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背角兴奋性与疼痛的电生理学家指南

An electrophysiologist's guide to dorsal horn excitability and pain.

作者信息

Rivera-Arconada Iván, Baccei Mark L, López-García José A, Bardoni Rita

机构信息

Department of Systems Biology, University of Alcala, Madrid, Spain.

Department of Anesthesiology, Pain Research Center, University of Cincinnati, Cincinnati, OH, United States.

出版信息

Front Cell Neurosci. 2025 Apr 2;19:1548252. doi: 10.3389/fncel.2025.1548252. eCollection 2025.

Abstract

The dorsal horn of the spinal cord represents the first site in the central nervous system (CNS) where nociceptive signals are integrated. As a result, there has been a rapid growth in the number of studies investigating the ionic mechanisms regulating the excitability of dorsal horn neurons under normal and pathological conditions. We believe that it is time to look back and to critically examine what picture emerges from this wealth of studies. What are the actual types of neurons described in the literature based on electrophysiological criteria? Are these electrophysiologically-defined subpopulations strongly linked to specific morphological, functional, or molecular traits? Are these electrophysiological properties stable, or can they change during development or in response to peripheral injury? Here we provide an in-depth overview of both early and recent publications that explore the factors influencing dorsal horn neuronal excitability (including intrinsic membrane properties and synaptic transmission), how these factors vary across distinct subtypes of dorsal horn neurons, and how such factors are altered by peripheral nerve or tissue damage. The meta-research presented below leads to the conclusion that the dorsal horn is comprised of highly heterogeneous subpopulations in which the observed electrophysiological properties of a given neuron often fail to easily predict other properties such as biochemical phenotype or morphology. This highlights the need for future studies which can more fully interrogate the properties of dorsal horn neurons in a multi-modal manner.

摘要

脊髓背角是中枢神经系统(CNS)中整合伤害性信号的首个部位。因此,研究正常和病理条件下调节背角神经元兴奋性的离子机制的研究数量迅速增长。我们认为,现在是时候回顾并批判性地审视这些大量研究得出的情况了。根据电生理标准,文献中描述的神经元实际类型有哪些?这些通过电生理定义的亚群是否与特定的形态、功能或分子特征紧密相关?这些电生理特性是稳定的,还是会在发育过程中或对外周损伤作出反应时发生变化?在这里,我们深入概述了早期和近期的出版物,这些出版物探讨了影响背角神经元兴奋性的因素(包括内在膜特性和突触传递),这些因素在背角神经元的不同亚型中如何变化,以及外周神经或组织损伤如何改变这些因素。下面呈现的元研究得出的结论是,背角由高度异质的亚群组成,在这些亚群中,给定神经元观察到的电生理特性往往难以轻易预测其他特性,如生化表型或形态。这凸显了未来研究以多模态方式更全面探究背角神经元特性的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74c5/12001243/5be6d494340f/fncel-19-1548252-g001.jpg

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