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Slow calcium waves and redox changes precede mitochondrial permeability transition pore opening in the intact heart during hypoxia and reoxygenation

机译:在缺氧和复氧期间,完整心脏的线粒体通透性过渡孔打开之前,缓慢的钙波和氧化还原变化

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Aims: Opening of the mitochondrial permeability transition pore (mPTP) is an important step on the pathway towards cardiomyocyte death, defining the extent of injury following cardiac ischaemia and reperfusion. In isolated mitochondria, mPTP opening is triggered by calcium overload facilitated by oxidative stress. In isolated cells, however, it has been suggested that mPTP opening occurs before calcium overload and is stimulated by oxidative stress. Our objective was to establish the events that cause mPTP opening in the intact heart. Methods and results: We performed multiphoton imaging of Langendorff-perfused mouse hearts expressing an inducible, Ca 2+-sensitive reporter (circularly Permuted GFP and calmodulin (CaM), version 2), to examine the spatiotemporal relationship between [Ca 2+] c, redox state, and mPTP opening in the intact heart during hypoxia and reoxygenation at sub-myocyte resolution. We found that during reperfusion, calcium waves propagated across multiple cells at 3.3 μm/s. mPTP opening caused an abrupt loss of mitochondrial membrane potential, measured using a potentiometric dye, which was invariably preceded by a rise in [Ca 2+] c. The probability that localized [Ca 2+] c waves led to mPTP opening was greater early during reoxygenation. During reoxygenation, coordinated redox changes also occurred across large regions and preceded mPTP opening on average by 122 ± 38 s. Fewer [Ca 2+] waves led to mPTP opening in the presence of mPTP inhibitor cyclosporin A or mitochondrial-targeted scavenger of reactive oxygen species, MitoQ. Conclusion: These experiments define the spatiotemporal relationship between changes in [Ca 2+] c, redox state and mPTP opening during reoxygenation in the intact heart. Tissue oxidation coincident with localized calcium waves together conspire to cause mPTP opening and subsequent cell death.
机译:目的:线粒体通透性过渡孔(mPTP)的开放是心肌细胞死亡的重要步骤,它定义了心肌缺血和再灌注后的损伤程度。在孤立的线粒体中,mPTP的开放是由氧化应激促进的钙超载触发的。然而,已经提出在分离的细胞中,mPTP开放发生在钙超载之前,并被氧化应激刺激。我们的目的是建立导致完整心脏中mPTP开放的事件。方法和结果:我们对表达可诱导的Ca 2+敏感的报告基因(圆形排列的GFP和钙调蛋白(CaM),版本2)的Langendorff灌注的小鼠心脏进行了多光子成像,以检查[Ca 2+] c之间的时空关系。 ,氧化还原状态和缺氧和亚氧分压下的复氧过程中完整心脏中mPTP的打开。我们发现,在再灌注过程中,钙波以3.3μm/ s的速度跨多个细胞传播。 mPTP的打开导致线粒体膜电位的突然损失(使用电位计染料测量),该损失总是在[Ca 2+] c升高之前发生。局部[Ca 2+] c波导致mPTP开放的可能性在再氧合的早期更大。在复氧过程中,大区域也发生了协调的氧化还原变化,并且平均在mPTP打开之前为122±38 s。在存在mPTP抑制剂环孢菌素A或线粒体靶向的活性氧清除剂MitoQ的情况下,较少的[Ca 2+]波导致mPTP打开。结论:这些实验确定了完整心脏再充氧过程中[Ca 2+] c的变化,氧化还原状态和mPTP开放之间的时空关系。与局部钙波同时发生的组织氧化共同导致mPTP开放和随后的细胞死亡。

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