首页> 外文期刊>The Journal of Physiology >Differences between the scaling of miniature IPSCs and EPSCs recorded in the dendrites of CA1 mouse pyramidal neurons.
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Differences between the scaling of miniature IPSCs and EPSCs recorded in the dendrites of CA1 mouse pyramidal neurons.

机译:CA1小鼠锥体神经元树突中记录的微型IPSC和EPSC缩放比例之间的差异。

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Anatomical studies have described inhibitory synaptic contacts on apical dendrites, and an abundant number of GABAergic synapses on the somata and proximal dendrites of CA1 pyramidal cells of the hippocampus. The number of inhibitory contacts decreases dramatically with distance from the soma, but the local electrophysiological characterization of these synapses at their site of origin in the dendrites is missing. We directly recorded dendritic GABA receptor-mediated inhibitory synaptic events in adult mouse hippocampal CA1 pyramidal neurons and compared them to excitatory synaptic currents recorded at the same sites. Miniature GABAergic events were evoked using localized application of a hyperosmotic solution to the apical dendrites in the vicinity of the dendritic whole-cell recording pipette. Glutamatergic synaptic events were blocked by kynurenic acid, leaving picrotoxin-sensitive IPSCs. We measured the amplitude and kinetic properties of mIPSCs at the soma and at three different dendritic locations. The amplitude of mIPSCs recorded at the various sites was similar along the somato-dendritic axis. The rise- and decay-times of local mIPSCs were also independent of the location of the synapses. The frequency of mIPSCs was 5 Hz at the soma, in contrast to < 0.5 Hz at dendritic sites, which could be increased to 10-20 Hz and 6-10 Hz, respectively, by our hyperosmotic stimulation protocol. Miniature glutamatergic events were evoked with the same protocol after blocking inhibitory synapses by bicucculine. The measured amplitudes increased along the somato-dendritic axis proportionally with their distance from the soma. The measured kinetic properties were independent of location. Consistent with the idea that IPSCs may have a restricted local effect in the dendrites, our data show a lack of distance-dependent scaling of miniature inhibitory synaptic events, in contrast to the scaling of excitatory events recorded at the same sites.
机译:解剖学研究已经描述了顶突突上的抑制性突触接触,以及海马CA1锥体细胞的躯体和近突突上大量的GABA能突触。抑制性接触的数量随着与躯体距离的增加而急剧下降,但是这些突触在树突中起源部位的局部电生理学特征却缺失了。我们直接记录了成年小鼠海马CA1锥体神经元中的树突状GABA受体介导的抑制性突触事件,并将它们与相同部位记录的兴奋性突触电流进行了比较。在树突状全细胞记录移液管附近,将高渗溶液局部应用到根尖树突上,引起微小的GABA能事件。谷氨酸能的突触事件被犬尿酸阻断,留下了对微毒素敏感的IPSC。我们在体细胞和三个不同的树突位置测量了mIPSC的振幅和动力学特性。在各个部位记录的mIPSC的幅度沿体树突状轴相似。局部mIPSC的上升和衰减时间也与突触的位置无关。 mIPSC的频率在躯体处为5 Hz,而在树突部位<0.5 Hz,通过我们的高渗刺激方案可以分别增加到10-20 Hz和6-10 Hz。在用比比库林阻断抑制性突触后,用相同的方案诱发了微型谷氨酸能事件。所测得的幅度沿树突树突状轴增加,并与它们与躯体的距离成比例。测得的动力学性质与位置无关。与IPSCs在树突中可能具有局限性局部作用的观点一致,我们的数据表明,与在相同部位记录的兴奋性事件的规模不同,微型抑制性突触事件的规模与距离无关。

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