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首页> 外文期刊>Physiology International: Acta Physiologica Hungarica >Moderate hypothermia and responses to calcium channel blockers - Role of the nitric oxide
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Moderate hypothermia and responses to calcium channel blockers - Role of the nitric oxide

机译:对钙通道阻滞剂的适度低温和反应 - 一氧化氮的作用

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Moderate hypothermia (25-31 degrees C) may have a significant influence on vascular tone. At present, very little is known about the role of endothelial nitric oxide on the hypothermia-induced responses. In this study, we investigated the effect of hypothermia (to 28 degrees C) on the vasodilatation induced by verapamil, a phenylalkylamine calcium channel blocker (10(-9)-3 x 10(-4) M) and dihydropyridines, amlodipine (10(-9)-3 x 10(-4) M), and benidipine (10(-9)-10(-3) M) on 5-hydroxytryptamine (5-HT or serotonin) precontracted calf cardiac veins. Furthermore, the role of nitric oxide in the hypothermia-induced responses was analyzed. Ring preparations of veins obtained from calf hearts were suspended in organ baths containing 15 ml of Krebs-Henseleit solution, maintained at 37 degrees C, and continuously gassed with 95% O-2-5% CO2. After a resting period, verapamil, amlodipine, and benidipine were applied cumulatively on serotonin (10(-6) M) precontracted calf cardiac vein rings and induced concentration-dependent relaxations. In another part of the study, the medium temperature was decreased to 28 degrees C after the preparations were contracted with 5-HT, then cumulative concentrations of verapamil, amlodipine, or benidipine were added. During hypothermia, the pIC(50) value, but not the maximal response, to all blockers were significantly higher than at 37 degrees C. Hypothermia in the presence of N-G-nitro-L-arginine methyl ester (L-NAME, 10(-4) M) decreased the pIC(50) and E-max values to verapamil, amlodipine, and benidipine. Only one blocker was tested in each preparation. These results suggest that nitric oxide may play a role in the hypothermia-induced changes in vasodilation caused by verapamil, amlodipine, and benidipine in calf cardiac vein, but further research is needed to explain the complete mechanism.
机译:中等低温(25-31摄氏度)可能对血管间调产生重大影响。目前,关于内皮一氧化氮对低温诱导的反应的作用很少。在这项研究中,我们研究了体温过低(至28℃)对维拉帕米诱导的血管扩张的影响,苯基烷基胺钙通道阻断剂(10(-9)-3×10(-4)m)和二氢吡啶,氨氯吡啶(10 (-9)-3×10(-4)m),苯太哌齐(10(-9)-10(-3)m)在5-羟基 - 羟基(5-HT或血清素)前诊断小牛心脏静脉。此外,分析了一氧化氮在低温诱导的反应中的作用。从小牛心中获得的环静脉悬浮在含有15ml克雷布-Hisleit溶液的器官浴中,保持在37摄氏度,并连续地使用95%O-2-5%CO 2。在休息期,维拉帕米,氨氯地平和苯甲酰比在血清素(10(-6)M)前诱导的小牛心静脉环上施加累积,并诱导浓度依赖性松弛。在该研究的另一部分中,在用5-HT收缩的制剂收缩后,中温度降至28℃,然后加入累积维拉帕米,氨氯地平或苯特异滑的累积浓度。在体温过低期间,PIC(50)值但不是最大反应,在所有阻滞剂上显着高于在Ng-Nitro-L-精氨酸甲酯(L-Name,10( - 4)M)将PIC(50)和E-Max值降低至维拉帕米,氨氯堇和苯特哌啶。在每次准备中只测试了一个障碍物。这些结果表明,一氧化氮可能在钙米尔,氨氯地平和小牛心静脉中引起的血管舒张诱导的血管舒张变化中发挥作用,但需要进一步研究来解释完整的机制。

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