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Middle age aggravates myocardial ischemia through surprising upholding of complex II activity oxidative stress and reduced coronary perfusion

机译:中年人通过惊人地坚持复杂的II型活性氧化应激和减少的冠状动脉灌注来加重心肌缺血

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摘要

Aging compromises restoration of the cardiac mechanical function during reperfusion. We hypothesized that this was due to an ampler release of mitochondrial reactive oxygen species (ROS). This study aimed at characterising ex vivo the mitochondrial ROS release during reperfusion in isolated perfused hearts of middle-aged rats. Causes and consequences on myocardial function of the observed changes were then evaluated. The hearts of rats aged 10- or 52-week old were subjected to global ischemia followed by reperfusion. Mechanical function was monitored throughout the entire procedure. Activities of the respiratory chain complexes and the ratio of aconitase to fumarase activities were determined before ischemia and at the end of reperfusion. H2O2 release was also evaluated in isolated mitochondria. During ischemia, middle-aged hearts displayed a delayed contracture, suggesting a maintained ATP production but also an increased metabolic proton production. Restoration of the mechanical function during reperfusion was however reduced in the middle-aged hearts, due to lower recovery of the coronary flow associated with higher mitochondrial oxidative stress indicated by the aconitase to fumarase ratio in the cardiac tissues. Surprisingly, activity of the respiratory chain complex II was better maintained in the hearts of middle-aged animals, probably because of an enhanced preservation of its membrane lipid environment. This can explain the higher mitochondrial oxidative stress observed in these conditions, since cardiac mitochondria produce much more H2O2 when they oxidize FADH2-linked substrates than when they use NADH-linked substrates. In conclusion, the lower restoration of the cardiac mechanical activity during reperfusion in the middle-aged hearts was due to an impaired recovery of the coronary flow and an insufficient oxygen supply. The deterioration of the coronary perfusion was explained by an increased mitochondrial ROS release related to the preservation of complex II activity during reperfusion.
机译:老化损害了再灌注过程中心脏机械功能的恢复。我们假设这是由于线粒体活性氧(ROS)的安瓿释放。这项研究旨在表征离体中年大鼠离体灌注心脏中线粒体ROS的释放。然后评估观察到的变化对心肌功能的因果关系。对10周或52周龄的大鼠的心脏进行整体缺血,然后再灌注。在整个过程中监测机械功能。在缺血前和再灌注结束时测定呼吸链复合物的活性以及乌头酸酶与富马酸酶的比率。还评估了分离的线粒体中H2O2的释放。在缺血期间,中年心脏显示出延迟的挛缩,表明维持了ATP的产生,但也增加了代谢质子的产生。然而,由于心脏组织中乌头酸酶与富马酸酶的比值表明线粒体氧化应激较高,冠状动脉血流恢复降低,中年心脏再灌注过程中机械功能的恢复降低。令人惊讶的是,在中年动物的心脏中,呼吸链复合物II的活性得到了更好的维持,这可能是由于其膜脂质环境的保存增强了。这可以解释在这些情况下观察到的更高的线粒体氧化应激,因为当它们氧化FADH2连接的底物时,心脏线粒体比使用NADH连接的底物产生更多的H2O2。总之,中年心脏再灌注过程中心脏机械活动的恢复较低是由于冠状动脉血流恢复受损和氧气供应不足所致。冠状动脉灌注的恶化是由于线粒体ROS释放增加与再灌注过程中复合物II活性的保持有关。

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