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Protective effect of trimetazidine on myocardial mitochondrial function in an ex-vivo model of global myocardial ischemia

机译:曲美他嗪对全身性心肌缺血离体模型的心肌线粒体功能的保护作用

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摘要

Trimetazidine is an anti-ischemic drug whose cytoprotective mechanisms are not yet fully understood (but until now mainly related to the trimetazidine-induced "metabolic shift" from lipid beta-oxidation to glucose aerobic oxidation). We studied the effect of trimetazidine on the mitochondrial function of ischemic Wistar rat hearts perfused with glucose, using a model of ex-vivo perfusion (Langendorff system). We measured the electrical potential of the mitochondrial membrane, O2 consumption by the respiratory chain, energy charges generated and the enzyme activities of the respiratory chain complexes. In this model, trimetazidine had a preferential action on the oxidative system (mainly on complex I), increasing its enzyme activity and decreasing O2 consumption after phosphorylation; this could decrease oxygen free radical production and increase mitochondrial integrity, thus allowing the maintenance of the electrical potential. These results allow us to better understand the cytoprotective effects of trimetazidine in coronary artery disease.
机译:曲美他嗪是一种抗缺血药物,其细胞保护机制尚不完全清楚(但到目前为止,它主要与曲美他嗪诱导的从脂质β氧化到葡萄糖有氧氧化的“代谢转变”)。我们使用离体灌注模型(Langendorff系统)研究了曲美他嗪对缺血性Wistar大鼠葡萄糖灌注的线粒体功能的影响。我们测量了线粒体膜的电势,呼吸链消耗的氧气,产生的能量电荷以及呼吸链复合物的酶活性。在该模型中,曲美他嗪对氧化系统(主要是对配合物I)具有优先作用,可增加其酶活性并降低磷酸化后的O2消耗。这可能会减少氧自由基的产生并增加线粒体的完整性,从而保持电位。这些结果使我们能够更好地了解曲美他嗪在冠心病中的细胞保护作用。

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