Department of Neurology, The Seventh Affliated Hospital of Sun Yet-sen University, No. 628, Zhenyuan Road, Xinhu Street, Guangming District, Shenzhen, China.
Guangzhou Laboratory, Guangzhou, No. 9 XingDaoHuanBei Road, Guangzhou International Bio Island, Guangzhou 510005, Guangdong Province, China.
Curr Neuropharmacol. 2023;21(10):2070-2078. doi: 10.2174/1570159X21666230214110333.
Hyperpolarization-activated cyclic nucleotide-gated cation channel 1 (HCN1) is predominantly expressed in neurons from the neocortex and hippocampus, two important regions related to epilepsy. Both animal models for epilepsy and epileptic patients show decreased HCN1 expression and HCN1-mediated I current. It has been shown in neuroelectrophysiological experiments that a decreased current can increase neuronal excitability. However, some studies have shown that blocking the current can exert antiepileptic effects. This paradox raises an important question regarding the causal relationship between HCN1 alteration and epileptogenesis, which to date has not been elucidated. In this review, we summarize the literature related to HCN1 and epilepsy, aiming to find a possible explanation for this paradox, and explore the correlation between HCN1 and the mechanism of epileptogenesis. We analyze the alterations in the expression and distribution of HCN1 and the corresponding impact on brain function in epilepsy. In addition, we also discuss the effect of blocking on epilepsy symptoms. Addressing these issues will help to inspire new strategies to explore the relationship between HCN1 and epileptogenesis, and ultimately promote the development of new targets for epilepsy therapy.
超极化激活环核苷酸门控阳离子通道 1(HCN1)主要表达于新皮质和海马体神经元中,而这两个区域与癫痫密切相关。癫痫的动物模型和癫痫患者均表现出 HCN1 表达减少和 HCN1 介导的 I 电流减少。神经电生理实验表明,I 电流减少会增加神经元兴奋性。然而,一些研究表明,阻断 I 电流可发挥抗癫痫作用。这种矛盾提出了一个关于 HCN1 改变与癫痫发生之间因果关系的重要问题,迄今尚未阐明。在这篇综述中,我们总结了与 HCN1 和癫痫相关的文献,旨在为这一矛盾找到可能的解释,并探讨 HCN1 与癫痫发生机制之间的相关性。我们分析了癫痫中 HCN1 的表达和分布改变及其对脑功能的相应影响。此外,我们还讨论了阻断 I 电流对癫痫症状的影响。解决这些问题将有助于激发新的策略来探索 HCN1 与癫痫发生之间的关系,并最终促进癫痫治疗新靶点的发展。