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首页> 外文期刊>Shock: Molecular, cellular, and systemic pathobiological aspects and therapeutic approaches = The official journal of the Shock Society, the European Shock Society, the Brazilian Shock Society, the International Federation of Shock Societies >Nitric oxide triggers delayed anesthetic preconditioning-induced cardiac protection via activation of nuclear factor-kappaB and upregulation of inducible nitric oxide synthase.
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Nitric oxide triggers delayed anesthetic preconditioning-induced cardiac protection via activation of nuclear factor-kappaB and upregulation of inducible nitric oxide synthase.

机译:一氧化氮触发延迟麻醉preconditioning-induced心脏保护通过核factor-kappaB和激活upregulation诱导一氧化氮合酶。

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摘要

Nitric oxide (NO) plays a pivotal role both in triggering and mediating delayed protection against myocardial I/R injury during anesthetic-induced preconditioning (APC). However, the signaling mechanisms that underlie this phenomenon remain unclear. Using isoflurane as a representative anesthetic, the present study tested the hypothesis that NO released after anesthetic-induced preconditioning initiates delayed cardioprotection via activation of nuclear transcription factor-kappaB (NF-kappaB), leading to myocardial adaptation by upregulation of iNOS and increase in production of NO. Sprague-Dawley rats that received open-chest surgery under pentobarbital anesthesia were subject to 30 min of left coronary artery occlusion, followed by 120 min of reperfusion. Exposure to 60 min of 2.1% isoflurane inhalation with oxygen 24 h before ischemia significantly reduced I/R-induced myocardial infarct size that was associated with overexpression of iNOS protein and increased NO content in the heart. These protective effects were abolished by pretreatment with a NOS inhibitor, N-nitro-L-arginine methyl ester, an NF-kappaB blocker, diethyldithiocarbamate, before isoflurane, or a selective iNOS inhibitor, S-methylisothiourea, before left coronary artery occlusion. Isoflurane exposure also evoked a robust increase in myocardial NO content, followed by nucleus-bound translocation of p65 or p50 subunit of NF-kappaB and increase in NF-kappaB DNA-binding activity in heart tissues. These molecular events after isoflurane exposure were blocked by pretreatment with N-nitro-L-arginine methyl ester. We conclude that NO generated immediately after isoflurane exposure triggers downstream activation of NF-kappaB, resulting in subsequent upregulation of iNOS expression and NO synthesis that mediate APC-induced delayed cardioprotection.
机译:一氧化氮(NO)在扮演着关键的角色触发和调节延迟保护对心肌I / R损伤期间anesthetic-induced预处理(APC)。然而,背后的信号机制这一现象仍不明朗。作为麻醉剂,代表目前的研究测试后没有释放的假设anesthetic-induced预处理发起通过激活延迟心脏保护核转录factor-kappaB (NF-kappaB),导致心肌upregulation适应伊诺和增加生产。Sprague-Dawley老鼠收到打开胸腔戊巴比妥麻醉下手术左冠状动脉的30分钟再灌注的闭塞,紧随其后的是120分钟。暴露在60分钟的2.1%异氟烷吸入与氧气明显缺血前24小时减少I / R-induced心肌梗塞大小与过度伊诺蛋白质和增加心脏没有内容。这些保护作用已经被废止与NOS抑制剂预处理,NF-kappaB N-nitro-L-arginine甲酯拦截器、二乙基二硫代氨基甲酸异氟烷或选择性伊诺抑制剂,S-methylisothiourea,左冠状动脉前闭塞。健壮的增加心肌没有内容,p65 nucleus-bound易位或紧随其后p50 NF-kappaB单元和增加NF-kappaB dna结合蛋白在心脏组织的活动。异氟烷暴露后这些分子事件是被预处理N-nitro-L-arginine甲酯。没有生成后立即异氟烷接触触发下游的激活NF-kappaB,导致后续upregulation伊诺的表达和没有调解的合成APC-induced延迟心脏保护。

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