Cargando…

The anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model

INTRODUCTION: The aim of the study was to study the role of the anterior cingulate cortex (ACC)-dorsal midbrain striatum (DMS) in neuropathic pain in mice. MATERIAL AND METHODS: Optogenetics has been increasingly used in neuroscience research to selectively and precisely control the activity of a de...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhuang, Xiuxiu, Huang, Luping, Gu, Yixiao, Wang, Lu, Zhang, Rong, Zhang, Minyuan, Li, Fei, Shi, Yiyi, Mo, Yunchang, Dai, Qinxue, Wei, Chaoyi, Wang, Junlu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Termedia Publishing House 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425248/
https://www.ncbi.nlm.nih.gov/pubmed/34522268
http://dx.doi.org/10.5114/aoms.2019.85202
_version_ 1783749820608937984
author Zhuang, Xiuxiu
Huang, Luping
Gu, Yixiao
Wang, Lu
Zhang, Rong
Zhang, Minyuan
Li, Fei
Shi, Yiyi
Mo, Yunchang
Dai, Qinxue
Wei, Chaoyi
Wang, Junlu
author_facet Zhuang, Xiuxiu
Huang, Luping
Gu, Yixiao
Wang, Lu
Zhang, Rong
Zhang, Minyuan
Li, Fei
Shi, Yiyi
Mo, Yunchang
Dai, Qinxue
Wei, Chaoyi
Wang, Junlu
author_sort Zhuang, Xiuxiu
collection PubMed
description INTRODUCTION: The aim of the study was to study the role of the anterior cingulate cortex (ACC)-dorsal midbrain striatum (DMS) in neuropathic pain in mice. MATERIAL AND METHODS: Optogenetics has been increasingly used in neuroscience research to selectively and precisely control the activity of a defined group of central neurons to determine their roles in behavioral functions in animals. The most important opsins are blue-sensitive ChR2 and yellow-sensitive NpHR. Calcium-calmodulin dependent protein kinase Iiα (CaMKIIα) is mostly expressed in the pyramidal excitatory neurons. Mice were injected with AAV2/9-CamKII-ChR2-mCherry, AAV2/9-CamKII-eNpHR3.0-GFP or AAV2/9-CamKII-mCherry virus in the ACC region, and the optical fiber implantation was performed in the ACC or DMS region. Mice were then followed up for 2 to 8 weeks and behavioral tests were carried out in the presence or absence of the blue/yellow light (473 nm/589 nm). Pain behavioral tests with or without the blue/yellow light at the same time were performed on the third and the seventh day after the chronic constriction injury of sciatic nerve model (CCI) was established. The pain thresholds of left and right hind limbs of mice in all groups were measured. RESULTS: No matter whether activating the neurons in ACC or DMS, compared with normal mice in the ChR2-off-right group, and the mCherry-on-right group, the thermal pain threshold and mechanical pain threshold of the normal mice in the ChR2-on-right group were significantly lower. When inhibiting the neurons in the ACC or DMS, on day 3 and day 7 after CCI operation, the thermal pain threshold and mechanical pain threshold of the CCI mice of the NpHR-on-right group were significantly higher compared with the NpHR-off-right and mCherry-on-right groups. CONCLUSIONS: The anterior cingulate cortex-dorsal midbrain striatum may be involved in the regulation of neuropathic pain in mice.
format Online
Article
Text
id pubmed-8425248
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Termedia Publishing House
record_format MEDLINE/PubMed
spelling pubmed-84252482021-09-13 The anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model Zhuang, Xiuxiu Huang, Luping Gu, Yixiao Wang, Lu Zhang, Rong Zhang, Minyuan Li, Fei Shi, Yiyi Mo, Yunchang Dai, Qinxue Wei, Chaoyi Wang, Junlu Arch Med Sci Experimental Research INTRODUCTION: The aim of the study was to study the role of the anterior cingulate cortex (ACC)-dorsal midbrain striatum (DMS) in neuropathic pain in mice. MATERIAL AND METHODS: Optogenetics has been increasingly used in neuroscience research to selectively and precisely control the activity of a defined group of central neurons to determine their roles in behavioral functions in animals. The most important opsins are blue-sensitive ChR2 and yellow-sensitive NpHR. Calcium-calmodulin dependent protein kinase Iiα (CaMKIIα) is mostly expressed in the pyramidal excitatory neurons. Mice were injected with AAV2/9-CamKII-ChR2-mCherry, AAV2/9-CamKII-eNpHR3.0-GFP or AAV2/9-CamKII-mCherry virus in the ACC region, and the optical fiber implantation was performed in the ACC or DMS region. Mice were then followed up for 2 to 8 weeks and behavioral tests were carried out in the presence or absence of the blue/yellow light (473 nm/589 nm). Pain behavioral tests with or without the blue/yellow light at the same time were performed on the third and the seventh day after the chronic constriction injury of sciatic nerve model (CCI) was established. The pain thresholds of left and right hind limbs of mice in all groups were measured. RESULTS: No matter whether activating the neurons in ACC or DMS, compared with normal mice in the ChR2-off-right group, and the mCherry-on-right group, the thermal pain threshold and mechanical pain threshold of the normal mice in the ChR2-on-right group were significantly lower. When inhibiting the neurons in the ACC or DMS, on day 3 and day 7 after CCI operation, the thermal pain threshold and mechanical pain threshold of the CCI mice of the NpHR-on-right group were significantly higher compared with the NpHR-off-right and mCherry-on-right groups. CONCLUSIONS: The anterior cingulate cortex-dorsal midbrain striatum may be involved in the regulation of neuropathic pain in mice. Termedia Publishing House 2019-05-15 /pmc/articles/PMC8425248/ /pubmed/34522268 http://dx.doi.org/10.5114/aoms.2019.85202 Text en Copyright: © 2019 Termedia & Banach https://creativecommons.org/licenses/by-nc-sa/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) License, allowing third parties to copy and redistribute the material in any medium or format and to remix, transform, and build upon the material, provided the original work is properly cited and states its license.
spellingShingle Experimental Research
Zhuang, Xiuxiu
Huang, Luping
Gu, Yixiao
Wang, Lu
Zhang, Rong
Zhang, Minyuan
Li, Fei
Shi, Yiyi
Mo, Yunchang
Dai, Qinxue
Wei, Chaoyi
Wang, Junlu
The anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model
title The anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model
title_full The anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model
title_fullStr The anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model
title_full_unstemmed The anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model
title_short The anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model
title_sort anterior cingulate cortex projection to the dorsomedial striatum modulates hyperalgesia in a chronic constriction injury mouse model
topic Experimental Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425248/
https://www.ncbi.nlm.nih.gov/pubmed/34522268
http://dx.doi.org/10.5114/aoms.2019.85202
work_keys_str_mv AT zhuangxiuxiu theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT huangluping theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT guyixiao theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT wanglu theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT zhangrong theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT zhangminyuan theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT lifei theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT shiyiyi theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT moyunchang theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT daiqinxue theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT weichaoyi theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT wangjunlu theanteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT zhuangxiuxiu anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT huangluping anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT guyixiao anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT wanglu anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT zhangrong anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT zhangminyuan anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT lifei anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT shiyiyi anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT moyunchang anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT daiqinxue anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT weichaoyi anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel
AT wangjunlu anteriorcingulatecortexprojectiontothedorsomedialstriatummodulateshyperalgesiainachronicconstrictioninjurymousemodel