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外周神经系统中的起搏活动:超极化激活的环核苷酸门控通道在神经性疼痛中的生理学及作用

Pacemaking Activity in the Peripheral Nervous System: Physiology and Roles of Hyperpolarization Activated and Cyclic Nucleotide-Gated Channels in Neuropathic Pain.

作者信息

Liu Fan, Wuni George Y, Bahuva Ronak, Shafiq Muhammad Ahsan, Gattas Boula S, Ibetoh Crystal N, Stratulat Eugeniu, Gordon Domonick K

机构信息

Internal Medicine, California Institute of Behavioral Neurosciences & Psychology, Fairfield, USA.

Internal Medicine, University at Buffalo, Buffalo, USA.

出版信息

Cureus. 2020 Oct 23;12(10):e11111. doi: 10.7759/cureus.11111.

Abstract

The most famous pacemaking activity found in the human body is in the cardiac system. However, pacemaking is also widely present in the nervous system. The ion channels responsible for the pacemaking activity are called hyperpolarization-activated and cyclic nucleotide-gated (HCN) channels. HCN channels are activated during hyperpolarization and create an inward current named I containing mixed sodium and potassium ions. The molecular mechanism of these unique features remains mysterious. In the peripheral nervous system (PNS), pacemaking is unique because it is only present in pathologic states when nerve damage occurs and leads to neuropathic pain. For this reason, pacemaking in neuropathic pain is also known as ectopic discharge. In our literature review, the HCN channel physiology is one of the research interests. We will present studies exploring the molecular mechanisms involved in HCN gating and ion permeability. The second research question is, what makes the pacemaking activity unique in the PNS? Thus, our paper will include studies that discuss the role of HCN channels in neuropathic pain. Given the fundamental role of HCN channels in regulating neuronal cells' discharge activity, the modulation of their function for therapeutic purposes could be useful in various pathological conditions. Here we review the present knowledge of the efficacy of HCN blocker treating neuropathic pain in humans.

摘要

人体中最著名的起搏活动存在于心脏系统。然而,起搏在神经系统中也广泛存在。负责起搏活动的离子通道称为超极化激活的环核苷酸门控(HCN)通道。HCN通道在超极化期间被激活,并产生一种名为I的内向电流,该电流包含混合的钠离子和钾离子。这些独特特性的分子机制仍然神秘。在周围神经系统(PNS)中,起搏是独特的,因为它仅在神经损伤发生并导致神经性疼痛的病理状态下出现。因此,神经性疼痛中的起搏也被称为异位放电。在我们的文献综述中,HCN通道生理学是研究热点之一。我们将展示探索HCN门控和离子通透性相关分子机制的研究。第二个研究问题是,是什么使得PNS中的起搏活动独特?因此,我们的论文将包括讨论HCN通道在神经性疼痛中作用的研究。鉴于HCN通道在调节神经元细胞放电活动中的基本作用,为治疗目的对其功能进行调节可能在各种病理状况中有用。在此,我们综述目前关于HCN阻滞剂治疗人类神经性疼痛疗效的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a3b/7682534/dba48536e34d/cureus-0012-00000011111-i01.jpg

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