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Know Your Current Ih: Interaction with a Shunting Current Explains the Puzzling Effects of Its Pharmacological or Pathological Modulations

机译:知道您的电流Ih:与分流电流的相互作用说明了其药理或病理调节的令人困惑的作用

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摘要

The non-specific, hyperpolarization activated, Ih current is particularly involved in epilepsy and it exhibits an excitatory or inhibitory action on synaptic integration in an apparently inconsistent way. It has been suggested that most of the inconsistencies could be reconciled invoking an indirect interaction with the M-type K+ current, another current involved in epilepsy. However, here we show that the original experiments, and the simplified model used to explain and support them, cannot explain in a conclusive way the puzzling Ih actions observed in different experimental preparations. Using a realistic model, we show instead how and why a shunting current, such as that carried by TASK-like channels, and dependent on Ih channel is able to explain virtually all experimental findings on Ih up- or down-regulation by modulators or pathological conditions. The model results suggest several experimentally testable predictions to characterize in more details this elusive and peculiar interaction, which may be of fundamental importance in the development of new treatments for all those pathological and cognitive dysfunctions caused, mediated, or affected by Ih.
机译:非特异性,超极化激活的Ih电流尤其与癫痫有关,并且它以明显不一致的方式对突触整合表现出兴奋或抑制作用。有人提出,大多数不一致之处可以通过与M型K +电流(一种涉及癫痫的电流)间接相互作用来解决。但是,这里我们显示原始实验以及用于解释和支持它们的简化模型无法以结论性的方式解释在不同实验准备中观察到的令人费解的Ih行为。相反,使用现实模型,我们演示了如何以及为什么分流电流(例如由TASK样通道承载的分流电流以及依赖于Ih通道的电流)能够解释有关调制器或病理学对Ih上调或下调的几乎所有实验结果条件。该模型结果表明了一些可通过实验检验的预测,以更详细地描述这种难以捉摸的特殊相互作用,这对于开发新的治疗因Ih引起,介导或影响的病理和认知功能障碍的方法至关重要。

著录项

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-20 20:40:51

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