背根神经节
感觉系统
神经科学
体感系统
钠通道
神经病理性疼痛
伤害
免疫染色
背
解剖
生物
电生理学
医学
机械感受器
感觉神经元
调节器
神经节
条件基因敲除
神经系统
感觉神经
外周神经系统
机械转化
神经元
结节状神经节
神经传递
细胞生物学
体感诱发电位
化学
钙显像
作者
Chen-Jing Zhang,Mei-jun Ji,Xiaolu Zhou,Xiao-Lu Zhou,Shengnan Li,Hao Wu,Hui Wu,Qing Chen,Jing Zhao,Xin-Zhong Chen,James J Cox,Xue-Long Zhou,Xue-Long Zhou
出处
期刊:Brain
[Oxford University Press]
日期:2025-11-18
卷期号:149 (7): 2516-2532
被引量:1
标识
DOI:10.1093/brain/awaf438
摘要
Voltage-gated sodium channels in primary sensory neurons are essential mediators of nociceptive signal transmission and represent promising therapeutic targets for pain management. Here, we demonstrate that Nav1.5, which is traditionally known to be a cardiac sodium channel, as a major determinant of mechanical sensitivity in the somatosensory system. Immunostaining and single-cell RNA sequencing analyses revealed that Nav1.5 is predominantly expressed in myelinated TrkB-positive A-fibre neurons within the dorsal root ganglion. Through conditional knockout studies, we found that Nav1.5 deletion in TrkB neurons or dorsal root ganglion tissue specifically impairs mechanical sensitivity while preserving other sensory and motor functions. Notably, Nav1.5 ablation significantly attenuated mechanical hypersensitivity in both neuropathic and visceral pain models. Mechanistically, Nav1.5 contributes to action potential generation and firing patterns in TrkB-positive neurons. In summary, these findings establish Nav1.5 as a critical regulator of mechanical hypersensitivity.
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