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Activation of Mitochondrial ATP-Sensitive Potassium Channel Contributes to Protective Effect in Prolonged Myocardial Preservation

机译:线粒体ATP敏感性钾通道的激活有助于长期保存心肌的保护作用。

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To find a better strategy for effective donor organ preservation, here we used a model of long-term hypothermia preservation of rat hearts to investigate the cardioprotective effects of diazoxide, a selective opener of mitochondrial ATP-sensitive potassium channel (mitoKATP ). Cardiac function was impaired by 8-hour ischemic preservation following 30 minutes of reperfusion. Treatment with diazoxide significantly attenuated the decline of myocardial contractility, and decreased the lactate dehydrogenase leakage and myocardial edema. Diazoxide also prevented the loss of activity of mitochondrial superoxide dismutases and sarcolemmal Na+/K+ ATPase during ischemia or reperfusion period, respectively. These effects of diazoxide could be abolished by a selective mitoKATp blocker 5-hydroxydecanoate. The results suggest that diazoxide, as a supplementation in cardioplegic solution, could enhance myocardial protection by opening mitoKATp channel, and better maintenance of mitochondrial anti-oxidative enzyme
机译:为了找到有效保存供体器官的更好策略,在这里我们使用长期低温保存大鼠心脏的模型来研究二氮嗪(一种线粒体ATP敏感性钾通道的选择性开放剂)的心脏保护作用(mitoK ATP < / sub>)。再灌注30分钟后8小时的缺血保存会损害心脏功能。用二氮嗪治疗可显着减轻心肌收缩力的下降,并减少乳酸脱氢酶渗漏和心肌水肿。二氮嗪还可以防止缺血或再灌注期间线粒体超氧化物歧化酶和肌膜Na + / K + ATPase的活性降低。选择性mitoK ATp 阻滞剂5-羟基癸酸酯可以消除二氮嗪的这些作用。结果表明,二氮嗪作为心脏停搏液的补充,可以通过打开mitoK ATp 通道来增强心肌保护,并更好地维持线粒体抗氧化酶。

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