Cargando…

Rostral Anterior Cingulate Cortex–Ventrolateral Periaqueductal Gray Circuit Underlies Electroacupuncture to Alleviate Hyperalgesia but Not Anxiety-Like Behaviors in Mice With Spared Nerve Injury

Neuropathic pain is a common cause of chronic pain and is often accompanied by negative emotions, making it complex and difficult to treat. However, the neural circuit mechanisms underlying these symptoms remain unclear. Herein, we present a novel pathway associated with comorbid chronic pain and an...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhu, Xixiao, Xu, Yingling, Shen, Zui, Zhang, Haiyan, Xiao, Siqi, Zhu, Yichen, Wu, Mengwei, Chen, Yeqing, Wu, Zemin, Xu, Yunyun, He, Xiaofen, Liu, Boyu, Liu, Jinggen, Du, Junying, Sun, Jing, Fang, Jianqiao, Shao, Xiaomei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8789679/
https://www.ncbi.nlm.nih.gov/pubmed/35095390
http://dx.doi.org/10.3389/fnins.2021.757628
_version_ 1784639824920051712
author Zhu, Xixiao
Xu, Yingling
Shen, Zui
Zhang, Haiyan
Xiao, Siqi
Zhu, Yichen
Wu, Mengwei
Chen, Yeqing
Wu, Zemin
Xu, Yunyun
He, Xiaofen
Liu, Boyu
Liu, Jinggen
Du, Junying
Sun, Jing
Fang, Jianqiao
Shao, Xiaomei
author_facet Zhu, Xixiao
Xu, Yingling
Shen, Zui
Zhang, Haiyan
Xiao, Siqi
Zhu, Yichen
Wu, Mengwei
Chen, Yeqing
Wu, Zemin
Xu, Yunyun
He, Xiaofen
Liu, Boyu
Liu, Jinggen
Du, Junying
Sun, Jing
Fang, Jianqiao
Shao, Xiaomei
author_sort Zhu, Xixiao
collection PubMed
description Neuropathic pain is a common cause of chronic pain and is often accompanied by negative emotions, making it complex and difficult to treat. However, the neural circuit mechanisms underlying these symptoms remain unclear. Herein, we present a novel pathway associated with comorbid chronic pain and anxiety. Using chemogenetic methods, we found that activation of glutamatergic projections from the rostral anterior cingulate cortex (rACC(Glu)) to the ventrolateral periaqueductal gray (vlPAG) induced both hyperalgesia and anxiety-like behaviors in sham mice. Inhibition of the rACC(Glu)-vlPAG pathway reduced anxiety-like behaviors and hyperalgesia in the spared nerve injury (SNI) mice model; moreover, electroacupuncture (EA) effectively alleviated these symptoms. Investigation of the related mechanisms revealed that the chemogenetic activation of the rACC(Glu)-vlPAG circuit effectively blocked the analgesic effect of EA in the SNI mice model but did not affect the chronic pain-induced negative emotions. This study revealed a novel pathway, the rACC(Glu)-vlPAG pathway, that mediates neuropathic pain and pain-induced anxiety.
format Online
Article
Text
id pubmed-8789679
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-87896792022-01-27 Rostral Anterior Cingulate Cortex–Ventrolateral Periaqueductal Gray Circuit Underlies Electroacupuncture to Alleviate Hyperalgesia but Not Anxiety-Like Behaviors in Mice With Spared Nerve Injury Zhu, Xixiao Xu, Yingling Shen, Zui Zhang, Haiyan Xiao, Siqi Zhu, Yichen Wu, Mengwei Chen, Yeqing Wu, Zemin Xu, Yunyun He, Xiaofen Liu, Boyu Liu, Jinggen Du, Junying Sun, Jing Fang, Jianqiao Shao, Xiaomei Front Neurosci Neuroscience Neuropathic pain is a common cause of chronic pain and is often accompanied by negative emotions, making it complex and difficult to treat. However, the neural circuit mechanisms underlying these symptoms remain unclear. Herein, we present a novel pathway associated with comorbid chronic pain and anxiety. Using chemogenetic methods, we found that activation of glutamatergic projections from the rostral anterior cingulate cortex (rACC(Glu)) to the ventrolateral periaqueductal gray (vlPAG) induced both hyperalgesia and anxiety-like behaviors in sham mice. Inhibition of the rACC(Glu)-vlPAG pathway reduced anxiety-like behaviors and hyperalgesia in the spared nerve injury (SNI) mice model; moreover, electroacupuncture (EA) effectively alleviated these symptoms. Investigation of the related mechanisms revealed that the chemogenetic activation of the rACC(Glu)-vlPAG circuit effectively blocked the analgesic effect of EA in the SNI mice model but did not affect the chronic pain-induced negative emotions. This study revealed a novel pathway, the rACC(Glu)-vlPAG pathway, that mediates neuropathic pain and pain-induced anxiety. Frontiers Media S.A. 2022-01-12 /pmc/articles/PMC8789679/ /pubmed/35095390 http://dx.doi.org/10.3389/fnins.2021.757628 Text en Copyright © 2022 Zhu, Xu, Shen, Zhang, Xiao, Zhu, Wu, Chen, Wu, Xu, He, Liu, Liu, Du, Sun, Fang and Shao. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Zhu, Xixiao
Xu, Yingling
Shen, Zui
Zhang, Haiyan
Xiao, Siqi
Zhu, Yichen
Wu, Mengwei
Chen, Yeqing
Wu, Zemin
Xu, Yunyun
He, Xiaofen
Liu, Boyu
Liu, Jinggen
Du, Junying
Sun, Jing
Fang, Jianqiao
Shao, Xiaomei
Rostral Anterior Cingulate Cortex–Ventrolateral Periaqueductal Gray Circuit Underlies Electroacupuncture to Alleviate Hyperalgesia but Not Anxiety-Like Behaviors in Mice With Spared Nerve Injury
title Rostral Anterior Cingulate Cortex–Ventrolateral Periaqueductal Gray Circuit Underlies Electroacupuncture to Alleviate Hyperalgesia but Not Anxiety-Like Behaviors in Mice With Spared Nerve Injury
title_full Rostral Anterior Cingulate Cortex–Ventrolateral Periaqueductal Gray Circuit Underlies Electroacupuncture to Alleviate Hyperalgesia but Not Anxiety-Like Behaviors in Mice With Spared Nerve Injury
title_fullStr Rostral Anterior Cingulate Cortex–Ventrolateral Periaqueductal Gray Circuit Underlies Electroacupuncture to Alleviate Hyperalgesia but Not Anxiety-Like Behaviors in Mice With Spared Nerve Injury
title_full_unstemmed Rostral Anterior Cingulate Cortex–Ventrolateral Periaqueductal Gray Circuit Underlies Electroacupuncture to Alleviate Hyperalgesia but Not Anxiety-Like Behaviors in Mice With Spared Nerve Injury
title_short Rostral Anterior Cingulate Cortex–Ventrolateral Periaqueductal Gray Circuit Underlies Electroacupuncture to Alleviate Hyperalgesia but Not Anxiety-Like Behaviors in Mice With Spared Nerve Injury
title_sort rostral anterior cingulate cortex–ventrolateral periaqueductal gray circuit underlies electroacupuncture to alleviate hyperalgesia but not anxiety-like behaviors in mice with spared nerve injury
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8789679/
https://www.ncbi.nlm.nih.gov/pubmed/35095390
http://dx.doi.org/10.3389/fnins.2021.757628
work_keys_str_mv AT zhuxixiao rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT xuyingling rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT shenzui rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT zhanghaiyan rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT xiaosiqi rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT zhuyichen rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT wumengwei rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT chenyeqing rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT wuzemin rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT xuyunyun rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT hexiaofen rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT liuboyu rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT liujinggen rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT dujunying rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT sunjing rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT fangjianqiao rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury
AT shaoxiaomei rostralanteriorcingulatecortexventrolateralperiaqueductalgraycircuitunderlieselectroacupuncturetoalleviatehyperalgesiabutnotanxietylikebehaviorsinmicewithsparednerveinjury