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The NMDAR modulator NYX-2925 alleviates neuropathic pain via a Src-dependent mechanism in the mPFC

Previous studies have shown that oral administration of the NMDAR modulator NYX-2925 alleviates pain in several animal models of neuropathic pain and this appears to be through mPFC, but not spinal, mediated mechanisms. While much is known about the impact of neuropathic pain on NMDAR-mediated signa...

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Autores principales: Morrison, Gladys, Asiedu, Marina N., Priebe, Jessica M., Dunning, Jacqueline, Ghoreishi-Haack, Nayereh, Kroes, Roger A., Bowers, M. Scott, Barth, Amanda L., Cearley, Cassia N., Moskal, Joseph R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6938954/
https://www.ncbi.nlm.nih.gov/pubmed/31909296
http://dx.doi.org/10.1016/j.ynpai.2019.100039
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author Morrison, Gladys
Asiedu, Marina N.
Priebe, Jessica M.
Dunning, Jacqueline
Ghoreishi-Haack, Nayereh
Kroes, Roger A.
Bowers, M. Scott
Barth, Amanda L.
Cearley, Cassia N.
Moskal, Joseph R.
author_facet Morrison, Gladys
Asiedu, Marina N.
Priebe, Jessica M.
Dunning, Jacqueline
Ghoreishi-Haack, Nayereh
Kroes, Roger A.
Bowers, M. Scott
Barth, Amanda L.
Cearley, Cassia N.
Moskal, Joseph R.
author_sort Morrison, Gladys
collection PubMed
description Previous studies have shown that oral administration of the NMDAR modulator NYX-2925 alleviates pain in several animal models of neuropathic pain and this appears to be through mPFC, but not spinal, mediated mechanisms. While much is known about the impact of neuropathic pain on NMDAR-mediated signaling in the spinal cord, limited studies have focused on the brain. In the current study, we assess signaling changes associated with NMDAR-mediated plasticity in the mPFC and the impact of NYX-2925 administration on the normalization of these signaling changes. We found a decrease in activated Src levels in the mPFC of animals with chronic constriction injury (CCI) of the sciatic nerve. While Src mediated activation of NMDARs was also decreased in CCI animals, the main NMDAR phosphorylation site of CAMKII was not affected. This is in opposition to what has been found in the spinal cord, where both Src and CAMKII activation are increased. Oral administration of NYX-2925 restored levels of activated Src and Src phosphorylation sites on GluN2A and GluN2B in the mPFC, with no effect on activated CAMKII levels. The analgesic effect of NYX-2925 appears dependent on this restoration of Src activation in the mPFC, as co-administering Src activation inhibitors prevented the NYX-2925 analgesic effect. Overall, these data suggest that NMDAR-mediated signaling plays a key role in neuropathic pain, albeit in different directions in the spinal cord vs. the mPFC. Furthermore, the analgesic effect of NYX-2925 appears to involve a restoration of NMDAR-mediated signaling in the mPFC.
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spelling pubmed-69389542020-01-06 The NMDAR modulator NYX-2925 alleviates neuropathic pain via a Src-dependent mechanism in the mPFC Morrison, Gladys Asiedu, Marina N. Priebe, Jessica M. Dunning, Jacqueline Ghoreishi-Haack, Nayereh Kroes, Roger A. Bowers, M. Scott Barth, Amanda L. Cearley, Cassia N. Moskal, Joseph R. Neurobiol Pain Original Research Article Previous studies have shown that oral administration of the NMDAR modulator NYX-2925 alleviates pain in several animal models of neuropathic pain and this appears to be through mPFC, but not spinal, mediated mechanisms. While much is known about the impact of neuropathic pain on NMDAR-mediated signaling in the spinal cord, limited studies have focused on the brain. In the current study, we assess signaling changes associated with NMDAR-mediated plasticity in the mPFC and the impact of NYX-2925 administration on the normalization of these signaling changes. We found a decrease in activated Src levels in the mPFC of animals with chronic constriction injury (CCI) of the sciatic nerve. While Src mediated activation of NMDARs was also decreased in CCI animals, the main NMDAR phosphorylation site of CAMKII was not affected. This is in opposition to what has been found in the spinal cord, where both Src and CAMKII activation are increased. Oral administration of NYX-2925 restored levels of activated Src and Src phosphorylation sites on GluN2A and GluN2B in the mPFC, with no effect on activated CAMKII levels. The analgesic effect of NYX-2925 appears dependent on this restoration of Src activation in the mPFC, as co-administering Src activation inhibitors prevented the NYX-2925 analgesic effect. Overall, these data suggest that NMDAR-mediated signaling plays a key role in neuropathic pain, albeit in different directions in the spinal cord vs. the mPFC. Furthermore, the analgesic effect of NYX-2925 appears to involve a restoration of NMDAR-mediated signaling in the mPFC. Elsevier 2019-12-04 /pmc/articles/PMC6938954/ /pubmed/31909296 http://dx.doi.org/10.1016/j.ynpai.2019.100039 Text en © 2019 Aptinyx Inc http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research Article
Morrison, Gladys
Asiedu, Marina N.
Priebe, Jessica M.
Dunning, Jacqueline
Ghoreishi-Haack, Nayereh
Kroes, Roger A.
Bowers, M. Scott
Barth, Amanda L.
Cearley, Cassia N.
Moskal, Joseph R.
The NMDAR modulator NYX-2925 alleviates neuropathic pain via a Src-dependent mechanism in the mPFC
title The NMDAR modulator NYX-2925 alleviates neuropathic pain via a Src-dependent mechanism in the mPFC
title_full The NMDAR modulator NYX-2925 alleviates neuropathic pain via a Src-dependent mechanism in the mPFC
title_fullStr The NMDAR modulator NYX-2925 alleviates neuropathic pain via a Src-dependent mechanism in the mPFC
title_full_unstemmed The NMDAR modulator NYX-2925 alleviates neuropathic pain via a Src-dependent mechanism in the mPFC
title_short The NMDAR modulator NYX-2925 alleviates neuropathic pain via a Src-dependent mechanism in the mPFC
title_sort nmdar modulator nyx-2925 alleviates neuropathic pain via a src-dependent mechanism in the mpfc
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6938954/
https://www.ncbi.nlm.nih.gov/pubmed/31909296
http://dx.doi.org/10.1016/j.ynpai.2019.100039
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