神经病理性疼痛
背
栏(排版)
灵敏度(控制系统)
比例(比率)
神经科学
医学
化学
生物
物理
解剖
计算机科学
计算机网络
工程类
帧(网络)
量子力学
电子工程
作者
Aman Upadhyay,Mark A. Gradwell,Thomas J. Vajtay,James Conner,Arnab A. Sanyal,Chloe Azadegan,Komal Patel,Joshua K. Thackray,Manon Bohic,Fumiyasu Imai,Simon Ogundare,Yutaka Yoshida,Ishmail Abdus-Saboor,Eiman Azim,Victoria E. Abraira
出处
期刊:Cell Reports
[Cell Press]
日期:2025-04-01
卷期号:44 (4): 115556-115556
被引量:3
标识
DOI:10.1016/j.celrep.2025.115556
摘要
During pathological conditions, tactile stimuli can aberrantly engage nociceptive pathways leading to the perception of touch as pain, known as mechanical allodynia. The brain stem dorsal column nuclei integrate tactile inputs, yet their role in mediating tactile sensitivity and allodynia remains understudied. We found that gracile nucleus (Gr) inhibitory interneurons and thalamus-projecting neurons are differentially innervated by primary afferents and spinal inputs. Functional manipulations of these distinct Gr neuronal populations bidirectionally shifted tactile sensitivity but did not affect noxious mechanical or thermal sensitivity. During neuropathic pain, Gr neurons exhibited increased sensory-evoked activity and asynchronous excitatory drive from primary afferents. Silencing Gr projection neurons or activating Gr inhibitory neurons in neuropathic mice reduced tactile hypersensitivity, and enhancing inhibition ameliorated paw-withdrawal signatures of neuropathic pain and induced conditioned place preference. These results suggest that Gr activity contributes to tactile sensitivity and affective, pain-associated phenotypes of mechanical allodynia.
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