Noguera M A, D'Ocon M P
Departamento de Farmacología, Facultad de Farmacia, Universidad de Valencia, Spain.
J Pharm Pharmacol. 1993 Aug;45(8):701-6. doi: 10.1111/j.2042-7158.1993.tb07092.x.
Noradrenaline, 1 microM, induced a sustained contractile response in rat isolated aorta in the presence and in the absence of extracellular Ca2+. After depleting the noradrenaline-sensitive intracellular Ca2+ stores, an increase in the basal tone of the aorta was observed during the incubation period in the presence of Ca2+ and in the absence of the agonist. We have tested the possible pathways through which Ca2+ enters the cell to refill the previously depleted Ca2+ pools, a process that is accompanied by an increase in tension. The magnitude of this increase does not depend on the presence of Mg2+ in the extracellular medium nor on the temperature, suggesting that it is mediated by an event that does not depend on intracellular energy or Ca2+, Mg(2+)-ATPase. It is inhibited in a concentration-dependent manner by an unspecific relaxing compound, caffeine, and an organic Ca2+ entry blocker, verapamil, but not by an inorganic Ca2+ entry blocker, lanthanum. Caffeine (10 mM) and verapamil (10(-5) M) completely inhibited the increase in the resting tone, but only verapamil abolished the refilling of the noradrenaline-sensitive Ca2+ pools, indicating that the extracellular Ca2+ enters the cell through voltage-operated Ca2+ channels. Caffeine inhibited the increase in the resting tone without blocking the refilling process of the stores at 37 degrees C, but at 25 degrees C a partial inhibition of the repletion of internal Ca2+ pools was observed. These results confirm previous work that showed a temperature-dependent activity of caffeine.
在有和没有细胞外Ca2+的情况下,1微摩尔去甲肾上腺素均可在大鼠离体主动脉中诱导持续的收缩反应。在耗尽对去甲肾上腺素敏感的细胞内Ca2+储存后,在有Ca2+且无激动剂的孵育期间,观察到主动脉基础张力增加。我们测试了Ca2+进入细胞以重新填充先前耗尽的Ca2+池的可能途径,这一过程伴随着张力增加。这种增加的幅度不依赖于细胞外介质中Mg2+的存在,也不依赖于温度,这表明它是由一个不依赖于细胞内能量或Ca2+、Mg(2+)-ATP酶的事件介导的。它被一种非特异性舒张化合物咖啡因和一种有机Ca2+进入阻滞剂维拉帕米以浓度依赖性方式抑制,但不被无机Ca2+进入阻滞剂镧抑制。咖啡因(10毫摩尔)和维拉帕米(10(-5)摩尔)完全抑制静息张力的增加,但只有维拉帕米消除了对去甲肾上腺素敏感的Ca2+池的重新填充,表明细胞外Ca2+通过电压门控Ca2+通道进入细胞。咖啡因在37摄氏度时抑制静息张力的增加而不阻断储存的重新填充过程,但在25摄氏度时观察到对内部Ca2+池补充的部分抑制。这些结果证实了先前显示咖啡因具有温度依赖性活性的工作。