首页> 美国卫生研究院文献>The Journal of Neuroscience >The Role of the Hyperpolarization-Activated Cationic CurrentIh in the Timing of Interictal Bursts in the Neonatal Hippocampus
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The Role of the Hyperpolarization-Activated Cationic CurrentIh in the Timing of Interictal Bursts in the Neonatal Hippocampus

机译:超极化激活阳离子CurrentIh在新生儿海马发作室间隔爆发的时间中的作用

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摘要

Under both pathological and experimental conditions, area CA3 of the adult or juvenile hippocampus generates periodic population discharges known as interictal bursts. Whereas the ionic and synaptic basis of individual bursts has been comprehensively studied experimentally and computationally, the pacemaker mechanisms underlying interictal rhythmicity remain conjectural. We showed previously that rhythmic population discharges resembling interictal bursts can be induced in hippocampal slices from first postnatal week mice, in Mg2+-free solution with GABAAreceptor-mediated inhibition blocked. Here we show that these neonatal bursts occurred with high temporal precision and that their frequency and regularity were greatly reduced by the bradycardic agent ZD-7288 when applied at concentrations and durations that selectively block the hyperpolarization-activated, cationic currentIh. Augmenting Ihby elevating intracellular cAMP dramatically increased burst frequency in a protein kinase A-independent manner. Burst amplitudes were strongly correlated with the preceding, but not the following, interburst intervals. The experimentally observed distribution of interburst intervals was modeled by assuming that a burst was triggered whenever the instantaneous rate of spontaneous EPSPs (sEPSPs) exceeded a threshold and that the mean sEPSP rate was minimal immediately after a burst and then relaxed exponentially to a steady-state level. The effect of blocking Ih in any given slice could be modeled by decreasing only the steady-state sEPSP rate, suggesting that the instantaneous rate of sEPSPs is governed by the level of Ih activation and raising the novel possibility that interburst intervals reflected the slow activation kinetics of Ih in the neonatal CA3.
机译:在病理和实验条件下,成年或幼年海马的CA3区会产生周期性的群体放电,称为间质爆发。尽管已通过实验和计算方法对单个爆发的离子和突触基础进行了全面研究,但心律性起搏的起搏机制仍是推测性的。先前我们已经证明,在出生后第一周小鼠的海马切片中,在无Mg 2 + 的溶液中,可以阻断GABAA受体介导的抑制,从而诱导类似节律性爆发的节律性群体放电。在这里,我们显示出这些新生儿猝发以高的时间精度发生,并且当以选择性阻断超极化激活的阳离子电流Ih的浓度和持续时间施用缓动剂ZD-7288时,它们的频率和规律性大大降低。通过升高细胞内cAMP来增强Ih,以独立于蛋白激酶A的方式显着增加了猝发频率。爆发幅度与之前但之后的间歇间隔密切相关。通过假设每当自发EPSPs(sEPSPs)的瞬时速率超过阈值时触发一次突发,并且突发后立即使平均sEPSP速率最小,然后呈指数形式松弛至稳态,来模拟实验观察到的突发间隔的分布水平。可以通过仅降低稳态sEPSP速率来模拟在任何给定切片中阻断Ih的效果,这表明sEPSPs的瞬时速率受Ih活化水平控制,并且增加了突发间隔反映慢活化动力学的新可能性在新生儿CA3中的Ih值。

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