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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Hydrogen sulfide impairs shear stress-induced vasodilation in mouse coronary arteries
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Hydrogen sulfide impairs shear stress-induced vasodilation in mouse coronary arteries

机译:硫化氢损害小鼠冠状动脉的切应力诱导的血管舒张

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Hydrogen sulfide has emerged as an important endothelium-dependent vasodilator, but its role in shear stress-mediated dilation of coronary arteries is unclear. We examined the role of H2S on shear stress-mediated dilation of isolated mouse coronary arteries. In these vessels, Na2S produced concentration-dependent dilation, which was significantly inhibited by iberiotoxin and by 4-aminopyridine. In addition, BK and Kv currents in mouse coronary smooth muscle cells were directly activated by Na2S, suggesting that H2S produced vasodilation through BK and Kv channel activation. Using a pressure servo controller system, freshly isolated mouse coronary arteries were subjected to physiological levels of shear stress (1 to 25 dynes/cm(2)) and produced graded dilatory responses, but such effects were diminished in the presence of 100 mu M Na2S. Pre-incubation with the cystathionine gamma-lyase inhibitor, d,l-propargylglycine (PPG), resulted in a paradoxical augmentation of shear stress-mediated vasodilation. However, in the presence of L-NAME or in coronary arteries from eNOS knockout mice, PPG inhibited shear stress-mediated vasodilation, suggesting an interaction between NO and H2S signaling. Na2S inhibited eNOS activity in cultured mouse aortic endothelial cells and reduced the level of phospho-eNOS(serine 1177). These results suggest that both NO and H2S are important shear stress-mediated vasodilators in mouse coronary arteries but there is a complex interaction between these two signaling pathways that results in paradoxical vasoconstrictive effects of H2S through inhibition of NO generation.
机译:硫化氢已成为一种重要的内皮依赖性血管舒张剂,但其在切应力介导的冠状动脉扩张中的作用尚不清楚。我们检查了H2S在剪切应力介导的离体小鼠冠状动脉扩张中的作用。在这些血管中,Na2S产生浓度依赖性的扩张,这种作用被埃博毒素和4-氨基吡啶显着抑制。此外,Na2S直接激活了小鼠冠状平滑肌细胞中的BK和Kv电流,表明H2S通过BK和Kv通道激活产生了血管舒张作用。使用压力伺服控制器系统,使刚分离的小鼠冠状动脉经受生理水平的切应力(1至25 dynes / cm(2))并产生分级的扩张反应,但在存在100μM Na2S的情况下,这种作用会减弱。与胱硫醚γ-裂合酶抑制剂d,l-炔丙基甘氨酸(PPG)进行预孵育,导致剪切应力介导的血管舒张异常增加。但是,在存在L-NAME或来自eNOS基因敲除小鼠的冠状动脉中,PPG抑制剪切应力介导的血管舒张,提示NO和H2S信号之间存在相互作用。 Na2S抑制培养的小鼠主动脉内皮细胞中的eNOS活性,并降低磷酸化eNOS(丝氨酸1177)的水平。这些结果表明,NO和H2S都是小鼠冠状动脉中重要的切应力介导的血管舒张剂,但是这两个信号通路之间存在复杂的相互作用,这通过抑制NO的产生而导致H2S的悖论性血管收缩作用。

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