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首页> 外文期刊>Cerebral cortex >Social Isolation During the Critical Period Reduces Synaptic and Intrinsic Excitability of a Subtype of Pyramidal Cell in Mouse Prefrontal Cortex
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Social Isolation During the Critical Period Reduces Synaptic and Intrinsic Excitability of a Subtype of Pyramidal Cell in Mouse Prefrontal Cortex

机译:关键时期的社会隔离减少了鼠标前额叶皮层中金字塔细胞亚型的突触和内在兴奋性

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Juvenile social experience is crucial for the functional development of forebrain regions, especially the prefrontal cortex (PFC). We previously reported that social isolation for 2 weeks after weaning induces prefrontal cortex dysfunction and hypomyelination. However, the effect of social isolation on physiological properties of PFC neuronal circuit remained unknown. Since hypomyelination due to isolation is prominent in deep-layer of medial PFC (mPFC), we focused on 2 types of Layer-5 pyramidal cells in the mPFC: prominent h-current (PH) cells and nonprominent h-current (non-PH) cells. We found that a 2-week social isolation after weaning leads to a specific deterioration in action potential properties and reduction in excitatory synaptic inputs in PH cells. The effects of social isolation on PH cells, which involve reduction in functional glutamatergic synapses and α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid/N-methyl-d-aspartate charge ratio, are specific to the 2 weeks after weaning and to the mPFC. We conclude that juvenile social experience plays crucial roles in the functional development in a subtype of Layer-5 pyramidal cells in the mPFC. Since these neurons project to subcortical structures, a deficit in social experience during the critical period may result in immature neural circuitry between mPFC and subcortical targets.
机译:少年社会经验对于前脑区的功能发展至关重要,特别是前额叶皮质(PFC)。我们之前报道,断奶后2周的社会隔离诱导前额叶皮质功能障碍和低聚髓。然而,社会隔离对PFC神经元电路的生理特性的影响仍然未知。由于由于分离引起的下髓鞘在深层中间PFC(MPFC)中突出,因此我们将MPFC中的2种类型的层-5锥体细胞聚焦:显着的H型(pH)细胞和非突出的H-电流(非pH值) 细胞。我们发现,断奶后2周的社会隔离导致动作潜在性质的特异性劣化,并在pH细胞中减少兴奋性突触输入。社会隔离对pH细胞的影响,其涉及功能性谷氨酸突变突触和α-氨基-3-羟基-5-甲基-4异恶唑丙酸/ N-甲基-D-天冬氨酸电荷比的特异于2周断奶后和MPFC。我们得出结论,少年社会体会在MPFC中的第5层锥体细胞的亚型中的功能发展中起着至关重要的作用。由于这些神经元突出了对结构结构,因此在关键时期期间的社会经验中的缺陷可能导致MPFC和皮质点目标之间的未成熟神经电路。

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