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首页> 外文期刊>International Journal of Cardiology >Participation of mitochondrial permeability transition pore in the effects of ischemic preconditioning in hypertrophied hearts: Role of NO and mitoK ATP
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Participation of mitochondrial permeability transition pore in the effects of ischemic preconditioning in hypertrophied hearts: Role of NO and mitoK ATP

机译:线粒体通透性过渡孔参与肥大心脏缺血预处理的作用:NO和mitoK ATP的作用

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摘要

Background: The mitochondrial permeability transition pore (mPTP) plays an important role in ischemia-reperfusion in normotensive animals. Our study aims to define their participation in the ischemic preconditioning (IP) in hypertrophied hearts and to assess the role played by NO and mitochondrial ATP-dependent K channels (mitoKATP). Material and methods: Isolated hearts from spontaneously hypertensive rats (SHR) and age-matched normotensive rats Wistar Kyoto (WKY) were subjected to 35-min or 50-min global ischemia (GI) followed by 2-hour reperfusion (R). IP was induced by a single cycle of 5-min GI and 10-min R (IP1) or three cycles of 2-min GI and 5-min R (IP3) applied before to prolonged ischemia. L-NAME (NOS inhibitor) or 5-HD (mitoKATP blocker) to investigate the role played by NO and mitoKATP, respectively were administered. Infarct size (IS), myocardial function, reduced glutathione (GSH) - as marker of oxidative stress and MnSOD cytosolic activity - as an index of mPTP opening were determined. Results: IP1 significantly decreased the IS in WKY hearts at both ischemia duration times. In SHR, IP1 decreased the IS observed in GI35 but it did not modify that detected at 50-min GI, which was limited by IP3. IP preserved GSH content and decreased MnSOD cytosolic activity in both rat strains. These protective effects were annulled by L-NAME and 5-HD for both ischemic periods in SHR, whereas in WKY they were only effective for 50-min GI. Conclusion: Our data demonstrate that the cardioprotection achieved by ischemic preconditioning in hearts from SHR hearts involves an attenuation of mPTP opening NO and mitoKATP-mediated.
机译:背景:线粒体通透性过渡孔(mPTP)在血压正常动物的缺血再灌注中起重要作用。我们的研究旨在确定其参与肥大心脏缺血预处理(IP)的作用,并评估NO和线粒体ATP依赖性K通道(mitoKATP)的作用。材料和方法:对自发性高血压大鼠(SHR)和年龄匹配的正常血压大鼠Wistar Kyoto(WKY)的离体心脏进行35分钟或50分钟的整体缺血(GI),然后进行2小时再灌注(R)。 IP是由5分钟的GI和10分钟的R(IP1)的单周期或3分钟的2分钟的GI和5分钟的R(IP3)的周期诱导的,以延长缺血时间。分别研究了L-NAME(NOS抑制剂)或5-HD(mitoKATP阻滞剂)以研究NO和mitoKATP的作用。确定梗塞面积(IS),心肌功能,谷胱甘肽减少(GSH)-作为氧化应激和MnSOD胞浆活性的标志-作为mPTP开放的指标。结果:在两个缺血持续时间,IP1均可显着降低WKY心脏的IS。在SHR中,IP1降低了在GI35中观察到的IS,但它没有改变在50分钟GI时检测到的IS,这受IP3限制。 IP保留了两种大鼠品系中的GSH含量并降低了MnSOD胞质活性。在SHR的两个缺血时期,L-NAME和5-HD都取消了这些保护作用,而在WKY中,它们仅对50分钟的胃肠道有效。结论:我们的数据表明,通过缺血预处理在SHR心脏中实现的心脏保护作用涉及mPTP开放NO和mitoKATP介导的减弱。

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