Connor E A, Parsons R L
Br J Pharmacol. 1984 Sep;83(1):31-42. doi: 10.1111/j.1476-5381.1984.tb10116.x.
Barium-induced alterations in fast excitatory postsynaptic currents (e.p.s.cs) have been studied in voltage-clamped bullfrog sympathetic ganglion B cells. In the presence of 2-8 mM barium, e.p.s.c. decay was prolonged and in many cells the e.p.s.c. decay phase deviated from a single exponential function. The decay phase in these cases was more accurately described as the sum of two exponential functions. The frequency of occurrence of a complex decay increased both with increasing barium concentration and with hyperpolarization. Miniature e.p.s.c. decay also was prolonged in barium-treated cells. E.p.s.c. amplitude was not markedly affected by barium (2-8 mM) in cells voltage-clamped to -50 mV whereas at -90 mV there was a progressive increase in peak size with increasing barium concentration. In control cells the e.p.s.c.-voltage relationship was linear between -20 and -100 mV; however, this relationship became progressively non-linear with membrane hyperpolarization in barium-treated cells. The e.p.s.c. reversal potential was shifted to a more negative value in the presence of barium. There was a voltage-dependent increase in charge movement during the e.p.s.c. in barium-treated cells which was not present in control cells. We conclude that the voltage-dependent alteration in e.p.s.c. decay time course, peak amplitude and charge movement in barium-treated cells is due to a direct postsynaptic action of barium on the kinetics of receptor-channel gating in postganglionic sympathetic neurones.
在电压钳制的牛蛙交感神经节B细胞中,研究了钡对快速兴奋性突触后电流(e.p.s.cs)的影响。在存在2 - 8 mM钡的情况下,e.p.s.c.的衰减延长,并且在许多细胞中,e.p.s.c.的衰减阶段偏离单一指数函数。在这些情况下,衰减阶段更准确地描述为两个指数函数的总和。随着钡浓度的增加和超极化,复杂衰减的发生率增加。在经钡处理的细胞中,微小e.p.s.c.的衰减也延长。在钳制电压为 - 50 mV的细胞中,钡(2 - 8 mM)对e.p.s.c.幅度没有明显影响,而在 - 90 mV时,随着钡浓度的增加,峰值大小逐渐增加。在对照细胞中,e.p.s.c. - 电压关系在 - 20至 - 100 mV之间呈线性;然而,在经钡处理的细胞中,随着膜超极化,这种关系逐渐变为非线性。在存在钡的情况下,e.p.s.c.的反转电位向更负值移动。在经钡处理的细胞中,e.p.s.c.期间电荷移动存在电压依赖性增加,而对照细胞中不存在这种情况。我们得出结论,经钡处理的细胞中e.p.s.c.衰减时间进程、峰值幅度和电荷移动的电压依赖性改变是由于钡对节后交感神经元中受体 - 通道门控动力学的直接突触后作用。