Trautwein W, Taniguchi J, Noma A
Pflugers Arch. 1982 Feb;392(4):307-14. doi: 10.1007/BF00581624.
Ventricular and atrioventricular nodal cells from guinea pig and rabbit hearts were isolated by perfusing the heart with collagenase (Langendorff perfusion). In these cells the cyclic nucleotides cAMP and cGMP or Ca and EGTA were injected through a microelectrode by pressure (0.5-3 kg/cm2). The effect of injection on both the action potential and the hyperpolarization induced by acetylcholine was studied. The following results were obtained. 1. cAMP prolonged the ventricular action potential and shifted the plateau to more positive potentials. The configuration of the A-V nodal action potential was not detectably changed by cAMP injection, but the spontaneous rate was increased. 2. cGMP first shortened the ventricular action potential. In most experiments this effect was followed by long lasting prolongation of the action potential. 3. Both extracellular and intracellular application of dibutyryl cGMP shortened the ventricular action potential but did not produce a subsequent prolongation. However, prolongation was observed on injection of GMP, the direct metabolite. 4. Injection of cGMP in nodal cells did not hyperpolarize the membrane nor slow the spontaneous rate; rather, an increase in rate was observed. 5. The acetylcholine-induced hyperpolarization was not altered in amplitude or time course by the injection of cAMP, cGMP, Ca or EGTA. 6. The results support the hypothesis that cGMP might be involved in the control of voltage-controlled ionic channels but suggest that it does not play a role as a mediator of the classical muscarinic action i.e. the activation of a specific potassium channel by acetylcholine.
通过用胶原酶灌注心脏(Langendorff灌注法),从豚鼠和兔的心脏中分离出心室和房室结细胞。在这些细胞中,通过微电极以压力(0.5 - 3 kg/cm²)注入环核苷酸cAMP和cGMP或Ca和EGTA。研究了注射对动作电位以及乙酰胆碱诱导的超极化的影响。得到了以下结果。1. cAMP延长了心室动作电位,并使平台期向更正电位移动。注入cAMP后,房室结动作电位的形态没有明显变化,但自发频率增加。2. cGMP首先缩短了心室动作电位。在大多数实验中,这种作用之后是动作电位的持久延长。3. 细胞外和细胞内应用二丁酰cGMP均缩短了心室动作电位,但没有产生随后的延长。然而,注入直接代谢产物GMP时观察到了延长。4. 在结细胞中注入cGMP不会使膜超极化,也不会减慢自发频率;相反,观察到频率增加。5. 注入cAMP、cGMP、Ca或EGTA不会改变乙酰胆碱诱导的超极化的幅度或时间进程。6. 这些结果支持这样的假设,即cGMP可能参与电压控制离子通道的调控,但表明它不作为经典毒蕈碱作用的介质起作用;即乙酰胆碱激活特定钾通道。