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Unitary synaptic currents between lacunosum-moleculare interneurones and pyramidal cells in rat hippocampus

机译:大鼠海马空洞分子间神经元与锥体细胞之间的统一突触电流

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摘要

class="enumerated" style="list-style-type:decimal">Unitary inhibitory postsynaptic currents (uIPSCs) were characterised between 23 synaptically coupled interneurones at the border of stratum radiatum and lacunosum-moleculare (LM) and CA1 pyramidal cells (PYR) using dual whole-cell recordings and morphological identification in rat hippocampal slices.LM interneurones presented a morphology typical of stellate cells, with a fusiform soma as well as dendritic and axonal arborisations in stratum radiatum and lacunosum-moleculare.Single spikes in interneurones triggered uIPSCs in pyramidal cells that were blocked by the GABAA antagonist bicuculline and mediated by a chloride conductance. The latency, rise time, duration and decay time constant of uIPSCs were a function of amplitude in all pairs, suggesting a homogeneity in the population sampled.During paired pulse stimulation, individual LM-PYR connections exhibited facilitation or depression. The paired pulse ratio was inversely related to the amplitude of the first response. The transition from facilitation to depression occurred at 26 % of the maximal amplitude of the first uIPSC. Paired pulse depression was not modified by CGP 55845 and thus was GABAB receptor independent.CGP 55845 failed to modify the amplitude of uIPSCs, suggesting an absence of tonic presynaptic GABAB inhibition at LM-PYR connections.Increasing GABA release by repetitive activation of interneurones failed to induce GABAB IPSCs. With extracellular minimal stimulation, increasing stimulation intensity above threshold, or repetitive activation, evoked GABAB IPSCs, probably as a result of coactivation of several GABAergic fibres.Thus, dendritic inhibition by LM interneurones involves GABAA uIPSCs with kinetics dependent on response amplitude and subject to GABAB-independent paired pulse plasticity.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 通过双重全细胞记录和形态学鉴定,在大鼠海马切片中鉴定出放射抑制层突触后突触电流(uIPSCs)位于放射状层与片状分子(LM)和CA1锥体细胞(PYR)边界的23个突触耦合的中间神经元之间。 li> LM中间神经元呈现出星状细胞的典型形态,梭状体以及放射状的层状和轴突状的树突状轴突。 单个神经元的尖峰触发了锥体细胞中的uIPSC被GABAA拮抗剂双小分子阻断,并由氯化物电导介导。 uIPSCs的潜伏期,上升时间,持续时间和衰减时间常数在所有对中均是振幅的函数,表明所采样的群体具有同质性。 在配对脉冲刺激过程中,单个LM-PYR连接表现出促进作用或萧条。成对的脉冲比率与第一响应的幅度成反比。从简化到抑郁的转变发生在第一个uIPSC最大幅度的26%处。 CGP 55845并未修改配对的脉冲抑制,因此是GABA B受体独立的。 CGP 55845无法修改uIPSC的振幅,表明在LM-PYR连接处没有强直突触前GABA B抑制作用。 因此,LM中间神经元对树突状细胞的抑制作用涉及具有动力学依赖性的GABAA uIPSC。响应幅度,并取决于独立于GABAB的配对脉冲可塑性。

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