄糖激活PKC; (ii)PKC激活NADPH氧化酶; (iii)NADPH氧化酶诱导氧化应激; (iv)ROS破坏cGMP的信号传导,这与NO的抗动脉粥样硬化作用有关。因此,通过氧化应激,高葡萄糖可通过VSMC中细胞骨架蛋白VASP的磷酸化降低NO / cGMP途径赋予的心血管保护作用。

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