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Mu opioid receptors on vGluT2‐expressing glutamatergic neurons modulate opioid reward

The role of Mu opioid receptor (MOR)‐mediated regulation of GABA transmission in opioid reward is well established. Much less is known about MOR‐mediated regulation of glutamate transmission in the brain and how this relates to drug reward. We previously found that MORs inhibit glutamate transmissio...

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Autores principales: Reeves, Kaitlin C., Kube, Megan J., Grecco, Gregory G., Fritz, Brandon M., Muñoz, Braulio, Yin, Fuqin, Gao, Yong, Haggerty, David L., Hoffman, Hunter J., Atwood, Brady K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7854952/
https://www.ncbi.nlm.nih.gov/pubmed/32686251
http://dx.doi.org/10.1111/adb.12942
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author Reeves, Kaitlin C.
Kube, Megan J.
Grecco, Gregory G.
Fritz, Brandon M.
Muñoz, Braulio
Yin, Fuqin
Gao, Yong
Haggerty, David L.
Hoffman, Hunter J.
Atwood, Brady K.
author_facet Reeves, Kaitlin C.
Kube, Megan J.
Grecco, Gregory G.
Fritz, Brandon M.
Muñoz, Braulio
Yin, Fuqin
Gao, Yong
Haggerty, David L.
Hoffman, Hunter J.
Atwood, Brady K.
author_sort Reeves, Kaitlin C.
collection PubMed
description The role of Mu opioid receptor (MOR)‐mediated regulation of GABA transmission in opioid reward is well established. Much less is known about MOR‐mediated regulation of glutamate transmission in the brain and how this relates to drug reward. We previously found that MORs inhibit glutamate transmission at synapses that express the Type 2 vesicular glutamate transporter (vGluT2). We created a transgenic mouse that lacks MORs in vGluT2‐expressing neurons (MORflox‐vGluT2cre) to demonstrate that MORs on the vGluT2 neurons themselves mediate this synaptic inhibition. We then explored the role of MORs in vGluT2‐expressing neurons in opioid‐related behaviors. In tests of conditioned place preference, MORflox‐vGluT2cre mice did not acquire place preference for a low dose of the opioid, oxycodone, but displayed conditioned place aversion at a higher dose, whereas control mice displayed preference for both doses. In an oral consumption assessment, these mice consumed less oxycodone and had reduced preference for oxycodone compared with controls. MORflox‐vGluT2cre mice also failed to show oxycodone‐induced locomotor stimulation. These mice displayed baseline withdrawal‐like responses following the development of oxycodone dependence that were not seen in littermate controls. In addition, withdrawal‐like responses in these mice did not increase following treatment with the opioid antagonist, naloxone. However, other MOR‐mediated behaviors were unaffected, including oxycodone‐induced analgesia. These data reveal that MOR‐mediated regulation of glutamate transmission is a critical component of opioid reward.
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spelling pubmed-78549522021-07-02 Mu opioid receptors on vGluT2‐expressing glutamatergic neurons modulate opioid reward Reeves, Kaitlin C. Kube, Megan J. Grecco, Gregory G. Fritz, Brandon M. Muñoz, Braulio Yin, Fuqin Gao, Yong Haggerty, David L. Hoffman, Hunter J. Atwood, Brady K. Addict Biol Preclinical Studies The role of Mu opioid receptor (MOR)‐mediated regulation of GABA transmission in opioid reward is well established. Much less is known about MOR‐mediated regulation of glutamate transmission in the brain and how this relates to drug reward. We previously found that MORs inhibit glutamate transmission at synapses that express the Type 2 vesicular glutamate transporter (vGluT2). We created a transgenic mouse that lacks MORs in vGluT2‐expressing neurons (MORflox‐vGluT2cre) to demonstrate that MORs on the vGluT2 neurons themselves mediate this synaptic inhibition. We then explored the role of MORs in vGluT2‐expressing neurons in opioid‐related behaviors. In tests of conditioned place preference, MORflox‐vGluT2cre mice did not acquire place preference for a low dose of the opioid, oxycodone, but displayed conditioned place aversion at a higher dose, whereas control mice displayed preference for both doses. In an oral consumption assessment, these mice consumed less oxycodone and had reduced preference for oxycodone compared with controls. MORflox‐vGluT2cre mice also failed to show oxycodone‐induced locomotor stimulation. These mice displayed baseline withdrawal‐like responses following the development of oxycodone dependence that were not seen in littermate controls. In addition, withdrawal‐like responses in these mice did not increase following treatment with the opioid antagonist, naloxone. However, other MOR‐mediated behaviors were unaffected, including oxycodone‐induced analgesia. These data reveal that MOR‐mediated regulation of glutamate transmission is a critical component of opioid reward. John Wiley and Sons Inc. 2020-07-20 2021-05 /pmc/articles/PMC7854952/ /pubmed/32686251 http://dx.doi.org/10.1111/adb.12942 Text en © 2020 The Authors. Addiction Biology published by John Wiley & Sons Ltd on behalf of Society for the Study of Addiction https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Preclinical Studies
Reeves, Kaitlin C.
Kube, Megan J.
Grecco, Gregory G.
Fritz, Brandon M.
Muñoz, Braulio
Yin, Fuqin
Gao, Yong
Haggerty, David L.
Hoffman, Hunter J.
Atwood, Brady K.
Mu opioid receptors on vGluT2‐expressing glutamatergic neurons modulate opioid reward
title Mu opioid receptors on vGluT2‐expressing glutamatergic neurons modulate opioid reward
title_full Mu opioid receptors on vGluT2‐expressing glutamatergic neurons modulate opioid reward
title_fullStr Mu opioid receptors on vGluT2‐expressing glutamatergic neurons modulate opioid reward
title_full_unstemmed Mu opioid receptors on vGluT2‐expressing glutamatergic neurons modulate opioid reward
title_short Mu opioid receptors on vGluT2‐expressing glutamatergic neurons modulate opioid reward
title_sort mu opioid receptors on vglut2‐expressing glutamatergic neurons modulate opioid reward
topic Preclinical Studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7854952/
https://www.ncbi.nlm.nih.gov/pubmed/32686251
http://dx.doi.org/10.1111/adb.12942
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