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Duloxetine Inhibits Microglial P2X4 Receptor Function and Alleviates Neuropathic Pain after Peripheral Nerve Injury

P2X4 receptors (P2X4R) are a family of ATP-gated non-selective cation channels. We previously demonstrated that activation of P2X4R in spinal microglia is crucial for neuropathic pain, a highly debilitating chronic pain condition, suggesting that P2X4R is a potential therapeutic target for treating...

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Autores principales: Yamashita, Tomohiro, Yamamoto, Shota, Zhang, Jiaming, Kometani, Miho, Tomiyama, Daisuke, Kohno, Keita, Tozaki-Saitoh, Hidetoshi, Inoue, Kazuhide, Tsuda, Makoto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5074465/
https://www.ncbi.nlm.nih.gov/pubmed/27768754
http://dx.doi.org/10.1371/journal.pone.0165189
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author Yamashita, Tomohiro
Yamamoto, Shota
Zhang, Jiaming
Kometani, Miho
Tomiyama, Daisuke
Kohno, Keita
Tozaki-Saitoh, Hidetoshi
Inoue, Kazuhide
Tsuda, Makoto
author_facet Yamashita, Tomohiro
Yamamoto, Shota
Zhang, Jiaming
Kometani, Miho
Tomiyama, Daisuke
Kohno, Keita
Tozaki-Saitoh, Hidetoshi
Inoue, Kazuhide
Tsuda, Makoto
author_sort Yamashita, Tomohiro
collection PubMed
description P2X4 receptors (P2X4R) are a family of ATP-gated non-selective cation channels. We previously demonstrated that activation of P2X4R in spinal microglia is crucial for neuropathic pain, a highly debilitating chronic pain condition, suggesting that P2X4R is a potential therapeutic target for treating neuropathic pain. Thus, the identification of a compound that has a potent inhibitory effect on P2X4R is an important clinical challenge. In the present study, we screened a chemical library of clinically approved drugs and show for the first time that duloxetine, a serotonin and noradrenaline reuptake inhibitor, has an inhibitory effect on rodent and human P2X4R. In primary cultured microglial cells, duloxetine also inhibited P2X4R-, but not P2X7R-, mediated responses. Moreover, intrathecal administration of duloxetine in a model of neuropathic pain produced a reversal of nerve injury-induced mechanical allodynia, a cardinal symptom of neuropathic pain. In rats that were pretreated with a serotonin-depleting agent and a noradrenaline neurotoxin, the antiallodynic effect of duloxetine was reduced, but still remained. Based on these results, we suggest that, in addition to duloxetine’s primary inhibitory action on serotonin and noradrenaline transporters, an inhibitory effect on P2X4R may be involved at least in part in an antiallodynic effect of intrathecal duloxetine in a model of neuropathic pain.
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spelling pubmed-50744652016-11-04 Duloxetine Inhibits Microglial P2X4 Receptor Function and Alleviates Neuropathic Pain after Peripheral Nerve Injury Yamashita, Tomohiro Yamamoto, Shota Zhang, Jiaming Kometani, Miho Tomiyama, Daisuke Kohno, Keita Tozaki-Saitoh, Hidetoshi Inoue, Kazuhide Tsuda, Makoto PLoS One Research Article P2X4 receptors (P2X4R) are a family of ATP-gated non-selective cation channels. We previously demonstrated that activation of P2X4R in spinal microglia is crucial for neuropathic pain, a highly debilitating chronic pain condition, suggesting that P2X4R is a potential therapeutic target for treating neuropathic pain. Thus, the identification of a compound that has a potent inhibitory effect on P2X4R is an important clinical challenge. In the present study, we screened a chemical library of clinically approved drugs and show for the first time that duloxetine, a serotonin and noradrenaline reuptake inhibitor, has an inhibitory effect on rodent and human P2X4R. In primary cultured microglial cells, duloxetine also inhibited P2X4R-, but not P2X7R-, mediated responses. Moreover, intrathecal administration of duloxetine in a model of neuropathic pain produced a reversal of nerve injury-induced mechanical allodynia, a cardinal symptom of neuropathic pain. In rats that were pretreated with a serotonin-depleting agent and a noradrenaline neurotoxin, the antiallodynic effect of duloxetine was reduced, but still remained. Based on these results, we suggest that, in addition to duloxetine’s primary inhibitory action on serotonin and noradrenaline transporters, an inhibitory effect on P2X4R may be involved at least in part in an antiallodynic effect of intrathecal duloxetine in a model of neuropathic pain. Public Library of Science 2016-10-21 /pmc/articles/PMC5074465/ /pubmed/27768754 http://dx.doi.org/10.1371/journal.pone.0165189 Text en © 2016 Yamashita et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yamashita, Tomohiro
Yamamoto, Shota
Zhang, Jiaming
Kometani, Miho
Tomiyama, Daisuke
Kohno, Keita
Tozaki-Saitoh, Hidetoshi
Inoue, Kazuhide
Tsuda, Makoto
Duloxetine Inhibits Microglial P2X4 Receptor Function and Alleviates Neuropathic Pain after Peripheral Nerve Injury
title Duloxetine Inhibits Microglial P2X4 Receptor Function and Alleviates Neuropathic Pain after Peripheral Nerve Injury
title_full Duloxetine Inhibits Microglial P2X4 Receptor Function and Alleviates Neuropathic Pain after Peripheral Nerve Injury
title_fullStr Duloxetine Inhibits Microglial P2X4 Receptor Function and Alleviates Neuropathic Pain after Peripheral Nerve Injury
title_full_unstemmed Duloxetine Inhibits Microglial P2X4 Receptor Function and Alleviates Neuropathic Pain after Peripheral Nerve Injury
title_short Duloxetine Inhibits Microglial P2X4 Receptor Function and Alleviates Neuropathic Pain after Peripheral Nerve Injury
title_sort duloxetine inhibits microglial p2x4 receptor function and alleviates neuropathic pain after peripheral nerve injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5074465/
https://www.ncbi.nlm.nih.gov/pubmed/27768754
http://dx.doi.org/10.1371/journal.pone.0165189
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