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Experimental and modeling studies of the contribution of NMDA receptor-channels to the expression of long-term potentiation

机译:NMDA受体通道对长期增强表达的贡献的实验和模型研究

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We Investigated the contribution of NMDA receptor-channels (NMDARs) to the expression of long-term potentiation (LTP) using electrophysiological and modeling methods. Intracellular recordings were obtained from hippocampal dentate gyrus (DG) granule cells. Perforant path afferents were stimulated with short bursts of pulses at 40 Hz, instead of the traditional protocol of a single stimulus at less than 0.1 Hz. The synaptic summation provided by the "burst" protocol enabled us to measure the NMDAR-mediated component of synaptic responses in the presence of physiological concentrations of Mg/sup 2+/. We tested the hypothesis that NMDARs undergo LTP by comparing the NMDA/AMPA ratio of synaptic responses of control and LTP slices. An increase in the ratio was observed in the LTP group strongly suggesting potentiation of the NMDARs. In order to infer changes in synaptic conductances based on EPSPs recorded at the soma, we constructed a compartmental model of a granule cell. The effect of changes in AMPAR synaptic conductances, and of changes in the distribution of activated synapses on the NMDA/AMPA ratio was studied with computer simulations. Results confirmed that NMDARs are potentiated following LTP induction, and contribute significantly to the expression of LTP.
机译:我们使用电生理学和建模方法研究了NMDA受体通道(NMDARs)对长期增强(LTP)表达的贡献。从海马齿状回(DG)颗粒细胞获得细胞内记录。用40 Hz的短脉冲脉冲刺激穿孔路径传入,而不是传统的低于0.1 Hz的单一刺激方案。 “爆发”协议提供的突触总和使我们能够在生理浓度为Mg / sup 2 + /的情况下测量NMDAR介导的突触反应成分。我们通过比较对照和LTP切片的突触响应的NMDA / AMPA比值来检验NMDAR经历LTP的假设。在LTP组中观察到比率增加,强烈暗示NMDAR增强。为了根据在体细胞处记录的EPSP推断突触电导的变化,我们构建了颗粒细胞的区室模型。用计算机模拟研究了AMPAR突触电导的变化和活化的突触分布的变化对NMDA / AMPA比的影响。结果证实,NMDAR在LTP诱导后被增强,并且对LTP的表达有显着贡献。

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