Endothelium-Derived Dopamine and 6-Nitrodopamine in the Cardiovascular System.

IF 5.3 2区 医学 Q1 PHYSIOLOGY
Physiology Pub Date : 2024-01-01 Epub Date: 2023-10-24 DOI:10.1152/physiol.00020.2023
Roberto Zatz, Gilberto De Nucci
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引用次数: 0

Abstract

The review deals with the release of endothelium-derived dopamine and 6-nitrodopamine (6-ND) and its effects on isolated vascular tissues and isolated hearts. Basal release of both dopamine and 6-ND is present in human isolated umbilical cord vessels, human popliteal vessels, nonhuman primate vessels, and reptilia aortas. The 6-ND basal release was significantly reduced when the tissues were treated with Nω-nitro-l-arginine methyl ester and virtually abolished when the endothelium was mechanically removed. 6-Nitrodopamine is a potent vasodilator, and the mechanism of action responsible for this effect is the antagonism of dopamine D2-like receptors. As a vasodilator, 6-ND constitutes a novel mechanism by which nitric oxide modulates vascular tone. The basal release of 6-ND was substantially decreased in endothelial nitric oxide synthase knockout (eNOS-/-) mice and not altered in neuronal nitric oxide synthase knockout (nNOS-/-) mice, indicating a nonneurogenic source for 6-ND in the heart. Indeed, in rat isolated right atrium, the release of 6-ND was not affected when the atria were treated with tetrodotoxin. In the rat isolated right atrium, 6-ND is the most potent endogenous positive chronotropic agent, and in Langendorff's heart preparation, it is the most potent endogenous positive inotropic agent. The positive chronotropic and inotropic effects of 6-ND are antagonized by β1-adrenoceptor antagonists at concentrations that do not affect the effects induced by noradrenaline, adrenaline, and dopamine, indicating that blockade of the 6-ND receptor is the major modulator of heart chronotropism and inotropism. The review proposes that endothelium-derived catecholamines may constitute a major mechanism for control of vascular tone and heart functions, in contrast to the overrated role attributed to the autonomic nervous system.

内皮源性多巴胺和6-硝基多巴胺在心血管系统中的作用。
综述了内皮衍生多巴胺和6-硝基多巴胺(6-ND)的释放及其对离体血管组织和离体心脏的影响。人类分离的脐带血管、人类腘血管、非人灵长类动物血管和爬行动物主动脉都呈现多巴胺和6-ND的基础释放。当用L-NAME处理组织时,6-ND的基础释放显著减少,而当机械去除内皮时,基本释放几乎消失。6-硝基多巴胺是一种强效的血管舒张剂,其作用机制是拮抗多巴胺D2样受体。6-ND作为一种血管舒张剂,构成了NO调节血管张力的新机制。6-ND的基础释放在eNOS-/-小鼠中显著减少,而在nNOS-/-小鼠中没有改变,这表明6-ND在心脏中是非神经源性来源。事实上,在大鼠分离的右心房中,当用河豚毒素治疗心房时,6-ND的释放没有受到影响。在大鼠离体右心房中,6-ND是最有效的内源性正性变时剂,而在Langendorff的心脏制剂中,它是最有力的内源性正变力剂。β1-肾上腺素受体拮抗剂在不影响去甲肾上腺素、肾上腺素和多巴胺诱导的作用的浓度下拮抗6-ND的正性变时和变力作用,表明阻断6-ND受体是心脏变时和向力的主要调节剂。这篇综述提出,内皮衍生的儿茶酚胺可能是控制血管张力和心脏功能的主要机制,而自主神经系统的作用被高估了。
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来源期刊
Physiology
Physiology 医学-生理学
CiteScore
14.50
自引率
0.00%
发文量
37
期刊介绍: Physiology journal features meticulously crafted review articles penned by esteemed leaders in their respective fields. These articles undergo rigorous peer review and showcase the forefront of cutting-edge advances across various domains of physiology. Our Editorial Board, comprised of distinguished leaders in the broad spectrum of physiology, convenes annually to deliberate and recommend pioneering topics for review articles, as well as select the most suitable scientists to author these articles. Join us in exploring the forefront of physiological research and innovation.
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