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首页> 外文期刊>Journal of cardiovascular pharmacology and therapeutics >Delayed remote ischemic preconditioning produces an additive cardioprotection to sevoflurane postconditioning through an enhanced heme oxygenase 1 level partly via nuclear factor erythroid 2-related factor 2 nuclear translocation
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Delayed remote ischemic preconditioning produces an additive cardioprotection to sevoflurane postconditioning through an enhanced heme oxygenase 1 level partly via nuclear factor erythroid 2-related factor 2 nuclear translocation

机译:延迟的远程缺血预处理通过增强的血红素加氧酶1水平,部分通过核因子红系2相关因子2核易位,对七氟醚后处理产生加成的心脏保护作用

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摘要

Although both sevoflurane postconditioning (SPoC) and delayed remote ischemic preconditioning (DRIPC) have been proved effective in various animal and human studies, the combined effect of these 2 strategies remains unclear. Therefore, this study was designed to investigate this effect and elucidate the related signal mechanisms in a Langendorff perfused rat heart model. After 30-minute balanced perfusion, isolated hearts were subjected to 30-minute ischemia followed by 60-minute reperfusion except 90-minute perfusion for control. A synergic cardioprotective effect of SPoC (3% v/v) and DRIPC (4 cycles 5-minute occlusion/5-minute reflow at the unilateral hindlimb once per day for 3 days before heart isolation) was observed with facilitated cardiac functional recovery and decreased cardiac enzyme release. The infarct size-limiting effect was more pronounced in the combined group (6.76% ± 2.18%) than in the SPoC group (16.50% ± 4.55%, P <.001) or in the DRIPC group (10.22% ± 2.57%, P =.047). Subsequent analysis revealed that an enhanced heme oxygenase 1 (HO-1) expression, but not protein kinase B/AKt or extracellular signal-regulated kinase 1 and 2 activation, was involved in the synergic cardioprotective effect, which was further confirmed in the messenger RNA level of HO-1. Such trend was also observed in the nuclear factor erythroid 2-related factor 2 (Nrf2) nuclear translocation, an upstream regulation of HO-1. In addition, correlation analysis showed a significantly positive relationship between HO-1 expression and Nrf2 translocation (r = 0.729, P <.001). Hence, we conclude that DRIPC may produce an additive cardioprotection to SPoC through an enhanced HO-1 expression partly via Nrf2 translocation.
机译:尽管七氟醚后处理(SPoC)和迟发性远程缺血预处理(DRIPC)在各种动物和人类研究中均被证明是有效的,但这两种策略的综合效果仍不清楚。因此,本研究旨在研究这种作用并阐明Langendorff灌注大鼠心脏模型中的相关信号机制。在30分钟的平衡灌注后,将离体心脏进行30分钟的局部缺血,然后再进行60分钟的再灌注,但90分钟的灌注除外。观察到SPoC(3%v / v)和DRIPC(心脏隔离前3天,每天4次,单侧后肢5分钟闭塞/ 5分钟再流一次,持续3天)的协同心脏保护作用,心脏酶释放。与SPoC组(16.50%±4.55%,P <.001)或DRIPC组(10.22%±2.57%,P)相比,联合组(6.76%±2.18%)的梗塞面积限制作用更为明显。 = .047)。随后的分析表明,增强的血红素加氧酶1(HO-1)表达但不参与蛋白激酶B / AKt或细胞外信号调节激酶1和2的激活,这与协同心脏保护作用有关,这在信使RNA中得到了进一步证实。 HO-1的水平。在核因子红系2相关因子2(Nrf2)核易位,HO-1的上游调节中也观察到了这种趋势。此外,相关分析显示HO-1表达与Nrf2易位之间存在显着正相关(r = 0.729,P <.001)。因此,我们得出结论,DRIPC可能通过增强的HO-1表达部分通过Nrf2易位产生对SPoC的加成心脏保护。

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