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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Oxidative status and anti-oxidant enzyme activity during calcium paradox in the rat isolated heart.
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Oxidative status and anti-oxidant enzyme activity during calcium paradox in the rat isolated heart.

机译:大鼠离体心脏中钙悖论期间的氧化状态和抗氧化酶活性。

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1. The effect of calcium paradox on oxidative status and the activity of anti-oxidant enzymes were studied in the rat isolated heart. Glutathione status, sulphydryl group contents and lipid peroxidation in the myocardium, as well as the release of oxidized and reduced glutathione from the heart, were taken as indices of oxidative events. 2. Reperfusion with calcium after calcium-free perfusion induced a significant decrease in the myocardial content of reduced and oxidized glutathione and non-protein sulphydryl groups. At the same time, a significant release of both forms of glutathione from the heart was observed. However, the ratio of oxidized to reduced glutathione remained unchanged and was not different from control. Increased lipid peroxidation was observed only after 30 min of reperfusion with calcium. 3. Increased anti-oxidant activity during the reperfusion period was observed. Mitochondrial Mn-superoxide dismutase (SOD) activity was increased throughout the reperfusion period, while cytoplasmic Cu,Zn-SOD and glutathione peroxidase activity showed a transient increase at 5 min reperfusion. 4. The results do not support an important role of oxygen free radicals in cell damage observed during calcium paradox in the rat isolated heart. Production of oxygen free radicals may occur during the reperfusion period, but the quantity produced is insufficient to exceed the anti-oxidant capacity of the heart.
机译:1.研究了离体钙对大鼠离体心脏氧化状态和抗氧化酶活性的影响。心肌中的谷胱甘肽状态,巯基基团含量和脂质过氧化以及心脏中氧化型和还原型谷胱甘肽的释放被视为氧化事件的指标。 2.在无钙灌注后,钙的再灌注导致还原型和氧化型谷胱甘肽和非蛋白质硫代基团的心肌含量显着降低。同时,观察到两种形式的谷胱甘肽均从心脏显着释放。但是,氧化型和还原型谷胱甘肽的比例保持不变,与对照无差异。仅在用钙再灌注30分钟后才观察到脂质过氧化增加。 3.在再灌注期间观察到抗氧化活性增加。线粒体锰超氧化物歧化酶(SOD)的活性在整个再灌注期间增加,而细胞质的铜,锌-SOD和谷胱甘肽过氧化物酶活性在再灌注5分钟时显示瞬时增加。 4.结果不支持氧自由基在大鼠离体心脏钙悖论期间观察到的细胞损伤中的重要作用。在再灌注期间可能会产生氧自由基,但是产生的量不足以超过心脏的抗氧化能力。

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