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Myocardial hypothermia increases autophagic flux mitochondrial mass and myocardial function after ischemia-reperfusion injury

机译:心肌低温降低缺血再灌注损伤后自噬通量线粒体质量和心肌功能

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摘要

Animal studies have demonstrated beneficial effects of therapeutic hypothermia on myocardial function, yet exact mechanisms remain unclear. Impaired autophagy leads to heart failure and mitophagy is important for mitigating ischemia/reperfusion injury. This study aims to investigate whether the beneficial effects of therapeutic hypothermia are due to preserved autophagy and mitophagy. Under general anesthesia, the left anterior descending coronary artery of 19 female farm pigs was occluded for 90 minutes with consecutive reperfusion. 30 minutes after reperfusion, we performed pericardial irrigation with warm or cold saline for 60 minutes. Myocardial tissue analysis was performed one and four weeks after infarction. Therapeutic hypothermia induced a significant increase in autophagic flux, mitophagy, mitochondrial mass and function in the myocardium after infarction. Cell stress, apoptosis, inflammation as well as fibrosis were reduced, with significant preservation of systolic and diastolic function four weeks post infarction. We found similar biochemical changes in human samples undergoing open chest surgery under hypothermic conditions when compared to the warm. These results suggest that autophagic flux and mitophagy are important mechanisms implicated in cardiomyocyte recovery after myocardial infarction under hypothermic conditions. New therapeutic strategies targeting these pathways directly could lead to improvements in prevention of heart failure.
机译:动物研究表明,低温治疗对心肌功能有有益作用,但确切机制尚不清楚。自噬功能受损会导致心力衰竭,线粒体对于减轻缺血/再灌注损伤很重要。这项研究旨在调查治疗性体温过低的有益影响是否归因于自噬和线粒体的保存。在全身麻醉下,将19只雌性猪的冠状动脉左前降支闭塞90分钟,并连续进行再灌注。再灌注后30分钟,我们用温或冷盐水进行心包冲洗60分钟。梗死后一和四周进行心肌组织分析。体温过低会导致梗死后心肌的自噬通量,线粒体,线粒体质量和功能显着增加。梗死后四周,细胞应激,细胞凋亡,炎症以及纤维化程度降低,收缩和舒张功能得到显着保留。我们发现,与温暖的相比,在低温条件下进行开胸手术的人体样本中存在相似的生化变化。这些结果表明自噬通量和线粒体吞噬是低温条件下心肌梗死后心肌细胞恢复的重要机制。直接针对这些途径的新治疗策略可导致预防心力衰竭的改善。

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