Modulation of Comorbid Chronic Neuropathic Pain and Anxiety-Like Behaviors by Glutamatergic Neurons in the Ventrolateral Periaqueductal Gray and the Analgesic and Anxiolytic Effects of Electroacupuncture

神经病理性疼痛 电针 慢性疼痛 谷氨酸的 止痛药 医学 焦虑 抗焦虑药 导水管周围灰质 神经科学 麻醉 心理学 针灸科 谷氨酸受体 精神科 内科学 中枢神经系统 受体 中脑 替代医学 病理
作者
Xixiao Zhu,Chi Zhang,Yuxin Hu,Yifang Wang,Siqi Xiao,Yichen Zhu,Haiju Sun,Jing Sun,Chi Xu,Yunyun Xu,Yuerong Chen,Xiaofen He,Boyu Liu,Jinggen Liu,Junying Du,Yi Liang,Boyi Liu,Xiaoyu Li,Yong‐Liang Jiang,Zui Shen
出处
期刊:ENeuro [Society for Neuroscience]
卷期号:11 (8): ENEURO.0454-23.2024 被引量:4
标识
DOI:10.1523/eneuro.0454-23.2024
摘要

Comorbid chronic neuropathic pain and anxiety is a common disease that represents a major clinical challenge. The underlying mechanisms of chronic neuropathic pain and anxiety are not entirely understood, which limits the exploration of effective treatment methods. Glutamatergic neurons in the ventrolateral periaqueductal gray (vlPAG) have been implicated in regulating pain, but the potential roles of the vlPAG in neuropathic pain-induced anxiety have not been investigated. Herein, whole-cell recording and immunofluorescence showed that the excitability of CamkIIα neurons in the vlPAG (vlPAG CamkIIα+ neurons) was decreased in mice with spared nerve injury (SNI), while electroacupuncture (EA) activated these neurons. We also showed that chemogenetic inhibition of vlPAG CamkIIα+ neurons resulted in allodynia and anxiety-like behaviors in naive mice. Furthermore, chemogenetic activation of vlPAG CamkIIα+ neurons reduced anxiety-like behaviors and allodynia in mice with SNI, and EA had a similar effect in alleviating these symptoms. Nevertheless, EA combined with chemogenetic activation failed to further relieve allodynia and anxiety-like behaviors. Artificial inhibition of vlPAG CamkIIα+ neurons abolished the analgesic and anxiolytic effects of EA. Overall, our study reveals a novel mechanism of neuropathic pain-induced anxiety and shows that EA may relieve comorbid chronic neuropathic pain and anxiety by activating vlPAG CamkIIα+ neurons.
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