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绵羊肺动脉和肺静脉的内皮依赖性舒张:肺动脉高压时对NG-硝基-L-精氨酸阻断作用的抵抗

Endothelium-dependent relaxations in sheep pulmonary arteries and veins: resistance to block by NG-nitro-L-arginine in pulmonary hypertension.

作者信息

Kemp B K, Smolich J J, Ritchie B C, Cocks T M

机构信息

Department of Pharmacology, University of Melbourne, Parkville, Victoria, Australia.

出版信息

Br J Pharmacol. 1995 Nov;116(5):2457-67. doi: 10.1111/j.1476-5381.1995.tb15096.x.

Abstract
  1. The effect of the nitric oxide synthase inhibitor, NG-nitro-L-arginine (L-NOARG), on endothelium-dependent relaxation to a receptor-independent agent, ionomycin, was examined in isolated pulmonary arteries and veins from control, short-term and chronic pulmonary hypertensive sheep. All vessel segments were contracted to optimal levels of active force with endothelin-1 to record endothelium-dependent relaxation. 2. Pulmonary hypertension was induced by continuous pulmonary artery air embolization for 1 day (short-term) and 14 days (chronic) and was associated with a 2 and 3 fold increase in pulmonary vascular resistance respectively. 3. L-NOARG (0.1 mM) reduced the maximum relaxation (Rmax) to ionomycin in large and medium-sized pulmonary arteries from control sheep by approximately 70%. By contrast, L-NOARG (0.1 mM) did not inhibit the Rmax to ionomycin in matched vessels from short-term and chronic pulmonary hypertensive sheep. 4. Resistance of ionomycin-induced relaxations to inhibition by L-NOARG, was confined to the arterial vasculature in chronic pulmonary hypertensive animals, as relaxations to ionomycin in large and medium-sized chronic pulmonary hypertensive veins were, like those in control veins, abolished by L-NOARG. Both large and medium-sized pulmonary veins from short-term pulmonary hypertensive sheep, however, were resistant to block by L-NOARG. 5. Neither sensitivity (pEC50) nor Rmax to ionomycin in large, short-term pulmonary hypertensive arteries was affected when the extracellular concentration of K+ was increased isotonically to 30 mM. Nifedipine (0.3 microM) was present throughout to prevent high K(+)-induced smooth muscle contraction. In the presence of this high extracellular K+, however, L-NOARG (0.1 mM) caused complete inhibition of the relaxation to ionomycin, whereas in normal extracellular K+ (4.7 mM), L-NOARG only weakly inhibited ionomycin relaxations. 6. In conclusion, the onset of pulmonary hypertension in sheep following air embolization, is associated with the development of resistance of endothelium-dependent relaxations to block by L-NOARG. The mechanism of L-NOARG resistance appears to be due to the up-regulation of a K+ channel-mediated backup vasodilator mechanism which can compensate for the loss of nitric oxide (NO)-mediated relaxation. Although this mechanism remains functionally 'silent' in the presence of NO it is able to maintain adequate endothelium-dependent vasodilatation during pulmonary hypertension if NO synthesis is compromised.
摘要
  1. 在对照羊、短期和慢性肺动脉高压羊的离体肺动脉和静脉中,研究了一氧化氮合酶抑制剂NG-硝基-L-精氨酸(L-NOARG)对内皮依赖性舒张反应(针对非受体依赖性药物离子霉素)的影响。所有血管段均用内皮素-1收缩至最佳主动张力水平,以记录内皮依赖性舒张反应。2. 通过持续肺动脉空气栓塞1天(短期)和14天(慢性)诱导肺动脉高压,肺动脉高压分别与肺血管阻力增加2倍和3倍相关。3. L-NOARG(0.1 mM)使对照羊的大中型肺动脉对离子霉素的最大舒张反应(Rmax)降低约70%。相比之下,L-NOARG(0.1 mM)并未抑制短期和慢性肺动脉高压羊的匹配血管对离子霉素的Rmax。4. 离子霉素诱导的舒张反应对L-NOARG抑制的抵抗仅限于慢性肺动脉高压动物的动脉血管系统,因为慢性肺动脉高压的大中型静脉对离子霉素的舒张反应,与对照静脉一样,被L-NOARG消除。然而,短期肺动脉高压羊的大中型肺静脉对L-NOARG的阻断具有抗性。5. 当细胞外钾离子浓度等渗增加至30 mM时,短期肺动脉高压的大动脉对离子霉素的敏感性(pEC50)和Rmax均未受影响。全程存在硝苯地平(0.3 microM)以防止高钾诱导的平滑肌收缩。然而,在这种高细胞外钾存在的情况下,L-NOARG(0.1 mM)导致对离子霉素的舒张反应完全被抑制,而在正常细胞外钾(4.7 mM)时,L-NOARG仅微弱抑制离子霉素诱导的舒张反应。6. 总之,空气栓塞后羊发生肺动脉高压与内皮依赖性舒张反应对L-NOARG阻断产生抗性有关。L-NOARG抗性的机制似乎是由于钾通道介导的备用血管舒张机制上调,该机制可补偿一氧化氮(NO)介导的舒张反应的丧失。尽管该机制在NO存在时功能上保持“沉默”,但如果NO合成受损,它能够在肺动脉高压期间维持足够的内皮依赖性血管舒张。

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