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

机译:啮齿动物上裂眼上核神经元的细胞内电生理研究:兴奋性突触机制。

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摘要

1. To study the synaptic mechanisms of excitatory transmission in the suprachiasmatic nucleus (SCN), we assessed the effects of excitatory amino acid receptor antagonists on excitatory postsynaptic potentials (EPSPs) recorded from SCN neurons in horizontal and parasagittal hypothalamic slice preparations from rats and guinea-pigs. The EPSPs were evoked by electrical stimulation of either optic nerve or a site near the SCN. 2. When evoked at membrane potentials between -60 and -100 mV, the EPSPs from optic nerve stimulation were conventional in shape; they rose to the peak quickly (6.2 +/- 0.5 ms, mean +/- S.E.M.; n = 45) and decayed gradually over 50-250 ms. When evoked at membrane potentials between -20 and -55 mV after blockade of outward K+ currents and fast Na+ spikes by intracellular injection of Cs+ and QX-314 (n = 5 neurons), a slow depolarizing potential emerged near the fast peak of the EPSP. This slow potential, unlike the fast peak, was not linearly related to membrane potential. 3. An antagonist for kainate- and quisqualate-type excitatory amino acid receptors, 6,7-dinitroquinoxaline-2,3-dione (DNQX 1-10 microM), depressed in a concentration-dependent and reversible manner the EPSPs evoked by optic nerve stimulation at membrane potentials between -60 and -100 mV (n = 9). The effects of DNQX were not associated with any significant changes in the baseline input resistance or membrane potential of the postsynaptic neurons. The selective N-methyl-D-aspartate (NMDA) receptor antagonist, DL-2-amino-5-phosphonopentanoic acid (AP5, 50-100 microM), did not affect significantly and consistently the EPSPs evoked at these membrane potentials (n = 7). On the other hand, AP5 (50 microM) blocked or depressed the slow depolarizing component of the EPSPs evoked at membrane potentials between -20 and -55 mV (n = 4). No significant changes in baseline input resistance or membrane potential accompanied the effects of AP5. 4. Stimulation of a site lateral or dorsocaudal to the SCN evoked EPSPs distinct from those evoked by optic nerve stimulation. Again, DNQX (0.3-10 microM) depressed the EPSPs evoked at membrane potentials between -60 and -100 mV (n = 4) whereas AP5 (50 microM) had no effect (n = 5). When evoked at less negative membrane potentials (i.e. -20 to -55 mV) after intracellular injection of Cs+ and QX-314, the EPSPs had a slow depolarizing potential, similar to the EPSPs from optic nerve stimulation.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.为了研究兴奋性递质在上视神经核(SCN)中的突触机制,我们评估了兴奋性氨基酸受体拮抗剂对大鼠和豚鼠水平和矢状下丘脑片制剂中SCN神经元记录的兴奋性突触后电位(EPSP)的影响。 -猪通过电刺激视神经或SCN附近的部位来诱发EPSP。 2.在-60至-100 mV的膜电位下诱发时,来自视神经刺激的EPSP具有常规形状;它们迅速上升到峰值(6.2 +/- 0.5毫秒,平均+/- S.E.M.; n = 45),并在50-250毫秒内逐渐衰减。当通过细胞内注射Cs +和QX-314(n = 5个神经元)阻断向外的K +电流和快速的Na +尖峰后,在-20至-55 mV的膜电位下诱发时,在EPSP的快速峰附近出现了缓慢的去极化电位。 。与快速峰不同,这种缓慢的电位与膜电位没有线性关系。 3.一种对海藻酸盐和半胱氨酸型兴奋性氨基酸受体,6,7-二硝基喹喔啉-2,3-二酮(DNQX 1-10 microM)的拮抗剂,其以浓度依赖性和可逆的方式被视神经诱发的EPSP抑制在-60至-100 mV(n = 9)的膜电位下进行刺激。 DNQX的作用与突触后神经元的基线输入阻力或膜电位的任何重大变化均无关。选择性N-甲基-D-天冬氨酸(NMDA)受体拮抗剂DL-2-氨基-5-膦基戊酸(AP5,50-100 microM)不会显着影响这些膜电位下的EPSP(n = 7)。另一方面,AP5(50 microM)在-20至-55 mV(n = 4)的膜电位下阻断或抑制了EPSP的缓慢去极化成分。伴随AP5的作用,基线输入电阻或膜电位无明显变化。 4.对SCN诱发的EPSP的外侧或后尾部位的刺激不同于视神经刺激诱发的EPSP。 DNQX(0.3-10 microM)再次压低了在-60和-100 mV之间的膜电位(n = 4)引起的EPSP,而AP5(50 microM)没有影响(n = 5)。当在细胞内注射Cs +和QX-314后以较低的负膜电位(即-20至-55 mV)引起时,EPSP的去极化电位较慢,与视神经刺激的EPSP相似(抽象截断为400字)。

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  • 作者

    Kim, Y I; Dudek, F E;

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  • 年度 1991
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  • 正文语种 en
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