Sahin Ayşe Saide, Atalik Kismet Esra, Sahin Tahir Kemal, Doğan Necdet
Department of Pharmacology, Meram Medicine Faculty, Selçuk University, Konya, Turkey.
Fundam Clin Pharmacol. 2005 Jun;19(3):341-6. doi: 10.1111/j.1472-8206.2005.00330.x.
In the present work we studied the responses of human saphenous vein to H2O2 and effects of moderate cooling on these responses with analysis of the role of endothelium. H2O2 (10(-7)-10(-2) M) induced concentration-dependent contraction in the intact human saphenous vein strips at both temperatures. At 28 degrees C, the maximal contraction induced by H2O2 was significantly lower than that at 37 degrees C. Compared with intact strips, the sensitivity and the maximal contraction to H2O2 were significantly enhanced in endothelium-denuded strips at 37 and 28 degrees C. However, pD2 values and maximal contractions were not significantly different in endothelium-denuded strips at different temperatures. Pretreatment with N(G)-nitro-L-arginine methyl ester (L-NAME) increased significantly the maximal contraction and sensitivity to H2O2 at 37 and 28 degrees C. The contractions increased by L-NAME were restored by the pre-incubation of l-arginine (10(-3) M) at every temperature studied. The contractile responses of intact human saphenous veins to H2O2 were reduced significantly by 10(-5) M indomethacin at both temperatures. Our results suggest that H2O2-induced contraction of human saphenous vein are mediated by its direct effect on the smooth muscle and by the generation of products of the cyclooxygenase pathway from the endothelium. Signalling pathways of these contractile effects are the same at 37 and 28 degrees C. Under normal temperature conditions, the contraction to H2O2 is possibly modulated by endothelial nitric oxide. Cooling reduces the contraction to H2O2 by increasing release of nitric oxide.
在本研究中,我们研究了人隐静脉对过氧化氢(H₂O₂)的反应,以及适度冷却对这些反应的影响,并分析了内皮的作用。在两个温度下,H₂O₂(10⁻⁷ - 10⁻² M)均可诱导完整人隐静脉条产生浓度依赖性收缩。在28℃时,H₂O₂诱导的最大收缩显著低于37℃时。与完整条相比,在37℃和28℃下,内皮剥脱条对H₂O₂的敏感性和最大收缩均显著增强。然而,不同温度下内皮剥脱条的pD₂值和最大收缩无显著差异。在37℃和28℃时,用N⁻硝基⁻L⁻精氨酸甲酯(L⁻NAME)预处理可显著增加对H₂O₂的最大收缩和敏感性。在每个研究温度下,L⁻NAME增加的收缩可通过预孵育10⁻³ M的L⁻精氨酸恢复。在两个温度下,10⁻⁵ M的吲哚美辛均可显著降低完整人隐静脉对H₂O₂的收缩反应。我们的结果表明,H₂O₂诱导的人隐静脉收缩是由其对平滑肌的直接作用以及内皮细胞环氧合酶途径产物的生成介导的。这些收缩作用的信号通路在37℃和28℃时相同。在正常温度条件下,对H₂O₂的收缩可能受内皮一氧化氮调节。冷却通过增加一氧化氮的释放来降低对H₂O₂的收缩。