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The Contributions of Mu-Opioid Receptors on Glutamatergic and GABAergic Neurons to Analgesia Induced by Various Stress Intensities

The endogenous opioid system plays a crucial role in stress-induced analgesia. Mu-opioid receptors (MORs), one of the major opioid receptors, are expressed widely in subpopulations of cells throughout the CNS. However, the potential roles of MORs expressed in glutamatergic (MOR(Glut)) and γ-aminobut...

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Autores principales: Du, Yinan, Yu, Kexin, Yan, Chuanting, Wei, Chunling, Zheng, Qiaohua, Qiao, Yanning, Liu, Yihui, Han, Jing, Ren, Wei, Liu, Zhiqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9172284/
https://www.ncbi.nlm.nih.gov/pubmed/35613854
http://dx.doi.org/10.1523/ENEURO.0487-21.2022
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author Du, Yinan
Yu, Kexin
Yan, Chuanting
Wei, Chunling
Zheng, Qiaohua
Qiao, Yanning
Liu, Yihui
Han, Jing
Ren, Wei
Liu, Zhiqiang
author_facet Du, Yinan
Yu, Kexin
Yan, Chuanting
Wei, Chunling
Zheng, Qiaohua
Qiao, Yanning
Liu, Yihui
Han, Jing
Ren, Wei
Liu, Zhiqiang
author_sort Du, Yinan
collection PubMed
description The endogenous opioid system plays a crucial role in stress-induced analgesia. Mu-opioid receptors (MORs), one of the major opioid receptors, are expressed widely in subpopulations of cells throughout the CNS. However, the potential roles of MORs expressed in glutamatergic (MOR(Glut)) and γ-aminobutyric acidergic (MOR(GABA)) neurons in stress-induced analgesia remain unclear. By examining tail-flick latencies to noxious radiant heat of male mice, here we investigated the contributions of MOR(GABA) and MOR(Glut) to behavioral analgesia and activities of neurons projecting from periaqueductal gray (PAG) to rostral ventromedial medulla (RVM) induced by a range of time courses of forced swim exposure. The moderate but not transitory or prolonged swim exposure induced a MOR-dependent analgesia, although all of these three stresses enhanced β-endorphin release. Selective deletion of MOR(GABA) but not MOR(Glut) clearly attenuated analgesia and blocked the enhancement of activities of PAG-RVM neurons induced by moderate swim exposure. Under transitory swim exposure, in contrast, selective deletion of MOR(Glut) elicited an analgesia behavior via strengthening the activities of PAG-RVM neurons. These results indicate that MOR-dependent endogenous opioid signaling participates in nociceptive modulation in a wide range, not limited to moderate, of stress intensities. Endogenous activation of MOR(GABA) exerts analgesia, whereas MOR(Glut) produces antianalgesia. More importantly, with an increase of stress intensities, the efficiencies of MORs on nociception shifts from balance between MOR(Glut) and MOR(GABA) to biasing toward MOR(GABA)-mediated processes. Our results point to the cellular dynamic characteristics of MORs expressed in excitatory and inhibitory neurons in pain modulation under various stress intensities.
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spelling pubmed-91722842022-06-08 The Contributions of Mu-Opioid Receptors on Glutamatergic and GABAergic Neurons to Analgesia Induced by Various Stress Intensities Du, Yinan Yu, Kexin Yan, Chuanting Wei, Chunling Zheng, Qiaohua Qiao, Yanning Liu, Yihui Han, Jing Ren, Wei Liu, Zhiqiang eNeuro Research Article: New Research The endogenous opioid system plays a crucial role in stress-induced analgesia. Mu-opioid receptors (MORs), one of the major opioid receptors, are expressed widely in subpopulations of cells throughout the CNS. However, the potential roles of MORs expressed in glutamatergic (MOR(Glut)) and γ-aminobutyric acidergic (MOR(GABA)) neurons in stress-induced analgesia remain unclear. By examining tail-flick latencies to noxious radiant heat of male mice, here we investigated the contributions of MOR(GABA) and MOR(Glut) to behavioral analgesia and activities of neurons projecting from periaqueductal gray (PAG) to rostral ventromedial medulla (RVM) induced by a range of time courses of forced swim exposure. The moderate but not transitory or prolonged swim exposure induced a MOR-dependent analgesia, although all of these three stresses enhanced β-endorphin release. Selective deletion of MOR(GABA) but not MOR(Glut) clearly attenuated analgesia and blocked the enhancement of activities of PAG-RVM neurons induced by moderate swim exposure. Under transitory swim exposure, in contrast, selective deletion of MOR(Glut) elicited an analgesia behavior via strengthening the activities of PAG-RVM neurons. These results indicate that MOR-dependent endogenous opioid signaling participates in nociceptive modulation in a wide range, not limited to moderate, of stress intensities. Endogenous activation of MOR(GABA) exerts analgesia, whereas MOR(Glut) produces antianalgesia. More importantly, with an increase of stress intensities, the efficiencies of MORs on nociception shifts from balance between MOR(Glut) and MOR(GABA) to biasing toward MOR(GABA)-mediated processes. Our results point to the cellular dynamic characteristics of MORs expressed in excitatory and inhibitory neurons in pain modulation under various stress intensities. Society for Neuroscience 2022-05-31 /pmc/articles/PMC9172284/ /pubmed/35613854 http://dx.doi.org/10.1523/ENEURO.0487-21.2022 Text en Copyright © 2022 Du et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article: New Research
Du, Yinan
Yu, Kexin
Yan, Chuanting
Wei, Chunling
Zheng, Qiaohua
Qiao, Yanning
Liu, Yihui
Han, Jing
Ren, Wei
Liu, Zhiqiang
The Contributions of Mu-Opioid Receptors on Glutamatergic and GABAergic Neurons to Analgesia Induced by Various Stress Intensities
title The Contributions of Mu-Opioid Receptors on Glutamatergic and GABAergic Neurons to Analgesia Induced by Various Stress Intensities
title_full The Contributions of Mu-Opioid Receptors on Glutamatergic and GABAergic Neurons to Analgesia Induced by Various Stress Intensities
title_fullStr The Contributions of Mu-Opioid Receptors on Glutamatergic and GABAergic Neurons to Analgesia Induced by Various Stress Intensities
title_full_unstemmed The Contributions of Mu-Opioid Receptors on Glutamatergic and GABAergic Neurons to Analgesia Induced by Various Stress Intensities
title_short The Contributions of Mu-Opioid Receptors on Glutamatergic and GABAergic Neurons to Analgesia Induced by Various Stress Intensities
title_sort contributions of mu-opioid receptors on glutamatergic and gabaergic neurons to analgesia induced by various stress intensities
topic Research Article: New Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9172284/
https://www.ncbi.nlm.nih.gov/pubmed/35613854
http://dx.doi.org/10.1523/ENEURO.0487-21.2022
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