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首页> 外文期刊>American Journal of Physiology >Dynamic changes in nitric oxide and mitochondrial oxidative stress with site-dependent differential tissue response during anoxic preconditioning in rat heart.
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Dynamic changes in nitric oxide and mitochondrial oxidative stress with site-dependent differential tissue response during anoxic preconditioning in rat heart.

机译:大鼠心脏缺氧预处理期间一氧化氮和线粒体氧化应激的动态变化与部位依赖性组织反应。

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摘要

In this study, dynamic changes in nitric oxide (NO) and mitochondrial superoxide (O(2)(*-)) were examined during anoxic preconditioning (AP) in rat heart model. AP and anoxia-reoxygenation (A/R) were performed on isolated hearts and single cardiomyocytes. The cellular insult in the form of infarct size and DNA damage were localized and correlated with NO synthases (endothelial and inducible) expression levels. The results showed that endocardium was the most affected region in AP groups, whereas the larger area of infarct was confined to mid- and epicardium in the A/R group. Interestingly, a high-level expression of immunofluorescent NO synthases was restricted to viable areas in the AP. In contrast to the gradual increase in O(2)(*-) level that occurred in the AP group, a sudden massive increase in its level was demonstrated at the onset of reoxygenation in the A/R group. The observed increase in NO production during reoxygenation in the AP group was attenuated by inducible NO synthase inhibitor. The study revealed, on a real-time basis, the role played by preconditioning for modulating NO and O(2)(*-) levels on behalf of cell survival. The results afford a better understanding of cardiac-adapting mechanism during AP and the role of inducible NO synthase in this important phenomenon.
机译:在这项研究中,在大鼠心脏模型缺氧预处理(AP)期间检查了一氧化氮(NO)和线粒体超氧化物(O(2)(*-))的动态变化。对离体心脏和单个心肌细胞进行AP和缺氧复氧(A / R)。以梗塞大小和DNA损伤形式出现的细胞损伤被定位并与NO合酶(内皮和诱导型)表达水平相关。结果表明,心律失常是AP组中受影响最严重的区域,而A / R组的梗死面积较大,仅限于中,心外膜。有趣的是,免疫荧光一氧化氮合酶的高水平表达被限制在AP的可行区域。与AP组中O(2)(*-)的水平逐渐升高相反,在A / R组中重新充氧开始时,其水平突然大量升高。 AP组在复氧过程中观察到的NO生成增加被诱导型NO合酶抑制剂减弱。这项研究实时显示了预处理对调节NO和O(2)(*-)水平代表细胞存活的作用。结果提供了对AP期间心脏适应机制的更好理解,以及可诱导的NO合酶在这一重要现象中的作用。

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