Minota S, Dun N J, Karczmar A G
Brain Res. 1981 Jul 6;216(1):224-8. doi: 10.1016/0006-8993(81)91294-4.
Ionic mechanisms underlying substance P-induced depolarization of the inferior mesenteric ganglion cells of the guinea pig were analyzed by means of microelectrode methods. When the membrane potential was manually clamped at the resting level, substance P caused, in about equal number of neurons, increases and decreases of neuronal input resistance. In the majority of the cells tested the amplitude of substance P-induced depolarization was increased when the membrane was hyperpolarized to the level of EK; it was markedly reduced in a Na+-free media. These results suggest that substance P causes depolarization by simultaneously increasing Na+ and decreasing K+ permeability.
采用微电极方法分析了P物质诱导豚鼠肠系膜下神经节细胞去极化的离子机制。当用手动方法将膜电位钳制在静息水平时,P物质在大约相同数量的神经元中引起神经元输入电阻的增加和降低。在大多数被测试的细胞中,当膜超极化到EK水平时,P物质诱导的去极化幅度增加;在无钠介质中,该幅度明显降低。这些结果表明,P物质通过同时增加Na+通透性和降低K+通透性而引起去极化。