Kuno M, Yasunami T, Matsuura S
Department of Physiology, Osaka City University Medical School, Japan.
Neurosci Res. 1988 Feb;5(3):240-52. doi: 10.1016/0168-0102(88)90052-1.
Excitatory postsynaptic currents (EPSCs) evoked by the primary afferents (dorsal root; DR) and the descending lateral column (LC) fibers were studied in frog spinal motoneurons under voltage clamp with two separate electrodes. The average rise time and half-width of the EPSCs were shorter for LC-EPSCs than for DR-EPSCs, though the values of the parameters for LC- and DR-EPSCs were distributed within a similar range. The relation between the amplitudes of the EPSP and EPSC was almost linear. The amount of current required to generate a 1 mV increment in the EPSP was 5.0 +/- 2.3 nA for the DR-EPSC and 3.8 +/- 1.2 nA for the LC-EPSC. The decay time was shortened by hyperpolarization and prolonged by depolarization in DR- and LC-EPSCs and spontaneous EPSCs. The reversal potential ranged from -30 to -5 mV and was almost identical for DR- and LC-EPSCs and spontaneous EPSCs in individual motoneurons. The current-voltage relation was linear from -100 to +50 mV for these EPSCs. Spontaneous EPSCs became more prominent and frequent during a large hyperpolarization or a large depolarization. These results suggest that the ionic mechanisms underlying EPSC are similar for the functionally different excitatory synapses located on motoneurons.
在青蛙脊髓运动神经元中,使用两个独立电极在电压钳制条件下研究了由初级传入纤维(背根;DR)和下行外侧柱(LC)纤维诱发的兴奋性突触后电流(EPSC)。LC-EPSC的EPSC平均上升时间和半高宽比DR-EPSC短,尽管LC-EPSC和DR-EPSC的参数值分布在相似范围内。EPSP和EPSC的幅度之间的关系几乎是线性的。对于DR-EPSC,使EPSP产生1 mV增量所需的电流量为5.0±2.3 nA,对于LC-EPSC为3.8±1.2 nA。在DR-EPSC、LC-EPSC和自发性EPSC中,超极化会缩短衰减时间,去极化会延长衰减时间。反转电位范围为-30至-5 mV,在单个运动神经元中,DR-EPSC、LC-EPSC和自发性EPSC的反转电位几乎相同。这些EPSC的电流-电压关系在-100至+50 mV范围内呈线性。在大幅度超极化或大幅度去极化期间,自发性EPSC变得更加显著和频繁。这些结果表明,位于运动神经元上功能不同的兴奋性突触的EPSC潜在离子机制相似。