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Role of NO and EDHF-mediated endothelial function in the porcine pulmonary circulation: comparison between pulmonary artery and vein.

机译:NO和EDHF介导的内皮功能在猪肺循环中的作用:肺动脉和静脉的比较。

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OBJECTIVE: To compare electrophysiological measurement of nitric oxide (NO) release and endothelium-derived hyperpolarizing factor (EDHF)-mediated endothelial function in porcine pulmonary arteries and veins. METHODS: Isolated pulmonary interlobular arteries (PA) and veins (PV) were obtained from a local slaughterhouse. By using a NO-specific electrode and a conventional intracellular microelectrode, the amount of NO released from endothelial cells and hyperpolarization of smooth muscle cells were investigated. The bradykinin (BK)-induced relaxation in the precontraction by U(46619) was examined in the absence or presence of N(G)-nitro-l-arginine (l-NNA), indomethacin (INDO) plus oxyhemoglobin (HbO). RESULTS: The basal release of NO was 7.0+/-1.2 nmol/L in PA (n=8) and 5.5+/-1.6 nmol/L in PV (n=8, p<0.01). BK-induced release of NO was 160.4+/-10.3 nmol/L in PA (n=8) and 103.0+/-14.7 nmol/L in PV (n=8, p<0.001) with longer releasing duration in PA than in PV (14.3+/-1.3 vs. 12.1+/-0.8 min, p<0.01). BK evoked an endothelium-dependent hyperpolarization and relaxation that were reduced by l-NNA, INDO, and HbO (hyperpolarization: 12.8+/-1.3 vs. 8.0+/-1.4 mV in PA, n=6, p<0.001 and 8.3+/-1.4 vs. 3.0+/-0.8 mV in PV, n=6, p<0.001; relaxation: 92.8+/-3.1% vs. 19.6+/-11.1% in PA n=8, p<0.001 and 70.3+/-7.9% vs. 6.0+/-6.8% in PV, n=8, p<0.001). Both hyperpolarization (8.0+/-1.4 vs. 3.0+/-0.8 mV, p<0.001) and relaxation (19.6+/-11.1% vs. 6.0+/-6.8%, p<0.01) were greater in PA than in PV. CONCLUSIONS: Both NO and EDHF play an important role in regulation of porcine pulmonary arterial and venous tones. The more significant role of NO and EDHF is revealed in pulmonary arteries than in veins.
机译:目的:比较猪肺动脉和静脉中一氧化氮(NO)释放和内皮源性超极化因子(EDHF)介导的内皮功能的电生理测量。方法:从当地一家屠宰场获得孤立的肺小叶间动脉(PA)和静脉(PV)。通过使用NO特异性电极和常规的细胞内微电极,研究了内皮细胞释放的NO量和平滑肌细胞的超极化现象。在不存在或存在N(G)-硝基-1-精氨酸(l-NNA),消炎痛(INDO)和氧合血红蛋白(HbO)的情况下,检查了U(46619)在收缩前由缓激肽(BK)诱导的松弛。结果:NO的基本释放在PA中为7.0 +/- 1.2 nmol / L(n = 8),在PV中为5.5 +/- 1.6 nmol / L(n = 8,p <0.01)。 BK诱导的PA中的NO释放量为160.4 +/- 10.3 nmol / L(n = 8),PV中的NO释放量为103.0 +/- 14.7 nmol / L(n = 8,p <0.001),PA中的释放持续时间长于Pn。 PV(14.3 +/- 1.3与12.1 +/- 0.8分钟,p <0.01)。 BK引起了内皮依赖性的超极化和舒张作用,被l-NNA,INDO和HbO降低(超极化:PA中的12.8 +/- 1.3 vs.8.0 +/- 1.4 mV,n = 6,p <0.001和8.3+ /-1.4 vs.PV中的3.0 +/- 0.8 mV,n = 6,p <0.001;弛豫度:92.8 +/- 3.1%vs.PA中的19.6 +/- 11.1%n = 8,p <0.001和70.3+ /-7.9%相对于PV的6.0 +/- 6.8%,n = 8,p <0.001)。 PA的超极化(8.0 +/- 1.4与3.0 +/- 0.8 mV,p <0.001)和松弛(19.6 +/- 11.1%与6.0 +/- 6.8%,p <0.01)均大于PV 。结论:NO和EDHF均在调节猪肺动脉和静脉音调中起重要作用。 NO和EDHF在肺动脉中比在静脉中显示出更重要的作用。

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