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在早期胚胎鸡脑干切片中对迷走神经刺激诱发的突触后电位进行光学检测。

Optical detection of postsynaptic potentials evoked by vagal stimulation in the early embryonic chick brain stem slice.

作者信息

Komuro H, Sakai T, Momose-Sato Y, Hirota A, Kamino K

机构信息

Department of Physiology, Tokyo Medical and Dental University School of Medicine, Japan.

出版信息

J Physiol. 1991 Oct;442:631-48. doi: 10.1113/jphysiol.1991.sp018812.

Abstract
  1. A voltage-sensitive dye and multiple-site optical recording of changes in membrane potential were used to reveal the postsynaptic potentials in the early embryonic chick brain stem slice preparation. 2. Vagus-brain stem preparations were isolated from 8-day-old chick embryos and then transverse slice preparations were prepared with both the right and left vagus nerve fibres intact. The slice preparations were stained with a voltage-sensitive merocyanine-rhodanine dye (NK2761). 3. Voltage-related optical (absorbance) changes evoked by vagus nerve stimulation with positive square current pulses using a suction electrode were recorded simultaneously from 127 contiguous loci in the preparation, using a 12 x 12-element photodiode array. Optical responses appeared in a limited area near the dorsal surface of the stimulated side. 4. When relatively large stimulating currents were applied, optical changes having two (or sometimes three) components were recorded. One component was the fast spike-like signal and another the delayed, long-lasting slow signal. 5. The size of the slow signal was decreased by continuous stimulation, reduced by low external calcium ion concentrations and eliminated in the presence of manganese or cadmium ions. 6. The slow signals were eliminated in the presence of kynurenic acid, and they were reduced by 2-APV (DL-2-amino-5-phosphono-valeric acid) and by CNQX (6-cyano-7-nitroquinoxaline-2,3-dione). We conclude that the slow signals correspond to excitatory postsynaptic potentials which are glutamate mediated.
摘要
  1. 利用电压敏感染料和膜电位变化的多位点光学记录技术,揭示早期胚胎鸡脑干切片制备中的突触后电位。2. 从8日龄鸡胚中分离出迷走神经 - 脑干标本,然后制备横切片标本,左右迷走神经纤维均保持完整。切片标本用电压敏感染料部花青罗丹宁(NK2761)染色。3. 使用吸力电极施加正方形电流脉冲刺激迷走神经,同时利用12×12元件光电二极管阵列,从标本中的127个相邻位点记录与电压相关的光学(吸光度)变化。光学反应出现在受刺激侧背表面附近的有限区域。4. 当施加相对较大的刺激电流时,记录到具有两个(有时三个)成分的光学变化。一个成分是快速的尖峰样信号,另一个是延迟的、持久的慢信号。5. 持续刺激会使慢信号的大小减小,低细胞外钙离子浓度会使其降低,而在存在锰或镉离子的情况下会消除。6. 在存在犬尿氨酸的情况下慢信号被消除,并且它们会被2 - APV(DL - 2 - 氨基 - 5 - 膦酰基戊酸)和CNQX(6 - 氰基 - 7 - 硝基喹喔啉 - 2,3 - 二酮)降低。我们得出结论,慢信号对应于由谷氨酸介导的兴奋性突触后电位。

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