School of Sports Science, Exercise and Health, The Univ. of Western Australia M408, Crawley, 6009 Western Australia.
Am J Physiol Heart Circ Physiol. 2011 Feb;300(2):H664-9. doi: 10.1152/ajpheart.00985.2010. Epub 2010 Dec 3.
This study aimed to determine the importance of repeated increases in blood flow to conduit artery adaptation, using an exercise-independent repeated episodic stimulus. Recent studies suggest that exercise training improves vasodilator function of conduit arteries via shear stress-mediated mechanisms. However, exercise is a complex stimulus that may induce shear-independent adaptations. Nine healthy men immersed their forearms in water at 42°C for three 30-min sessions/wk across 8 wk. During each session, a pneumatic pressure cuff was inflated around one forearm to unilaterally modulate heating-induced increases in shear. Forearm heating was associated with an increase in brachial artery blood flow (P<0.001) and shear rate (P<0.001) in the uncuffed forearm; this response was attenuated in the cuffed limb (P<0.005). Repeated episodic exposure to bilateral heating induced an increase in endothelium-dependent vasodilation in response to 5-min ischemic (P<0.05) and ischemic handgrip exercise (P<0.005) stimuli in the uncuffed forearm, whereas the 8-wk heating intervention did not influence dilation to either stimulus in the cuffed limb. Endothelium-independent glyceryl trinitrate responses were not altered in either limb. Repeated heating increases blood flow to levels that enhance endothelium-mediated vasodilator function in humans. These findings reinforce the importance of the direct impacts of shear stress on the vascular endothelium in humans.
本研究旨在确定重复增加血流对导管动脉适应性的重要性,使用非运动独立的重复发作刺激。最近的研究表明,运动训练通过切应力介导的机制改善了导管动脉的血管舒张功能。然而,运动是一种复杂的刺激,可能会引起与切应力无关的适应。9 名健康男性将前臂浸入 42°C 的水中,每周进行 3 次,每次 30 分钟,共 8 周。在每次会议中,一个气动压力袖带充气环绕一只前臂,以单边调节加热引起的切应力增加。前臂加热与未加压臂的肱动脉血流(P<0.001)和剪切率(P<0.001)增加有关;这种反应在加压臂中减弱(P<0.005)。重复发作性暴露于双侧加热会导致未加压臂对 5 分钟缺血(P<0.05)和缺血性握力运动(P<0.005)刺激的内皮依赖性血管舒张增加,而 8 周的加热干预并没有影响加压臂对任一刺激的扩张。内皮非依赖性甘油三酯反应在两个肢体中都没有改变。重复加热增加血流水平,增强了人类内皮介导的血管舒张功能。这些发现强调了切应力对人类血管内皮的直接影响的重要性。