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首页> 外文期刊>American Journal of Physiology >Opening of mitochondrial KATP channels enhances cardioprotection through the modulation of mitochondrial matrix volume, calcium accumulation, and respiration.
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Opening of mitochondrial KATP channels enhances cardioprotection through the modulation of mitochondrial matrix volume, calcium accumulation, and respiration.

机译:线粒体KATP通道的开放可通过调节线粒体基质体积,钙积累和呼吸作用来增强心脏保护作用。

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摘要

Previously, we have shown that the pharmacological opening of the mitochondrial ATP-sensitive K channels with diazoxide (DZX) enhances the cardioprotection afforded by magnesium-supplemented potassium (K/Mg) cardioplegia. To determine the mechanisms involved in the cardioprotection afforded by K/Mg + DZX cardioplegia, rabbit hearts (n=24) were subjected to isolated Langendorff perfusion. Control hearts were perfused for 75 min. Global ischemia (GI) hearts were subjected to 30 min of equilibrium, 30 min of GI, and 15 min of reperfusion. K/Mg and K/Mg + DZX cardioplegia hearts received either K/Mg or K/Mg + DZX for 5 min before GI and reperfusion. Tissue was harvested for mitochondrial isolation and transmission electron microscopy (TEM). Mitochondrial structure, area, matrix volume, free calcium, and oxygen consumption were determined. TEM demonstrated that GI mitochondria were damaged and that K/Mg and K/Mg + DZX preserved mitochondrial structure. TEM and light scattering demonstrated separately that mitochondrial matrix and cristae area and matrix volume were significantly increased after GI and reperfusion with GI > K/Mg + DZX > K/Mg hearts (P <0.05 vs. control). Mitochondrial free calcium was significantly increased in GI and K/Mg hearts. K/Mg + DZX significantly decreased mitochondrial free calcium accumulation (P <0.05 vs. GI and K/Mg). State 3 oxygen consumption and respiratory control index in malate (complex I substrate)- and succinate (complex II substrate)-energized mitochondria were significantly decreased (P <0.05 vs. control) in the GI and K/Mg + DZX groups. These data indicate that the enhanced cardioprotection afforded by K/Mg + DZX cardioplegia occurs through the preservation of mitochondrial structure and the significant decrease in mitochondrial free calcium accumulation and mitochondrial state 3 oxygen consumption.
机译:以前,我们已经表明,用二氮嗪(DZX)打开线粒体ATP敏感性K通道的药理作用增强了镁补充的钾(K / Mg)心脏麻痹所提供的心脏保护作用。为了确定由K / Mg + DZX心脏停搏提供的心脏保护机制,对兔子心脏(n = 24)进行了单独的Langendorff灌注。对照心脏被灌注75分钟。整体缺血(GI)心脏经过30分钟的平衡,30分钟的GI和15分钟的再灌注。胃肠道和再灌注前,K / Mg和K / Mg + DZX心脏停搏患者接受K / Mg或K / Mg + DZX 5分钟。收获组织用于线粒体分离和透射电子显微镜(TEM)。测定线粒体的结构,面积,基质体积,游离钙和耗氧量。 TEM证明GI线粒体被破坏,K / Mg和K / Mg + DZX保留了线粒体结构。透射电镜和光散射分别表明,胃肠道和再灌注后,胃肠道> K / Mg + DZX> K / Mg心脏后,线粒体基质,cr面积和基质体积显着增加(与对照相比,P <0.05)。 GI和K / Mg心脏的线粒体游离钙显着增加。 K / Mg + DZX显着降低了线粒体游离钙的积累(相对于GI和K / Mg,P <0.05)。在GI组和K / Mg + DZX组中,苹果酸(复合I底物)和琥珀酸(复合II底物)激发的线粒体的状态3耗氧量和呼吸控制指数显着降低(与对照组相比,P <0.05)。这些数据表明,K / Mg + DZX心脏麻痹提供的增强的心脏保护作用是通过保留线粒体结构以及线粒体游离钙积累和线粒体3状态耗氧量的显着降低而实现的。

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