Dual role of nNOS in ischemic injury and preconditioning.

Q1 Biochemistry, Genetics and Molecular Biology
Anupama Barua, Nicholas B Standen, Manuel Galiñanes
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引用次数: 17

Abstract

Background: Nitric oxide (NO) is cardioprotective and a mediator of ischemic preconditioning (IP). Endothelial nitric oxide synthase (eNOS) is protective against myocardial ischemic injury and a component of IP but the role and location of neuronal nitric oxide synthase (nNOS) remains unclear. Therefore, the aims of these studies were to: (i) investigate the role of nNOS in ischemia/reoxygenation-induced injury and IP, (ii) determine whether its effect is species-dependent, and (iii) elucidate the relationship of nNOS with mitoKATP channels and p38MAPK, two key components of IP transduction pathway.

Results: Ventricular myocardial slices from rats and wild and nNOS knockout mice, and right atrial myocardial slices from human were subjected to 90 min ischemia and 120 min reoxygenation (37 degrees C). Specimens were randomized to receive various treatments (n = 6/group). Both the provision of exogenous NO and the inhibition of endogenous NO production significantly reduced tissue injury (creatine kinase release, cell necrosis and apoptosis), an effect that was species-independent. The cardioprotection seen with nNOS inhibition was as potent as that of IP, however, in nNOS knockout mice the cardioprotective effect of non-selective NOS (L-NAME) and selective nNOS inhibition and also that of IP was blocked while the benefit of exogenous NO remained intact. Additional studies revealed that the cardioprotection afforded by exogenous NO and by inhibition of nNOS were unaffected by the mitoKATP channel blocker 5-HD, although it was abrogated by p38MAPK blocker SB203580.

Conclusions: nNOS plays a dual role in ischemia/reoxygenation in that its presence is necessary to afford cardioprotection by IP and its inhibition reduces myocardial ischemic injury. The role of nNOS is species-independent and exerted downstream of the mitoKATP channels and upstream of p38MAPK.

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nNOS在缺血性损伤和预处理中的双重作用。
背景:一氧化氮(NO)具有心脏保护作用,是缺血预处理(IP)的介质。内皮型一氧化氮合酶(eNOS)对心肌缺血损伤具有保护作用,是IP的一个组成部分,但神经元型一氧化氮合酶(nNOS)的作用和位置尚不清楚。因此,这些研究的目的是:(i)研究nNOS在缺血/再氧化诱导的损伤和IP中的作用,(ii)确定其作用是否具有物种依赖性,(iii)阐明nNOS与mitoKATP通道和p38MAPK (IP转导途径的两个关键组分)的关系。结果:大鼠、野生小鼠和nNOS敲除小鼠心室心肌切片和人右心房心肌切片分别缺血90 min和复氧120 min(37℃),随机取不同处理(n = 6/组)。提供外源性NO和抑制内源性NO的产生都能显著减少组织损伤(肌酸激酶释放、细胞坏死和凋亡),这是一种不依赖于物种的效应。nNOS抑制的心脏保护作用与IP一样有效,但在nNOS敲除小鼠中,非选择性NOS (L-NAME)和选择性nNOS抑制以及IP的心脏保护作用被阻断,而外源性NO的作用保持不变。进一步的研究表明,外源性NO和抑制nNOS所提供的心脏保护不受mitoKATP通道阻断剂5-HD的影响,尽管它被p38MAPK阻断剂SB203580所消除。结论:nNOS在缺血/再氧化中具有双重作用,其存在对心肌缺血保护是必要的,其抑制作用可减轻心肌缺血损伤。nNOS的作用与物种无关,作用于mitoKATP通道的下游和p38MAPK的上游。
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来源期刊
BMC Physiology
BMC Physiology Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
9.60
自引率
0.00%
发文量
0
期刊介绍: BMC Physiology is an open access journal publishing original peer-reviewed research articles in cellular, tissue-level, organismal, functional, and developmental aspects of physiological processes. BMC Physiology (ISSN 1472-6793) is indexed/tracked/covered by PubMed, MEDLINE, BIOSIS, CAS, EMBASE, Scopus, Zoological Record and Google Scholar.
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