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大鼠海马切片中CA3回路突触传递的长期变化及随后的自发节律性活动。

Long-term change in synaptic transmission in CA3 circuits followed by spontaneous rhythmic activity in rat hippocampal slices.

作者信息

Nakashima K, Hayashi H, Shimizu O, Ishizuka S

机构信息

Department of Computer Science and Electronics, Faculty of Computer Science and Systems Engineering, Kyushu Institute of Technology, 820-8502, Iizuka, Japan.

出版信息

Neurosci Res. 2001 Aug;40(4):325-36. doi: 10.1016/s0168-0102(01)00244-9.

Abstract

The relevance of long-term potentiation (LTP) at excitatory synapses in CA3 circuits to generation of spontaneous epileptiform bursts in CA3 was investigated using rat hippocampal slices. CA3 pyramidal cells were antidromically stimulated through Schaffer collaterals. Evoked field potentials were extracellularly recorded from the stratum pyramidale and the stratum radiatum in CA3. Therefore, field potentials reflecting recurrent excitatory post-synaptic potentials (EPSPs) and inhibitory post-synaptic potentials (IPSPs) were positive at the stratum pyramidale and negative at the stratum radiatum. First, we tested how the amplitude of the evoked field potentials depends on a gamma-aminobutyric acid (GABA(A)) antagonist. Both of the positive and negative field potential peaks reduced in the medium containing penicillin (2 mM) or bicuculline (20 microM). This suggests that unmasked EPSPs due to suppression of IPSPs do not result in an increase in the evoked potentials. Second, CA3 pyramidal cells were antidromically stimulated by tetanic stimulation of Schaffer collaterals in order to induce LTP at synapses in CA3 circuits. Both of the positive and negative field potentials increased, suggesting that recurrent EPSPs were enhanced by tetanic stimulation. Induction of LTP at recurrent excitatory synapses was followed by spontaneous epileptiform bursts which persisted throughout experiments (approximately 1.5 h), while LTP of afferent synaptic potential evoked by hilar test stimulation was not induced. These results suggest that LTP at the afferent synapses is not necessary to spontaneous epileptiform bursts in CA3, but LTP at excitatory synapses between CA3 pyramidal cells contribute to spontaneous epileptiform bursts.

摘要

利用大鼠海马切片,研究了CA3回路中兴奋性突触处的长时程增强(LTP)与CA3区自发性癫痫样爆发产生之间的相关性。通过Schaffer侧支对CA3锥体细胞进行逆向刺激。在CA3区的锥体层和辐射层细胞外记录诱发场电位。因此,反映反复兴奋性突触后电位(EPSP)和抑制性突触后电位(IPSP)的场电位在锥体层为正,在辐射层为负。首先,我们测试了诱发场电位的幅度如何依赖于γ-氨基丁酸(GABA(A))拮抗剂。在含有青霉素(2 mM)或荷包牡丹碱(20 μM)的培养基中,正向和负向场电位峰值均降低。这表明,由于IPSP的抑制而暴露的EPSP不会导致诱发电位增加。其次,通过对Schaffer侧支进行强直刺激对CA3锥体细胞进行逆向刺激,以诱导CA3回路突触处的LTP。正向和负向场电位均增加,表明强直刺激增强了反复EPSP。在反复兴奋性突触处诱导LTP后,出现自发性癫痫样爆发,且在整个实验过程中持续存在(约1.5小时),而海马区测试刺激诱发的传入突触电位的LTP未被诱导。这些结果表明,传入突触处的LTP对于CA3区的自发性癫痫样爆发不是必需的,但CA3锥体细胞之间兴奋性突触处的LTP有助于自发性癫痫样爆发。

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