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内皮一氧化氮在肌肉代谢反射激活过程中对周围血管传导的控制作用。

Role of endothelial nitric oxide in control of peripheral vascular conductance during muscle metaboreflex activation.

作者信息

Senador Danielle, Kaur Jasdeep, Alvarez Alberto, Hanna Hanna W, Krishnan Abhinav C, Altamimi Yasir H, O'Leary Donal S

机构信息

Department of Physiology and Cardiovascular Research Institute, Wayne State University School of Medicine, Detroit, Michigan.

Department of Physiology and Cardiovascular Research Institute, Wayne State University School of Medicine, Detroit, Michigan

出版信息

Am J Physiol Regul Integr Comp Physiol. 2017 Jul 1;313(1):R29-R34. doi: 10.1152/ajpregu.00515.2016. Epub 2017 May 10.

Abstract

The muscle metaboreflex is a powerful pressor reflex induced by the activation of chemically sensitive muscle afferents as a result of metabolite accumulation. During submaximal dynamic exercise, the rise in arterial pressure is primarily due to increases in cardiac output, since there is little systemic vasoconstriction. Indeed, in normal animals, we have often shown a small, but significant, peripheral vasodilation during metaboreflex activation, which is mediated, at least in part, by release of epinephrine and activation of vascular β-receptors. We tested whether this vasodilation is in part due to increased release of nitric oxide caused by the rise in cardiac output eliciting endothelium-dependent flow-mediated vasodilation. The muscle metaboreflex was activated via graded reductions in hindlimb blood flow during mild exercise with and without nitric oxide synthesis blockade [-nitro-l-arginine methyl ester (l-NAME); 5 mg/kg]. We assessed the role of increased cardiac output in mediating peripheral vasodilation via the slope of the relationship between the rise in nonischemic vascular conductance (conductance of all vascular beds excluding hindlimbs) vs. the rise in cardiac output. l-NAME increased mean arterial pressure at rest and during exercise. The metaboreflex-induced increases in mean arterial pressure were unaltered by l-NAME, whereas the increases in cardiac output and nonischemic vascular conductance were attenuated. However, the slope of the relationship between nonischemic vascular conductance and cardiac output was not affected by l-NAME, indicating that the rise in cardiac output did not elicit vasodilation via increased release of nitric oxide. Thus, although nitric oxide is intrinsic to the vascular tonus, endothelial-dependent flow-mediated vasodilation plays little role in the small peripheral vasodilation observed during muscle metaboreflex activation.

摘要

肌肉代谢性反射是一种强大的升压反射,由代谢产物积累导致化学敏感肌肉传入神经激活所诱发。在次最大强度动态运动期间,动脉血压升高主要归因于心输出量增加,因为全身血管收缩较少。实际上,在正常动物中,我们经常发现代谢性反射激活期间存在轻微但显著的外周血管舒张,这至少部分是由肾上腺素释放和血管β受体激活介导的。我们测试了这种血管舒张是否部分归因于因心输出量增加引起的一氧化氮释放增加,进而引发内皮依赖性血流介导的血管舒张。在轻度运动期间,通过逐步减少后肢血流量来激活肌肉代谢性反射,实验分为有和没有一氧化氮合成阻断剂[L-硝基-精氨酸甲酯(L-NAME);5毫克/千克]两组。我们通过非缺血性血管电导(不包括后肢的所有血管床的电导)升高与心输出量升高之间关系的斜率,评估心输出量增加在介导外周血管舒张中的作用。L-NAME在静息和运动期间均升高平均动脉压。L-NAME并未改变代谢性反射引起的平均动脉压升高,而心输出量和非缺血性血管电导的升高则减弱。然而,L-NAME并未影响非缺血性血管电导与心输出量之间关系的斜率,这表明心输出量增加并未通过一氧化氮释放增加引发血管舒张。因此,尽管一氧化氮对于血管张力至关重要,但内皮依赖性血流介导的血管舒张在肌肉代谢性反射激活期间观察到的轻微外周血管舒张中作用不大。

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