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Developmental Changes in HCN Channel Modulation of Neocortical Layer 1 Interneurons

机译:新皮质第1层神经元的HCN通道调制的发展变化。

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摘要

Layer 1 (L1) interneurons (INs) play a key role in modulating the integration of inputs to pyramidal neurons (PNs) and controlling cortical network activity. Hyperpolarization-activated, cyclic nucleotide-gated, non-specific cation (HCN) channels are known to alter the intrinsic and synaptic excitability of principal components (PCs) as well as select populations of GABAergic INs. However, the developmental profile and functional role of HCN channels in diverse L1 IN populations is not completely understood. In the present study, we used electrophysiological characterization, in conjunction with unbiased hierarchical cluster analysis, to examine developmental modulation of L1 INs by HCN channels in the rat medial agranular cortex (AGm). We identified three physiologically discrete IN populations which were classified as regular spiking (RS), burst accommodating (BA) and non-accommodating (NA). A distinct developmental pattern of excitability modulation by HCN channels was observed for each group. RS and NA cells displayed distinct morphologies with modulation of EPSPs increasing in RS cells and decreasing in NA cells across development. The results indicate a possible role of HCN channels in the formation and maintenance of cortical circuits through alteration of the excitability of distinct AGm L1 INs.
机译:第1层(L1)中间神经元(IN)在调节输入到锥体神经元(PNs)的整合和控制皮质网络活动中起关键作用。已知超极化激活的环状核苷酸门控非特异性阳离子(HCN)通道会改变主要成分(PC)以及GABA能性IN的选定种群的内在和突触兴奋性。但是,尚不清楚HCN通道在不同的L1 IN人群中的发育情况和功能作用。在本研究中,我们使用电生理学特征,结合无偏层次聚类分析,来研究大鼠内侧无皮质皮质(AGm)中HCN通道对L1 INs的发育调控。我们确定了三种生理上离散的IN种群,它们被分为常规加标(RS),猝发适应(BA)和不适应(NA)。每组均观察到由HCN通道调节兴奋性的独特发展模式。在整个发育过程中,RS和NA细胞显示出不同的形态,其中EPSP的调节在RS细胞中增加而在NA细胞中减少。结果表明,HCN通道可能通过改变不同AGm L1 INs的兴奋性而在皮层回路的形成和维持中发挥作用。

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