首页> 美国卫生研究院文献>The Journal of Physiology >Combined inhibition of nitric oxide and prostaglandins reduces human skeletal muscle blood flow during exercise
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Combined inhibition of nitric oxide and prostaglandins reduces human skeletal muscle blood flow during exercise

机译:一氧化氮和前列腺素的联合抑制作用可降低运动过程中人体骨骼肌的血流量

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摘要

The vascular endothelium is an important mediator of tissue vasodilatation, yet the role of the specific substances, nitric oxide (NO) and prostaglandins (PG), in mediating the large increases in muscle perfusion during exercise in humans is unclear. Quadriceps microvascular blood flow was quantified by near infrared spectroscopy and indocyanine green in six healthy humans during dynamic knee extension exercise with and without combined pharmacological inhibition of NO synthase (NOS) and PG by l-NAME and indomethacin, respectively. Microdialysis was applied to determine interstitial release of PG. Compared to control, combined blockade resulted in a 5- to 10-fold lower muscle interstitial PG level. During control incremental knee extension exercise, mean blood flow in the quadriceps muscles rose from 10 ± 0.8 ml (100 ml tissue)−1 min−1 at rest to 124 ± 19, 245 ± 24, 329 ± 24 and 312 ± 25 ml (100 ml tissue)−1 min−1 at 15, 30, 45 and 60 W, respectively. During inhibition of NOS and PG, blood flow was reduced to 8 ± 0.5 ml (100 ml tissue)−1 min−1 at rest, and 100 ± 13, 163 ± 21, 217 ± 23 and 256 ± 28 ml (100 ml tissue)−1 min−1 at 15, 30, 45 and 60 W, respectively (P < 0.05 vs. control). In conclusion, combined inhibition of NOS and PG reduced muscle blood flow during dynamic exercise in humans. These findings demonstrate an important synergistic role of NO and PG for skeletal muscle vasodilatation and hyperaemia during muscular contraction.
机译:血管内皮是组织血管舒张的重要介体,但是尚不清楚特定物质一氧化氮(NO)和前列腺素(PG)在介导人类运动过程中肌肉灌注的大幅增加中的作用。通过近红外光谱法和吲哚菁绿在动态膝关节伸展运动中对四头肌的微血管血流量进行了定量,动态地进行了膝关节伸展运动,分别通过和不通过l-NAME和吲哚美辛对NO合酶(NOS)和PG进行了联合药理学抑制。应用微透析测定PG的间隙释放。与对照组相比,联合封锁导致肌肉间质PG水平降低了5到10倍。在进行控制性的增量膝关节伸展运动期间,股四头肌的平均血流量从静止时的10±0.8 ml(100 ml组织) -1 min -1 上升到124±19分别在15、30、45和60 W时分别为245±24、329±24和312±25 ml(100 ml组织) -1 min -1 。在抑制NOS和PG的过程中,静止时血流减少至8±0.5 ml(100 ml组织) -1 min -1 ,而血流减少至100±13,163± 21、217±23和256±28 ml(100 ml组织)分别在15、30、45和60 W时 -1 min -1 (P <0.05 vs 。 控制)。总之,在人的动态运动过程中,NOS和PG的联合抑制会减少肌肉血流量。这些发现证明了NO和PG对于肌肉收缩期间骨骼肌血管舒张和充血的重要协同作用。

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