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啮齿动物视交叉上核神经元的细胞内电生理研究:抑制性突触机制

Intracellular electrophysiological study of suprachiasmatic nucleus neurons in rodents: inhibitory synaptic mechanisms.

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. 1992 Dec;458:247-60. doi: 10.1113/jphysiol.1992.sp019416.

Abstract
  1. The mechanisms responsible for evoked and spontaneous fast inhibitory postsynaptic potentials (IPSPs) in the hypothalamic suprachiasmatic nucleus (SCN) were studied with intracellular recording. SCN neurons, primarily ones identified as receiving excitatory optic nerve input, were recorded in rat and guinea-pig brain slice preparations maintained in vitro. 2. In normal medium, electrical stimulation of a site dorsocaudal to the SCN evoked IPSPs from thirty-three of thirty-six neurons. The evoked IPSPs rose to the peak quickly (8.7 +/- 0.9 ms, mean +/- S.E.M.; n = 15 neurons) and decayed gradually with a time constant of 25 +/- 3 ms. Spontaneous IPSPs were present in each of the thirty-six neurons. These IPSPs had a rise-to-peak time of 7.2 +/- 1.0 ms (n = 6 neurons) and a decay time constant of 14 +/- 5 ms. 3. When recorded with potassium acetate-filled electrodes, the evoked and spontaneous IPSPs were hyperpolarizing at resting membrane potential (less negative than -70 mV) and had a reversal potential of around -75 mV. On the other hand, when recorded with potassium chloride-filled electrodes, the IPSPs were depolarizing at membrane potentials more negative than -50 mV and had an estimated reversal potential less negative than spike threshold. 4. Bath application of bicuculline (10-50 microM), a gamma-aminobutyric acidA (GABAA) receptor antagonist, resulted in a complete blockade of both the evoked (n = 16) and spontaneous (n = 13) IPSPs. The bicuculline effects were reversible, and were not associated with any significant and consistent change in baseline membrane potential or input resistance. The neurons impaled in bicuculline-containing medium (n = 11) exhibited neither spontaneous IPSPs nor evoked IPSPs. 5. In some neurons bicuculline-resistant hyperpolarizing potentials, which were similar to the fast IPSPs in time course, occurred spontaneously or were evoked by electrical stimulation of the optic nerve or the dorsocaudal site. A fast prepotential always preceded the hyperpolarizing potential, and hyperpolarizing currents blocked these events, indicating that they were not synaptic in origin. No slow IPSPs were detected. 6. The results suggest that fast IPSPs from non-retinal afferents exist in virtually all SCN neurons receiving excitatory retinal input, and that GABAA receptors associated with Cl- channels mediate the fast IPSPs.
摘要
  1. 采用细胞内记录法研究了下丘脑视交叉上核(SCN)中诱发的和自发的快速抑制性突触后电位(IPSPs)的机制。在体外维持的大鼠和豚鼠脑片标本中记录SCN神经元,主要是那些被确定接受兴奋性视神经输入的神经元。2. 在正常培养基中,对SCN背尾侧部位进行电刺激,可从36个神经元中的33个诱发IPSPs。诱发的IPSPs迅速上升至峰值(8.7±0.9毫秒,平均值±标准误;n = 15个神经元),并以25±3毫秒的时间常数逐渐衰减。36个神经元中的每一个都存在自发IPSPs。这些IPSPs的上升至峰值时间为7.2±1.0毫秒(n = 6个神经元),衰减时间常数为14±5毫秒。3. 当用充满醋酸钾的电极记录时,诱发的和自发的IPSPs在静息膜电位(比 -70 mV更正)时呈超极化,反转电位约为 -75 mV。另一方面,当用充满氯化钾的电极记录时,IPSPs在膜电位比 -50 mV更负时呈去极化,估计的反转电位比锋电位阈值更正。4. 浴槽中应用荷包牡丹碱(10 - 50 μM),一种γ-氨基丁酸A(GABAA)受体拮抗剂,导致诱发的(n = 16)和自发的(n = 13)IPSPs完全被阻断。荷包牡丹碱的作用是可逆的,并且与基线膜电位或输入电阻的任何显著且一致的变化无关。刺入含荷包牡丹碱培养基中的神经元(n = 11)既未表现出自发IPSPs也未表现出诱发IPSPs。5. 在一些神经元中,出现了对荷包牡丹碱耐药的超极化电位,其时间进程与快速IPSPs相似,是自发出现的,或者是由对视神经或背尾侧部位的电刺激诱发的。一个快速的预电位总是先于超极化电位出现,并且超极化电流阻断了这些事件,表明它们不是突触起源的。未检测到慢IPSPs。6. 结果表明,几乎所有接受兴奋性视网膜输入的SCN神经元中都存在来自非视网膜传入神经的快速IPSPs,并且与Cl-通道相关的GABAA受体介导了快速IPSPs。

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