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Actin-dependent mitochondrial internalization in cardiomyocytes: evidence for rescue of mitochondrial function

机译:肌动蛋白依赖的线粒体内在性心肌细胞:线粒体功能抢救的证据

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Previously, we have demonstrated that the transplantation of viable, structurally intact, respiration competent mitochondria into the ischemic myocardium during early reperfusion significantly enhanced cardioprotection by decreasing myocellular damage and enhancing functional recovery. Our in vitro and in vivo studies established that autologous mitochondria are internalized into cardiomyocytes following transplantation; however, the mechanism(s) modulating internalization of these organelles were unknown. Here, we show that internalization of mitochondria occurs through actin-dependent endocytosis and rescues cell function by increasing ATP content and oxygen consumption rates. We also show that internalized mitochondria replace depleted mitochondrial (mt)DNA. These results describe the mechanism for internalization of mitochondria within host cells and provide a basis for novel therapeutic interventions allowing for the rescue and replacement of damaged or impaired mitochondria.
机译:以前,我们已经证明,在早期再灌注期间,将可行的,结构完整的,具有呼吸功能的线粒体移植到缺血性心肌中,可以通过减少心肌细胞损伤和增强功能恢复来显着增强心脏保护作用。我们的体外和体内研究表明,移植后自体线粒体被内化到心肌细胞中。然而,调节这些细胞器内部化的机制尚不清楚。在这里,我们显示线粒体的内在化是通过肌动蛋白依赖性内吞作用发生的,并通过增加ATP含量和耗氧率来拯救细胞功能。我们还显示内在的线粒体替代了耗尽的线粒体(mt)DNA。这些结果描述了宿主细胞内线粒体内在化的机制,并为新的治疗性干预措施提供了基础,从而可以挽救和替换受损或受损的线粒体。

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