扁桃形结构
丘脑
SNi公司
神经病理性疼痛
神经科学
光遗传学
基底外侧杏仁核
有条件地点偏好
慢性疼痛
心理学
杏仁核
抗抑郁药
焦虑症
伏隔核
医学
上瘾
抗焦虑药
海马体
焦虑
精神科
中枢神经系统
生物
生物化学
水解
酸水解
作者
Jing Chen,Yuan Gao,Shu-Ting Bao,Ying-Di Wang,Tao Jia,Yin Cui,Cheng Xiao,Chunyi Zhou
标识
DOI:10.1523/jneurosci.2062-23.2024
摘要
The comorbidity of chronic pain and depression poses tremendous challenges for the treatment of either one because they exacerbate each other with unknown mechanisms. As the posterior insular cortex (PIC) integrates multiple somatosensory and emotional information and is implicated in either chronic pain or depression, we hypothesize that the PIC and its projections may contribute to the pathophysiology of comorbid chronic pain and depression. We show that PIC neurons were readily activated by mechanical, thermal, aversive, and stressful and appetitive stimulation in naive and neuropathic pain male mice subjected to spared nerve injury (SNI). Optogenetic activation of PIC neurons induced hyperalgesia and conditioned place aversion in naive mice, whereas inhibition of these neurons led to analgesia, conditioned place preference (CPP), and antidepressant effect in both naive and SNI mice. Combining neuronal tracing, optogenetics, and electrophysiological techniques, we found that the monosynaptic glutamatergic projections from the PIC to the basolateral amygdala (BLA) and the ventromedial nucleus (VM) of the thalamus mimicked PIC neurons in pain modulation in naive mice; in SNI mice, both projections were enhanced accompanied by hyperactivity of PIC, BLA, and VM neurons and inhibition of these projections led to analgesia, CPP, and antidepressant-like effect. The present study suggests that potentiation of the PIC→BLA and PIC→VM projections may be important pathophysiological bases for hyperalgesia and depression-like behavior in neuropathic pain and reversing the potentiation may be a promising therapeutic strategy for comorbid chronic pain and depression.
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