首页> 外文期刊>Hypertension research: Official journal of the Japanese Society of Hypertension >Dual inhibition of NADPH oxidases and xanthine oxidase potently prevents salt-induced stroke in stroke-prone spontaneously hypertensive rats
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Dual inhibition of NADPH oxidases and xanthine oxidase potently prevents salt-induced stroke in stroke-prone spontaneously hypertensive rats

机译:双抑制NADPH氧化酶和黄嘌呤氧化酶的效果效果易防于中风易患的盐血淋淋性自发性高血压大鼠

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摘要

Oxidative stress has been implicated in the pathophysiology of cerebral stroke. As NADPH oxidases (NOXs) play major roles in the regulation of oxidative stress, we hypothesized that reduction of NOX activity by depletion of p22phox, an essential subunit of NOX complexes, would prevent cerebral stroke. To investigate this, we used the stroke-prone spontaneously hypertensive rat (SHRSP) and the p22phox-deleted congenic SHRSP. Although p22phox depletion reduced blood pressure under salt loading, it did not ameliorate oxidative stress or reduce the incidence of salt-induced stroke in SHRSPs. Additional pharmacological reduction of oxidative stress using antioxidant reagents with different mechanisms of action was necessary to prevent stroke, indicating that NOX was not the major target in salt-induced stroke in SHRSPs. On the other hand, oxidative stress measured based on urinary isoprostane levels showed significant correlations with blood pressure, stroke latency and urinary protein excretion under salt loading, suggesting an important role of oxidative stress per se in hypertension and hypertensive organ damage. Overall, our results imply that oxidative stress from multiple sources influences stroke susceptibility and other hypertensive disorders in salt-loaded SHRSPs.
机译:氧化应激涉及脑卒中的病理生理学。由于NADPH氧化酶(NOX)在氧化应激的调节中起主要作用,我们假设通过耗尽P22phox的NOx活性降低NOx复合物的必需亚基,将防止脑卒中。为了研究这一点,我们使用中风易患的自发性高血压大鼠(SHRSP)和P22phox缺失的同义SHRSP。虽然P22phox耗竭降低盐负载下的血压,但它没有改善氧化应激或减少盐诱导的脱氏菌中风的发病率。使用具有不同作用机制的抗氧化剂的氧化胁迫的额外药理降低是必需的,以防止中风,表明NOx不是SHRSP中盐诱导的中风中的主要靶标。另一方面,基于尿异前烷水平测量的氧化应激与盐负载下的血压,中风等待时间和尿蛋白排泄的显着相关性,表明氧化应激本身在高血压和高血压器官损伤中的重要作用。总体而言,我们的结果意味着来自多种来源的氧化应激影响盐沉淀的沉降溶胀性和其他高血压障碍。

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