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接受视神经输入的大鼠视交叉上核神经元的膜特性

Membrane properties of rat suprachiasmatic nucleus neurons receiving optic nerve input.

作者信息

Kim Y I, Dudek F E

机构信息

Mental Retardation Research Center, UCLA School of Medicine 90024.

出版信息

J Physiol. 1993 May;464:229-43. doi: 10.1113/jphysiol.1993.sp019632.

Abstract
  1. The electrophysiological properties of suprachiasmatic nucleus (SCN) neurons (n = 33) receiving optic nerve input were studied with intracellular recordings in rat hypothalamic slices maintained in vitro. Our major goal was to provide baseline data concerning the intrinsic membrane properties of these neurons and to test the hypothesis that the neurons are homogeneous electrophysiologically. 2. Action potentials were short in duration and followed by a pronounced hyperpolarizing after-potential. Spike amplitude (58.2 +/- 1.1 mV, mean +/- S.E.M.; measured from threshold), spike duration (0.83 +/- 0.03 ms; measured at half amplitude) and hyperpolarizing after-potential amplitude (23.9 +/- 1.0 mV; measured from threshold) appeared unimodally distributed and did not co-vary. 3. Intracellular injection of depolarizing current pulses evoked spike trains, and spike inactivation, spike broadening and frequency accommodation were always present. An after-hyperpolarization followed the spike train in all but one neuron. 4. Membrane time constant ranged from 7.5 to 21.1 ms (11.4 +/- 0.7 ms, n = 27), and its distribution appeared to be unimodal with the peak at approximately 10 ms. Input resistance ranged from 105 to 626 M omega (301 +/- 23 M omega, n = 33); the distribution also appeared unimodal with its peak at approximately 250 M omega. 5. A subpopulation (16 of 33, 48%) of the neurons exhibited slight (6-29%) time-dependent inward rectification in their voltage responses to hyperpolarizing current injection. Of the neurons lacking the time-dependent rectification, some (n = 5) exhibited time-independent inward rectification of 6-20% and others showed no (or < 3%) such rectification. The degree of inward rectification was correlated with neuronal excitability (r = 0.60, P < 0.002; assessed by measuring the steepness of the primary slope of the frequency-current plot) and with the spontaneous firing rate (r = 0.49, P < 0.007). Furthermore, the neurons with > 6% inward rectification (neurons with time-dependent and -independent rectification were combined) were more excitable (362 +/- 43 Hz/nA (n = 15) vs. 221 +/- 37 Hz/nA (n = 9), P < 0.05) and had a higher spontaneous firing rate (11.1 +/- 1.9 Hz (n = 19) vs. 3.9 +/- 1.5 Hz (n = 11), P < 0.02) than the neurons with no or negligible (i.e. < 3%) inward rectification. The two groups, however, were not significantly different in membrane time constant and input resistance. 6. When adequately hyperpolarized, twelve of seventeen (71%) neurons generated small low-threshold spike (LTS) potentials in response to depolarizing current pulses.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 利用细胞内记录技术,在体外培养的大鼠下丘脑切片中,研究了接受视神经输入的视交叉上核(SCN)神经元(n = 33)的电生理特性。我们的主要目标是提供有关这些神经元内在膜特性的基线数据,并检验这些神经元在电生理上是否同质的假设。2. 动作电位持续时间短,随后有明显的超极化后电位。峰电位幅度(58.2±1.1 mV,平均值±标准误;从阈值测量)、峰电位持续时间(0.83±0.03 ms;在半幅度处测量)和超极化后电位幅度(23.9±1.0 mV;从阈值测量)呈单峰分布,且不共变。3. 向细胞内注入去极化电流脉冲诱发峰电位序列,且总是存在峰电位失活、峰电位展宽和频率适应。除一个神经元外,所有神经元的峰电位序列后均有一个超极化后电位。4. 膜时间常数范围为7.5至21.1 ms(11.4±0.7 ms,n = 27),其分布似乎呈单峰,峰值约在1 ms处。输入电阻范围为105至626 MΩ(301±23 MΩ,n = 33);分布也呈单峰,峰值约在250 MΩ处。5. 一部分神经元(33个中的16个,48%)在对超极化电流注入的电压反应中表现出轻微(6 - 2%)的时间依赖性内向整流。在缺乏时间依赖性整流的神经元中,一些(n = 5)表现出6 - 20%的非时间依赖性内向整流,而另一些则没有(或<3%)这种整流。内向整流程度与神经元兴奋性相关(r = 0.60,P < 0.002;通过测量频率 - 电流图初级斜率的陡度评估),也与自发放电率相关(r = 0.49,P < 0.007)。此外,内向整流>6%的神经元(将具有时间依赖性和非时间依赖性整流的神经元合并)比没有或可忽略不计(即<3%)内向整流的神经元更易兴奋(362±43 Hz/nA(n = 15)对221±37 Hz/nA(n = 9),P < 0.05),且自发放电率更高(11.1±1.9 Hz(n = 19)对3.9±1.5 Hz(n = 11),P < 0.02)。然而,两组在膜时间常数和输入电阻方面无显著差异。6. 当充分超极化时,17个神经元中的12个(71%)对去极化电流脉冲产生小的低阈值尖峰(LTS)电位。(摘要截断于400字)

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