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一氧化氮供体对中枢神经系统的影响——大鼠硝酸甘油研究

Effect of nitric oxide donors on the central nervous system--nitroglycerin studies in the rat.

作者信息

Tassorelli C, Costa A, Blandini F, Joseph S A, Nappi G

机构信息

Laboratory of Neurophysiopathology of Integrative Autonomic Systems, San Martino Research Center (University of Pavia, IRCCS C. Mondino Institute of Neurology, IRCCS S. Maugeri Rehabilitation Institute) Pavia, Italy.

出版信息

Funct Neurol. 2000;15 Suppl 3:19-27.

PMID:11200790
Abstract

The demonstration that nitrovasodilators act as nitric oxide (NO) donors has favored a resurgence of interest in this class of compounds. The demonstration of the different biological effects of NO in various districts, including the central nervous system, suggests a possible role for these substances besides their well-known cardiovascular activity. Among the various nitrovasodilators commercially available, nitroglycerin represents a well known substance to headache experts because of its capability to provoke spontaneous-like migraine attacks in headache-free migrainous subjects. Basic research has recently demonstrated that nitroglycerin activates a variegate set of brain nuclei following systemic administration via the intervention of selected neurotransmitters and neuromediators, with a specific time-pattern in different brain areas. Increasing evidence suggests that nitroglycerin-induced neuronal activation is mediated by multiple mechanisms that include direct neuronal and vascular action of nitroglycerin-derived and endogenously-synthesized NO, as well as indirect effects related to nitroglycerin-induced changes in cardiovascular and trigeminovascular systems. The study of the neurovascular effects of nitroglycerin in the rat provides relevant information for a better understanding of the pathophysiology of migraine attacks and of their triggers.

摘要

硝基血管扩张剂作为一氧化氮(NO)供体的证明,重新引发了人们对这类化合物的兴趣。NO在包括中枢神经系统在内的各个区域具有不同的生物学效应,这表明这些物质除了具有众所周知的心血管活性外,可能还具有其他作用。在各种市售的硝基血管扩张剂中,硝酸甘油因其能够在无头痛的偏头痛患者中引发类似自发性偏头痛发作的能力,而被头痛专家所熟知。基础研究最近表明,硝酸甘油通过特定神经递质和神经介质的干预,在全身给药后激活一系列不同的脑核,在不同脑区具有特定的时间模式。越来越多的证据表明,硝酸甘油诱导的神经元激活是由多种机制介导的,这些机制包括硝酸甘油衍生的和内源性合成的NO的直接神经元和血管作用,以及与硝酸甘油诱导的心血管和三叉神经血管系统变化相关的间接效应。对大鼠体内硝酸甘油神经血管效应的研究为更好地理解偏头痛发作的病理生理学及其触发因素提供了相关信息。

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Pathophysiology of Migraine: A Disorder of Sensory Processing.偏头痛的病理生理学:一种感觉处理障碍
Physiol Rev. 2017 Apr;97(2):553-622. doi: 10.1152/physrev.00034.2015.
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Pharmacology of reflex blinks in the rat: a novel model for headache research.大鼠反射性眨眼的药理学:一种用于头痛研究的新模型。
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Dialysis headache.透析性头痛
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