首页> 美国卫生研究院文献>The Journal of Physiology >Effect of inhibitors of nitric oxide release and action on vascular tone in isolated lungs of pig sheep dog and man.
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Effect of inhibitors of nitric oxide release and action on vascular tone in isolated lungs of pig sheep dog and man.

机译:一氧化氮释放抑制剂的作用和作用对猪绵羊狗和人的离体肺中血管张力的影响。

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摘要

1. The actions of inhibitors of the release or action of nitric oxide (NO) on pulmonary vascular resistance (PVR) were investigated in lungs isolated from pig, sheep, dog and man. 2. In pig, sheep and human lungs perfused with Krebs-dextran solution, both N omega-nitro-L-arginine methyl ester (L-NAME; 10(-5) M) and Methylene Blue (10(-4) M) increased basal PVR. This increase was reversed by sodium nitroprusside (10(-5) M). In pig lungs N omega-monomethyl-L-arginine (10(-4) M) increased PVR by 154%. This increase was partially reversed by L-arginine (10(-3) M). L-NAME had no effect in dog lungs. 3. Pulmonary artery pressure-flow (PPA/Q) relationships were studied over a wide range of flows. In pigs, sheep and human lungs perfused with Krebs-dextran solution, L-NAME increased the PPA/Q slope. This increase was reversed by sodium nitroprusside. In dog lungs L-NAME had no effect. 4. In blood-perfused lungs, the respective responses to L-NAME were similar to those observed with saline. Acute hypoxia in pig and dog lungs increased intercept pressure. Addition of L-NAME during hypoxia increased the PPA/Q slope in both species. 5. In the human, there was no difference in the absolute increase of PVR or PPA/Q slope elicited by L-NAME between hypertensive and control lungs. 6. We conclude that NO is continuously released in the pulmonary vascular bed of pig, sheep and humans under normoxic conditions. In dog lungs inhibition of NO synthesis increases PVR only under hypoxic conditions. In human lungs with pulmonary hypertension, NO is still released under basal conditions.
机译:1.在分离自猪,绵羊,狗和人的肺中,研究了释放抑制剂或一氧化氮(NO)对肺血管阻力(PVR)的作用。 2.在猪,绵羊和人的肺中,用克雷布斯-葡聚糖溶液灌注Nω-硝基-L-精氨酸甲酯(L-NAME; 10(-5)M)和亚甲基蓝(10(-4)M)基础PVR增加。硝普钠(10(-5)M)逆转了这种增加。在猪肺中,NΩ-单甲基-L-精氨酸(10(-4)M)使PVR增加154%。 L-精氨酸(10(-3)M)部分抵消了这种增加。 L-NAME对犬肺无影响。 3.在广泛的流量范围内研究了肺动脉压力-流量(PPA / Q)关系。在猪,绵羊和人肺中注入Krebs-葡聚糖溶液后,L-NAME增加了PPA / Q斜率。硝普钠可逆转这种增加。在犬肺中,L-NAME没有作用。 4.在血液灌注的肺中,对L-NAME的相应反应与在盐水中观察到的反应相似。猪和犬肺中的急性缺氧会增加拦截压力。缺氧期间添加L-NAME会增加两种物种的PPA / Q斜率。 5.在人类中,高血压和对照肺之间由L-NAME引起的PVR或PPA / Q斜率的绝对增加没有差异。 6.我们得出结论,在常氧条件下,NO在猪,绵羊和人的肺血管床中不断释放。在犬肺中,仅在低氧条件下,NO合成的抑制作用才会增加PVR。在患有肺动脉高压的人肺中,基础条件下仍会释放NO。

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