首页> 外文期刊>Cell biochemistry and biophysics >Protective Effect of Na+/Ca2+ Exchange Blocker KB-R7943 on Myocardial Ischemia-Reperfusion Injury in Hypercholesterolemic Rats
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Protective Effect of Na+/Ca2+ Exchange Blocker KB-R7943 on Myocardial Ischemia-Reperfusion Injury in Hypercholesterolemic Rats

机译:Na + / Ca2 +交换阻滞剂KB-R7943对高胆固醇血症大鼠心肌缺血再灌注损伤的保护作用

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Reverse-mode activation of the Na+/Ca2+ exchanger (NCX) during reperfusion following ischemia contributes to Ca2+ overload and cardiomyocyte injury. KB-R7943, a selective reverse-mode NCX inhibitor, reduces lethal reperfusion injury under non-ischemic conditions. However, the effectiveness of this compound under ischemic conditions is unclear. In the present study, we studied the effects of KB-R7943 in an animal model of hyperlipidemia. We further assessed whether the KATP + channels are involved in potential protective mechanisms of KB-R7943. Twelve rats were fed normal chow, while 48 animals were fed a high cholesterol diet. The hearts from the control and hypercholesterolemic rats were subjected to 25 min of global ischemia followed by a 120-min reperfusion. Before this, hearts from hypercholesterolemic rats either received no intervention (cholesterol control group) or were pre-treated with 1 μM KB-R7943 and 0.3 μM of KATP + blocker glibenclamide or glibenclamide alone. The infarction sizes (triphenyltetrazolium assay) were 35 ± 5.0 % in the control group, 46 ± 8.7 % in the cholesterol control group (p 0.05 vs. control group), 28.6 ± 3.3 % in the KB-R7943 group (p 0.05 vs. cholesterol control group), 44 ± 5 % in the KB-R7943 and glibenclamide group, and 47 ± 8.5 % in the glibenclamide group (p 0.05 vs. control group). Further, KB-R7943 attenuated the magnitude of cell apoptosis (p 0.05 vs. cholesterol control group). These beneficial effects were abolished by glibenclamide. In conclusion, diet-induced hypercholesterolemia enhances myocardial injury. Selective reverse-mode NCX inhibitor KB-R7943 reduces the infarction size and apoptosis in hyperlipidemic animals through the activation of KATP + channels.
机译:在缺血后的再灌注过程中,Na + / Ca2 +交换子(NCX)的反向模式激活会导致Ca2 +超负荷和心肌细胞损伤。 KB-R7943是一种选择性的反向模式NCX抑制剂,可减少非缺血条件下的致死性再灌注损伤。但是,该化合物在缺血条件下的有效性尚不清楚。在本研究中,我们研究了KB-R7943在高脂血症动物模型中的作用。我们进一步评估了KATP +通道是否参与KB-R7943的潜在保护机制。给12只大鼠喂普通的食物,而给48只动物喂高胆固醇的食物。来自对照和高胆固醇血症大鼠的心脏经受25分钟的整体缺血,然后进行120分钟的再灌注。在此之前,高胆固醇血症大鼠的心脏未接受任何干预(胆固醇对照组),或者仅接受了1μMKB-R7943和0.3μMKATP +阻断剂格列本脲或格列本脲的预处理。对照组的梗死面积(三苯四唑测定)为35±5.0%,胆固醇对照组为46±8.7%(与对照组相比,p <0.05),KB-R7943组为28.6±3.3%(p <0.05)与胆固醇对照组相比),KB-R7943和格列本脲组为44±5%,格列本脲组为47±8.5%(与对照组相比p <0.05)。此外,KB-R7943减弱了细胞凋亡的幅度(与胆固醇对照组相比,p <0.05)。格列本脲消除了这些有益的作用。总之,饮食引起的高胆固醇血症会增强心肌损伤。选择性反向模式NCX抑制剂KB-R7943通过激活KATP +通道来减少高脂血症动物的梗塞面积和凋亡。

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