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首页> 外文期刊>Frontiers in Physiology >The Adenosine Hypothesis Revisited: Modulation of Coupling between Myocardial Perfusion and Arterial Compliance
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The Adenosine Hypothesis Revisited: Modulation of Coupling between Myocardial Perfusion and Arterial Compliance

机译:腺苷假说再谈:心肌灌注与动脉顺应性之间的耦合调节。

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For over four decades the thoracic aortic ring model has become one of the most widely used methods to study vascular reactivity and electromechanical coupling. A question that is rarely asked, however, is what function does a drug-mediated relaxation (or contraction) in this model serve in the intact system? The physiological significance of adenosine relaxation in rings isolated from large elastic conduit arteries from a wide range of species remains largely unknown. We propose that adenosine relaxation increases aortic compliance in acute stress states and facilitates ventricular-arterial (VA) coupling, and thereby links compliance and coronary artery perfusion to myocardial energy metabolism. In 1963 Berne argued that adenosine acts as a local negative feedback regulator between oxygen supply and demand in the heart during hypoxic/ischemic stress. The adenosine VA coupling hypothesis extends and enhances Berne's “adenosine hypothesis” from a local regulatory scheme in the heart to include conduit arterial function. In multicellular organisms, evolution may have selected adenosine, nitric oxide, and other vascular mediators, to modulate VA coupling for optimal transfer of oxygen (and nutrients) from the lung, heart, large conduit arteries, arterioles and capillaries to respiring mitochondria. Finally, a discussion of the potential clinical significance of adenosine modulation of VA coupling is extended to vascular aging and disease, including hypertension, diabetes, obesity, coronary artery disease and heart failure.
机译:在过去的四十年中,胸主动脉环模型已成为研究血管反应性和机电耦合的最广泛使用的方法之一。但是,很少有人问这个问题,在这种模型中,药物介导的松弛(或收缩)在完整系统中起什么作用?从各种物种的大的弹性导管动脉中分离出来的环中,腺苷松弛的生理意义仍然未知。我们提出,腺苷松弛可增加急性应激状态下的主动脉顺应性并促进心室-动脉(VA)耦合,从而将顺应性和冠状动脉灌注与心肌能量代谢联系起来。 1963年,伯恩(Berne)提出,在缺氧/缺血性应激期间,腺苷可作为心脏供氧与供氧之间的局部负反馈调节剂。腺苷VA耦合假说从心脏的局部调节方案扩展并增强了Berne的“腺苷假说”,以包括导管动脉功能。在多细胞生物中,进化可能已经选择了腺苷,一氧化氮和其他血管介体,以调节VA耦合,从而使氧气(和营养素)从肺,心脏,大导管动脉,小动脉和毛细血管到呼吸性线粒体的最佳转移。最后,关于腺苷调节VA偶联的潜在临床意义的讨论扩展到了血管老化和疾病,包括高血压,糖尿病,肥胖症,冠状动脉疾病和心力衰竭。

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