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首页> 外文期刊>Frontiers in Cellular Neuroscience >Paired Burst Stimulation Causes GABAA Receptor-Dependent Spike Firing Facilitation in CA1 of Rat Hippocampal Slices
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Paired Burst Stimulation Causes GABAA Receptor-Dependent Spike Firing Facilitation in CA1 of Rat Hippocampal Slices

机译:配对的突发刺激在大鼠海马切片CA1中导致GABAA受体依赖性突波激发促成。

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摘要

The theta oscillation (4–8 Hz) is a pivotal form of oscillatory activity in the hippocampus that is intermittently concurrent with gamma (25–100 Hz) burst events. In in vitro preparation, a stimulation protocol that mimics the theta oscillation, theta burst stimulation (TBS), is used to induce long-term potentiation. Thus, TBS is thought to have a distinct role in the neural network of the hippocampal slice preparation. However, the specific mechanisms that make TBS induce such neural circuit modifications are still unknown. Using electrophysiology and voltage-sensitive dye imaging (VSDI), we have found that TBS induces augmentation of spike firing. The augmentation was apparent in the first couple of brief burst stimulation (100 Hz four pulses) on a TBS-train in a presence of NMDA receptor blocker (APV 50 μM). In this study, we focused on the characterizes of the NMDA independent augmentation caused by a pair of the brief burst stimulation (the first pair of the TBS; paired burst stimulation-PBS). We found that PBS enhanced membrane potential responses on VSDI signal and intracellular recordings while it was absent in the current recording under whole-cell clamp condition. The enhancement of the response accompanied the augmentation of excitatory postsynaptic potential (EPSP) to spike firing (E-S) coupling. The paired burst facilitation (PBF) reached a plateau when the number of the first burst stimulation (priming burst) exceeds three. The interval between the bursts of 150 ms resulted in the maximum PBF. Gabazine (a GABAA receptor antagonist) abolished PBF. The threshold for spike generation of the postsynaptic cells measured with a current injection to cells was not lowered by the priming burst of PBS. These results indicate that PBS activates the GABAergic system to cause short-term E-S augmentation without raising postsynaptic excitability. We propose that a GABAergic system of area CA1 of the hippocampus produce the short-term E-S plasticity that could cause exaggerated spike-firing upon a theta-gamma activity distinctively, thus making the neural circuit of the CA1 act as a specific amplifier of the oscillation signal.
机译:θ振荡(4–8 Hz)是海马振荡活动的关键形式,与伽马(25–100 Hz)爆发事件间歇地同时发生。在体外制备中,模拟theta振荡的刺激方案,theta爆发刺激(TBS),用于诱导长期增强。因此,TBS被认为在海马切片制备的神经网络中具有独特的作用。但是,尚不清楚使TBS引起这种神经回路改变的具体机制。使用电生理学和电压敏感染料成像(VSDI),我们已经发现TBS诱导尖峰发射的增加。在存在NMDA受体阻滞剂(APV 50μM)的情况下,在TBS列车上的前几次短暂的突发刺激(100 Hz,四个脉冲)中,这种增加是明显的。在这项研究中,我们专注于由一对短暂的突发刺激(第一对TBS;成对的突发刺激PBS)引起的NMDA独立增强的特征。我们发现,PBS增强了VSDI信号和细胞内记录的膜电位响应,而在全细胞钳位条件下的当前记录中却没有。响应的增强伴随着兴奋性突触后电位(EPSP)与棘突发射(E-S)耦合的增强。当第一次爆发刺激(启动爆发)的数量超过三个时,成对爆发促进作用(PBF)达到了平稳状态。 150 ms突发之间的间隔导致最大PBF。加巴嗪(一种GABAA受体拮抗剂)废除了PBF。 PBS的初次爆发并没有降低通过当前注入细胞所测得的突触后细胞的峰值产生的阈值。这些结果表明PBS激活了GABA能系统以引起短期的E-S增加而不增加突触后的兴奋性。我们建议,海马CA1区的GABA能系统产生短期ES可塑性,这可能会导致theta-γ活动产生明显的过度的尖峰发射,从而使CA1的神经回路充当振荡的特定放大器信号。

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