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Kv1.1 contributes to a rapid homeostatic plasticity of intrinsic excitability in CA1 pyramidal neurons in vivo

机译:Kv1.1有助于在体内CA1金字塔神经元中的内在兴奋的快速稳定性

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摘要

In area CA1 of the hippocampus, the selection of place cells to represent a new environment is biased towards neurons with higher excitability. However, different environments are represented by orthogonal cell ensembles, suggesting that regulatory mechanisms exist. Activity-dependent plasticity of intrinsic excitability, as observed in vitro, is an attractive candidate. Here, using whole-cell patch-clamp recordings of CA1 pyramidal neurons in anesthetized rats, we have examined how inducing theta-bursts of action potentials affects their intrinsic excitability over time. We observed a long-lasting, homeostatic depression of intrinsic excitability which commenced within minutes, and, in contrast to in vitro observations, was not mediated by dendritic Ih. Instead, it was attenuated by the Kv1.1 channel blocker dendrotoxin K, suggesting an axonal origin. Analysis of place cells’ out-of-field firing in mice navigating in virtual reality further revealed an experience-dependent reduction consistent with decreased excitability. We propose that this mechanism could reduce memory interference.
机译:在海马的区域Ca1中,选择适当的细胞以代表新环境偏向神经元,具有更高的兴奋性。然而,不同的环境由正交细胞集合表示,表明存在调控机制。如体外所观察到的,在体外观察到的活性依赖性可塑性是有吸引力的候选者。在这里,在麻醉大鼠中使用Ca1金字塔神经元的全细胞贴片夹具,我们研究过的诱导动作潜力如何影响其内在兴奋的时间。我们观察到在几分钟内开始的内在兴奋性的长期稳定,稳定性抑郁症,并且与体外观察相比,没有由树突Ih介导的。相反,它被Kv1.1通道阻滞剂Dendrootoxin K衰减,表明轴突起源。在虚拟现实中导航的小鼠中的野外射击局部烧制的分析进一步揭示了与兴奋性降低的经验依赖性减少。我们建议这种机制可以降低内存干扰。

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