首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Chronic high blood flow potentiates shear stress-induced release of NO in arteries of aged rats
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Chronic high blood flow potentiates shear stress-induced release of NO in arteries of aged rats

机译:慢性高血流增强老年大鼠动脉中剪应力诱导的NO释放

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摘要

Aging impairs shear-stress-dependent dilation of arteries via increased superoxide production, decreased SOD activity, and decreased activation of endothelial nitric oxide (NO) synthase (eNOS). In the present study, we investigated whether chronic increases in shear stress, elicited by increases in blood flow, would improve vascular endothelial function of aged rats. To this end, second-order mesenteric arteries of young (6 mo) and aged (24 mo) male Fischer-344 rats were selectively ligated for 3 wk to elevate blood flow in a first-order artery [high blood flow (HF)]. An in vitro study was then conducted on first-order arteries with HF and normal blood flow (NF) to assess shear stress (1, 10, and 20 dyn/cm2)-induced release of NO into the perfusate. In HF arteries of both age groups, shear stress-induced NO production increased significantly. In 24-mo-old rats, the reduced shear stress-induced NO production in NF arteries was normalized by HF to a level similar to that in NF arteries of 6-mo-old rats. The increased NO production in HF arteries of 24-mo-old rats was associated with increased shear stress-induced dilation, expression of eNOS protein, and shear stress-induced eNOS phosphorylation. Wortmannin, a phosphatidylinositol 3-kinase inhibitor, reduced shear stress-induced eNOS phosphorylation and vasodilation. Superoxide production decreased significantly in HF compared with NF arteries in 24-mo-old rats. The decreased superoxide production was associated with significant increases in CuZn-SOD and extracellular SOD protein expressions and total SOD activity. These results suggest that stimulation with chronic HF restores shear-stress-induced activation of eNOS and antioxidant ability in aged arteries.
机译:衰老通过增加超氧化物生成,降低SOD活性和降低内皮型一氧化氮(NO)合酶(eNOS)的激活,削弱了动脉的切应力依赖性扩张。在本研究中,我们调查了由血流量增加引起的剪应力的长期增加是否会改善老年大鼠的血管内皮功能。为此,有选择地结扎了年轻(6个月)和老年(24个月)雄性Fischer-344大鼠的二阶肠系膜动脉3周,以提高一阶动脉的血流量[高血流(HF)] 。然后在一级动脉中进行了HF和正常血流(NF)的体外研究,以评估剪切应力(1、10和20 dyn / cm 2 )诱导的NO释放灌注液。在两个年龄段的HF动脉中,切应力引起的NO产生均显着增加。在24个月大的大鼠中,HF使正常的NF动脉剪切应力诱导的NO生成减少,使其水平与6个月大的大鼠NF动脉中的水平相似。 24月龄大鼠HF动脉中NO产生的增加与切应力引起的扩张,eNOS蛋白表达和切应力引起的eNOS磷酸化增加有关。 Wortmannin是一种磷脂酰肌醇3激酶抑制剂,可减少剪切应力诱导的eNOS磷酸化和血管舒张。与24个月大大鼠的NF动脉相比,HF中的超氧化物产生显着降低。超氧化物产量的减少与CuZn-SOD和细胞外SOD蛋白表达以及总SOD活性的显着增加有关。这些结果表明,慢性HF刺激可恢复切应力诱导的老年动脉eNOS活化和抗氧化能力。

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