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海马体长期增强过程中突触抑制的电压钳分析。

Voltage-clamp analysis of synaptic inhibition during long-term potentiation in hippocampus.

作者信息

Griffith W H, Brown T H, Johnston D

出版信息

J Neurophysiol. 1986 Apr;55(4):767-75. doi: 10.1152/jn.1986.55.4.767.

Abstract

The excitatory synaptic response evoked by stimulating the mossy fiber synaptic input to hippocampal CA3 neurons in normally accompanied by concomitant feedforward or recurrent inhibition. The purpose of the present study was to determine whether a decrease in the inhibitory conductance of this mixed synaptic response contributes to the enhanced synaptic efficacy observed during long-term potentiation (LTP). Intracellular recordings were made from CA3 neurons of rat hippocampal brain slices. Current- and voltage-clamp measurements of the mixed excitatory/inhibitory evoked synaptic response were made, using a single-electrode clamp system. Outward and inward rectification were reduced, respectively, by intracellular injection and bath application of Cs+. Biophysical analysis of the evoked synaptic conductance sequence was performed before and 15 min to 1 h after inducing LTP. As expected, measurements made in the early part of the conductance sequence, which represents primarily the monosynaptic excitatory input, demonstrated an increase in the slope conductance during LTP. Measurements made later in the conductance sequence, when the excitatory component appeared to have declined to a negligible value, revealed no decrease in the slope conductance of the inhibitory component of the mixed response. We conclude that a decrease in the conductance associated with the inhibitory component of the mixed synaptic response plays little or no role in the increase in synaptic efficacy observed during LTP of this synaptic system.

摘要

刺激海马CA3神经元的苔藓纤维突触输入所诱发的兴奋性突触反应,在正常情况下伴随着前馈或反馈抑制。本研究的目的是确定这种混合突触反应的抑制性电导降低是否有助于在长时程增强(LTP)过程中观察到的突触效能增强。从大鼠海马脑片的CA3神经元进行细胞内记录。使用单电极钳系统对混合兴奋性/抑制性诱发突触反应进行电流钳和电压钳测量。通过细胞内注射和浴槽施加Cs + 分别降低外向整流和内向整流。在诱导LTP之前以及之后15分钟至1小时,对诱发的突触电导序列进行生物物理分析。正如预期的那样,在电导序列早期进行的测量主要代表单突触兴奋性输入,显示在LTP期间斜率电导增加。在电导序列后期进行测量时,当兴奋性成分似乎已下降到可忽略不计的值时,混合反应抑制成分的斜率电导没有下降。我们得出结论,在该突触系统的LTP过程中观察到的突触效能增加中,与混合突触反应抑制成分相关的电导降低几乎没有作用或不起作用。

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