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预处理通过防止缺血后心脏中内皮素-1诱导的NADPH氧化酶和黄嘌呤氧化酶激活来保护内皮。

Preconditioning protects endothelium by preventing ET-1-induced activation of NADPH oxidase and xanthine oxidase in post-ischemic heart.

作者信息

Duda Monika, Konior Anna, Klemenska Emilia, Beresewicz Andrzej

机构信息

Department of Clinical Physiology, Postgraduate Medical School, Marymoncka 99, 01-813 Warsaw, Poland.

出版信息

J Mol Cell Cardiol. 2007 Feb;42(2):400-10. doi: 10.1016/j.yjmcc.2006.10.014. Epub 2006 Dec 6.

Abstract

The hypothesis was tested that endothelin-1 (ET-1)-induced superoxide (O(2)(-)) generation mediates post-ischemic coronary endothelial injury, that ischemic preconditioning (IPC) affords endothelial protection by preventing post-ischemic ET-1, and thus O(2)(-), generation, and that opening of the mitochondrial ATP-dependent potassium channel (mK(ATP)) triggers the mechanism of IPC. Furthermore, the study was aimed at identifying the source of O(2)(-) mediating the endothelial injury. Langendorff-perfused guinea-pig hearts were subjected either to 30 min ischemia/35 min reperfusion (IR) or were preconditioned prior to IR with three cycles of either 5 min ischemia/5 min reperfusion or 5 min infusion/5 min washout of mK(ATP) opener diazoxide (0.5 mM). Coronary flow responses to acetylcholine (ACh) served as a measure of endothelium-dependent vascular function. Myocardial outflow of ET-1 and O(2)(-) and functional recoveries were followed during reperfusion. NADPH oxidase and xanthine oxidase (XO) activities were measured in cardiac homogenates. IR augmented ET-1 and O(2)(-) outflow and impaired ACh response. All these effects were attenuated or prevented by IPC and diazoxide, and 5-hydroxydecanoate (a selective mK(ATP) blocker) abolished the effects of IPC and diazoxide. Superoxide dismutase and tezosentan (a mixed ET-1-receptor antagonist) mimicked the effects of IPC, although they had no effect on the ET-1 generation. IR augmented also the activity of NADPH oxidase and XO. Apocynin treatment, that resulted in NADPH oxidase inhibition, prevented XO activation and O(2)(-) generation in IR hearts. The inhibition of XO, either by allopurinol or feeding the animals with tungsten-enriched chow, prevented post-ischemic O(2)(-) generation, although these interventions had no effect on the NADPH activity. In addition, the post-ischemic activation of NADPH oxidase and XO, and O(2)(-) generation were prevented by IPC, tezosentan, thenoyltrifluoroacetone (mitochondrial complex II inhibitor), and tempol (cell-membrane permeable O(2)(-) scavenger). In guinea-pig heart: (i) ET-1-induced O(2)(-) generation mediates post-ischemic endothelial dysfunction; (ii) IPC and diazoxide afford endothelial protection by attenuating the ET-1, and thus O(2)(-) generation, and the mK(ATP) opening triggers the protection; (iii) the NADPH oxidase maintains the activity of XO, and the XO-derived O(2)(-) mediates the endothelial injury, and (iv) ET-1 and O(2)(-) (probably of mitochondrial origin) are upstream activators of the NADPH oxidase-XO cascade, and IPC prevents the cascade activation and the endothelial dysfunction by preventing the ET-1 generation.

摘要

研究验证了以下假说

内皮素 -1(ET -1)诱导的超氧化物(O₂⁻)生成介导缺血后冠状动脉内皮损伤;缺血预处理(IPC)通过防止缺血后ET -1生成,进而防止O₂⁻生成,从而为内皮提供保护;线粒体ATP依赖性钾通道(mKATP)开放触发IPC机制。此外,该研究旨在确定介导内皮损伤的O₂⁻来源。采用Langendorff灌流的豚鼠心脏,使其经历30分钟缺血/35分钟再灌注(IR),或在IR之前用三个周期的5分钟缺血/5分钟再灌注,或5分钟输注/5分钟洗脱mKATP开放剂二氮嗪(0.5 mM)进行预处理。冠状动脉对乙酰胆碱(ACh)的血流反应用作内皮依赖性血管功能的指标。在再灌注期间监测ET -1和O₂⁻的心肌流出量以及功能恢复情况。测定心脏匀浆中NADPH氧化酶和黄嘌呤氧化酶(XO)的活性。IR增加了ET -1和O₂⁻的流出量,并损害了ACh反应。IPC和二氮嗪减轻或预防了所有这些效应,而5 - 羟基癸酸(一种选择性mKATP阻滞剂)消除了IPC和二氮嗪的效应。超氧化物歧化酶和替唑生坦(一种混合ET -1受体拮抗剂)模拟了IPC的效应,尽管它们对ET -1生成没有影响。IR还增加了NADPH氧化酶和XO的活性。阿朴吗啡处理导致NADPH氧化酶抑制,可预防IR心脏中XO的激活和O₂⁻生成。用别嘌呤醇或用富含钨的食物喂养动物抑制XO,可预防缺血后O₂⁻生成,尽管这些干预对NADPH活性没有影响。此外,IPC、替唑生坦、噻吩甲酰三氟丙酮(线粒体复合物II抑制剂)和tempol(细胞膜可渗透的O₂⁻清除剂)可预防缺血后NADPH氧化酶和XO的激活以及O₂⁻生成。在豚鼠心脏中:(i)ET -1诱导的O₂⁻生成介导缺血后内皮功能障碍;(ii)IPC和二氮嗪通过减弱ET -1生成,进而减弱O₂⁻生成来提供内皮保护,mKATP开放触发这种保护;(iii)NADPH氧化酶维持XO的活性,XO衍生的O₂⁻介导内皮损伤;(iv)ET -1和O₂⁻(可能源自线粒体)是NADPH氧化酶 - XO级联反应的上游激活剂,IPC通过防止ET -1生成来预防级联反应激活和内皮功能障碍。

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