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首页> 外文期刊>The Journal of Physiology >Alpha_2-Noradrenergic receptors activation enhances excitability and synaptic integration in rat prefrontal cortex pyramidal neurons via inhibition of HCN currents
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Alpha_2-Noradrenergic receptors activation enhances excitability and synaptic integration in rat prefrontal cortex pyramidal neurons via inhibition of HCN currents

机译:Alpha_2-去甲肾上腺素能受体激活通过抑制HCN电流增强大鼠前额叶皮层锥体神经元的兴奋性和突触整合。

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摘要

Stimulation of alpha_2-noradrenergic (NA) receptors within the PFC improves working memory performance. This improvement is accompanied by a selective increase in the activity of PFC neurons during delay periods, although the cellular mechanisms responsible for this enhanced response are largely unknown. Here we used current and voltage clamp recordings to characterize the response of layer V-VI PFC pyramidal neurons to alpha_2-NA receptor stimulation. alpha_2-NA receptor activation produced a small hyperpolarization of the resting membrane potential, which was accompanied by an increase in input resistance and evoked firing. Voltage clamp analysis demonstrated that alpha_2-NA receptor stimulation inhibited a caesium and ZD7288-sensitive hyperpolarization-activated (HCN) inward current. Suppression of HCN current by alpha_2-NA stimulation was not dependent on adenylate cyclase but instead required activation of a PLC-PKC linked signalling pathway. Similar to direct blockade of HCN channels, alpha_2-NA receptor stimulation produced a significant enhancement in temporal summation during trains of distally evoked EPSPs. These dual effects of alpha_2-NA receptor stimulation - membrane hyperpolarization and enhanced temporal integration - together produce an increase in the overall gain of the response of PFC pyramidal neurons to excitatory synaptic input. The net effect is the suppression of isolated excitatory inputs while enhancing the response to a coherent burst of synaptic activity.
机译:在PFC中刺激alpha_2-去甲肾上腺素(NA)受体可改善工作记忆性能。这种改善伴随着PFC神经元在延迟期间选择性增加,尽管造成这种增强反应的细胞机制在很大程度上尚不清楚。在这里,我们使用电流和电压钳位记录来表征V-VI PFC层锥体神经元对alpha_2-NA受体刺激的响应。 alpha_2-NA受体的激活产生了静息膜电位的小超极化,伴随着输入电阻的增加和诱发的放电。电压钳分析表明,α_2-NA受体刺激抑制了铯和ZD7288敏感的超极化激活(HCN)内向电流。通过alpha_2-NA刺激抑制HCN电流不依赖于腺苷酸环化酶,而是需要激活PLC-PKC连接的信号通路。类似于直接阻断HCN通道,在远侧诱发的EPSP训练期间,α_2-NA受体刺激显着增强了时间总和。 α_2-NA受体刺激的这些双重作用-膜超极化和增强的时间整合-共同导致PFC锥体神经元对兴奋性突触输入的响应的整体增益增加。最终效果是抑制孤立的兴奋性输入,同时增强对突触活动连贯爆发的响应。

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