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首页> 外文期刊>American Journal of Physiology >Intramitochondrial (Ca2+) and membrane potential in ventricular myocytes exposed to anoxia-reoxygenation.
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Intramitochondrial (Ca2+) and membrane potential in ventricular myocytes exposed to anoxia-reoxygenation.

机译:暴露于缺氧-复氧的心室肌细胞的线粒体内(Ca2 +)和膜电位。

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The aim of this study was to investigate the role of mitochondrial ionic homeostasis in promoting reoxygenation-induced hypercontracture in cardiac muscle. Mitochondrial membrane potential and intramitochondrial Ca2+ concentration ([Ca2+]) were measured using confocal imaging in guinea pig ventricular myocytes exposed to anoxia and reoxygenation. Anoxia produced a variable, but often profound, mitochondrial depolarization. Some cells mounted a recovery of their mitochondrial membrane potential during reoxygenation; the depolarization was sustained in other cells. Recovery of the mitochondrial membrane potential seemed essential to avoid reoxygenation-induced hypercontracture. Reoxygenation also caused a sizable elevation in intramitochondrial [Ca2+], the amplitude of which was correlated with the likelihood of a cell undergoing hypercontracture. A sustained Ca2+ load analogous to that seen during reoxygenation was imposed on cardiac mitochondria through permeabilization of the plasma membrane. Elevation of intracellular [Ca2+] to 800 nM caused a substantial mitochondrial depolarization. We propose that the conditions seen in guinea pig ventricular myocytes during reoxygenation are well suited to produce Ca2+-dependent mitochondrial depolarization, which may play a significant role in promoting irreversible cell injury.
机译:这项研究的目的是调查线粒体离子稳态在促进心肌再氧合引起的过度收缩中的作用。使用共聚焦成像法测量暴露于缺氧和复氧的豚鼠心室肌​​细胞的线粒体膜电位和线粒体内Ca2 +浓度([Ca2 +])。缺氧引起线粒体去极化的变化,但通常是深刻的。一些细胞在复氧过程中恢复了线粒体膜电位。去极化作用在其他细胞中持续存在。线粒体膜电位的恢复似乎对于避免再氧诱导的过度收缩至关重要。复氧还导致线粒体内[Ca2 +]明显升高,其幅度与细胞发生过度收缩的可能性相关。通过质膜的透化作用,将持续的Ca2 +负荷类似于在​​复氧过程中所观察到的负荷。细胞内[Ca2 +]升高至800 nM导致线粒体去极化。我们建议豚鼠心室肌​​细胞复氧过程中所见的条件非常适合产生依赖Ca2 +的线粒体去极化,这可能在促进不可逆细胞损伤中起重要作用。

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