轴突
背根神经节
钠通道
感觉系统
痛觉超敏
神经病理性疼痛
感觉神经元
轴突丘
生物
神经科学
解剖
化学
伤害
痛觉过敏
受体
钠
生物化学
有机化学
作者
Ana Isabel Nascimento,Tiago F. Da Silva,Elisabete C. Fernandes,Liliana L. Luz,Fernando Milhazes Mar,Boris V. Safronov,Mónica Mendes Sousa
出处
期刊:Brain
[Oxford University Press]
日期:2022-02-22
卷期号:145 (5): 1632-1640
被引量:16
标识
DOI:10.1093/brain/awac078
摘要
Abstract The axon initial segment is a specialized compartment of the proximal axon of CNS neurons where action potentials are initiated. However, it remains unknown whether this domain is assembled in sensory dorsal root ganglion neurons, in which spikes are initiated in the peripheral terminals. Here we investigate whether sensory neurons have an axon initial segment and if it contributes to spontaneous activity in neuropathic pain. Our results demonstrate that myelinated dorsal root ganglion neurons assemble an axon initial segment in the proximal region of their stem axon, enriched in the voltage-gated sodium channels Nav1.1 and Nav1.7. Using correlative immunofluorescence and calcium imaging, we demonstrate that the Nav1.7 channels at the axon initial segment are associated with spontaneous activity. Computer simulations further indicate that the axon initial segment plays a key role in the initiation of spontaneous discharges by lowering their voltage threshold. Finally, using a Cre-based mouse model for time-controlled axon initial segment disassembly, we demonstrate that this compartment is a major source of spontaneous discharges causing mechanical allodynia in neuropathic pain. Thus, an axon initial segment domain is present in sensory neurons and facilitates their spontaneous activity. This study provides a new insight in the cellular mechanisms that cause pathological pain and identifies a new potential target for chronic pain management.
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