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齿状回颗粒细胞的膜特性:尖锐微电极记录与全细胞记录的比较

Membrane properties of dentate gyrus granule cells: comparison of sharp microelectrode and whole-cell recordings.

作者信息

Staley K J, Otis T S, Mody I

机构信息

Department of Neurology and Neurological Sciences M016, Stanford University School of Medicine, California 94305.

出版信息

J Neurophysiol. 1992 May;67(5):1346-58. doi: 10.1152/jn.1992.67.5.1346.

Abstract
  1. Whole-cell and sharp electrode recordings from adult rat dentate gyrus GCs were performed in the 400-microns-thick hippocampal slice preparation maintained at 34 +/- 1 degrees C. Intrinsic membrane properties of granule cells (GCs) were evaluated with the use of a switching current-clamp amplifier. 2. With the whole-cell technique, the average resting membrane potential (RMP) of GCs was -85 mV when a potassium gluconate electrode solution was used versus -74 mV measured with potassium acetate-filled sharp microelectrodes. The membrane voltage response to injected current was linear over two membrane potential ranges, greater than 10 mV hyperpolarized from RMP and between 10 mV more negative than RMP and -62 mV. The average input resistances (RN) calculated over these ranges were 107 and 228 M omega in the whole-cell recordings versus 37 and 54 M omega in the sharp electrode recordings. There was no correlation between RMP and RN with either recording technique. The membrane time constant (tau m) determined at the RMP was 26.9 ms for whole-cell recordings and 13.9 ms for sharp electrode recordings. 3. There was no evidence of time-dependent changes in RMP, RN, and tau m in whole-cell recordings, although the slow inward rectification seen at hyperpolarized potentials decreased over 30-60 min. Addition of calcium buffers to the whole-cell recording solution did not result in a significant change in the average RMP, the average RN, or the average tau m. 4. Action potential threshold was comparable in whole-cell (-49 mV) and sharp electrode (-52 mV) recordings, but action potential amplitude was larger in whole-cell (126 mV) than in sharp electrode (106 mV) recordings. Spike frequency adaptation was present in the whole-cell recordings and could be abolished by addition of calcium buffers to the electrode solution. 5. We estimated rho, the ratio of dendritic to somatic conductance, to be 5.1 for the whole-cell records and 2.1 for sharp electrode recordings. The electrotonic length of the equivalent cylinder representing the cell processes was estimated to be 0.49 from the whole-cell data and 0.79 from the sharp electrode recordings. This implies that at rest there is only a 10% decrement in steady-state membrane voltage along the length of the dendrite due to shunting across the membrane resistance; small synaptic events occurring in the distal dendritic tree will therefore have a more substantial influence on the soma than previous analyses suggested.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在温度保持于34±1℃的400微米厚海马脑片标本上,对成年大鼠齿状回颗粒细胞(GCs)进行全细胞和尖锐电极记录。使用切换电流钳放大器评估颗粒细胞的内在膜特性。2. 采用全细胞技术时,当使用葡萄糖酸钾电极液时,GCs的平均静息膜电位(RMP)为 -85 mV,而使用醋酸钾填充的尖锐微电极测量时为 -74 mV。膜电压对注入电流的响应在两个膜电位范围内呈线性,比RMP超极化大于10 mV以及比RMP负10 mV至 -62 mV之间。在这些范围内全细胞记录计算得到的平均输入电阻(RN)为107和228 MΩ,而尖锐电极记录中为37和54 MΩ。两种记录技术下RMP和RN之间均无相关性。在RMP处测定的膜时间常数(τm)全细胞记录为26.9 ms,尖锐电极记录为13.9 ms。3. 全细胞记录中未发现RMP、RN和τm随时间变化的证据,尽管在超极化电位下观察到的缓慢内向整流在30 - 60分钟内有所降低。向全细胞记录溶液中添加钙缓冲剂并未导致平均RMP、平均RN或平均τm发生显著变化。4. 全细胞记录(-49 mV)和尖锐电极记录(-52 mV)中的动作电位阈值相当,但全细胞记录中的动作电位幅度(126 mV)大于尖锐电极记录中的(106 mV)。全细胞记录中存在动作电位频率适应,向电极溶液中添加钙缓冲剂可消除这种适应。5. 我们估计树突与胞体电导之比ρ,全细胞记录为5.1,尖锐电极记录为2.1。代表细胞突起的等效圆柱体的电紧张长度,根据全细胞数据估计为0.49,根据尖锐电极记录为0.79。这意味着在静息时,由于跨膜电阻的分流,沿树突长度的稳态膜电压仅下降10%;因此,发生在远端树突树中的小突触事件对胞体的影响将比先前分析所表明的更大。(摘要截选至400字)

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