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A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain

Accumulating evidence indicates that purinergic P2X4 receptors (P2X4R: cation channels activated by extracellular ATP) expressed in spinal microglia are crucial for pathological chronic pain caused by nerve damage, suggesting a potential target for drug discovery. We identified NP-1815-PX (5-[3-(5-t...

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Autores principales: Matsumura, Yuta, Yamashita, Tomohiro, Sasaki, Atsushi, Nakata, Eriko, Kohno, Keita, Masuda, Takahiro, Tozaki-Saitoh, Hidetoshi, Imai, Toshiyasu, Kuraishi, Yasushi, Tsuda, Makoto, Inoue, Kazuhide
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5006034/
https://www.ncbi.nlm.nih.gov/pubmed/27576299
http://dx.doi.org/10.1038/srep32461
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author Matsumura, Yuta
Yamashita, Tomohiro
Sasaki, Atsushi
Nakata, Eriko
Kohno, Keita
Masuda, Takahiro
Tozaki-Saitoh, Hidetoshi
Imai, Toshiyasu
Kuraishi, Yasushi
Tsuda, Makoto
Inoue, Kazuhide
author_facet Matsumura, Yuta
Yamashita, Tomohiro
Sasaki, Atsushi
Nakata, Eriko
Kohno, Keita
Masuda, Takahiro
Tozaki-Saitoh, Hidetoshi
Imai, Toshiyasu
Kuraishi, Yasushi
Tsuda, Makoto
Inoue, Kazuhide
author_sort Matsumura, Yuta
collection PubMed
description Accumulating evidence indicates that purinergic P2X4 receptors (P2X4R: cation channels activated by extracellular ATP) expressed in spinal microglia are crucial for pathological chronic pain caused by nerve damage, suggesting a potential target for drug discovery. We identified NP-1815-PX (5-[3-(5-thioxo-4H-[1,2,4]oxadiazol-3-yl)phenyl]-1H-naphtho[1, 2-b][1,4]diazepine-2,4(3H,5H)-dione) as a novel antagonist selective for P2X4R with high potency and selectivity compared with other P2XR subtypes. In in vivo assay for acute and chronic pain, intrathecal administration of NP-1815-PX produced an anti-allodynic effect in mice with traumatic nerve damage without affecting acute nociceptive pain and motor function (although its oral administration did not produce the effect). Furthermore, in a mouse model of herpetic pain, P2X4R upregulation in the spinal cord exclusively occurred in microglia, and intrathecal NP-1815-PX suppressed induction of mechanical allodynia. This model also showed K(+)/Cl(−) cotransporter 2 (KCC2) downregulation, which is implicated in dorsal horn neuron hyperexcitability; this downregulation was restored by intrathecal treatment with NP-1815-PX or by interfering with brain-derived neurotrophic factor (BDNF) signaling, a P2X4R-activated microglial factor implicated in KCC2 downregulation. Taken together, the newly developed P2X4R antagonist NP-1815-PX produces anti-allodynic effects in chronic pain models without altering acute pain sensitivity, suggesting that microglial P2X4R could be an attractive target for treating chronic pain.
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spelling pubmed-50060342016-09-07 A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain Matsumura, Yuta Yamashita, Tomohiro Sasaki, Atsushi Nakata, Eriko Kohno, Keita Masuda, Takahiro Tozaki-Saitoh, Hidetoshi Imai, Toshiyasu Kuraishi, Yasushi Tsuda, Makoto Inoue, Kazuhide Sci Rep Article Accumulating evidence indicates that purinergic P2X4 receptors (P2X4R: cation channels activated by extracellular ATP) expressed in spinal microglia are crucial for pathological chronic pain caused by nerve damage, suggesting a potential target for drug discovery. We identified NP-1815-PX (5-[3-(5-thioxo-4H-[1,2,4]oxadiazol-3-yl)phenyl]-1H-naphtho[1, 2-b][1,4]diazepine-2,4(3H,5H)-dione) as a novel antagonist selective for P2X4R with high potency and selectivity compared with other P2XR subtypes. In in vivo assay for acute and chronic pain, intrathecal administration of NP-1815-PX produced an anti-allodynic effect in mice with traumatic nerve damage without affecting acute nociceptive pain and motor function (although its oral administration did not produce the effect). Furthermore, in a mouse model of herpetic pain, P2X4R upregulation in the spinal cord exclusively occurred in microglia, and intrathecal NP-1815-PX suppressed induction of mechanical allodynia. This model also showed K(+)/Cl(−) cotransporter 2 (KCC2) downregulation, which is implicated in dorsal horn neuron hyperexcitability; this downregulation was restored by intrathecal treatment with NP-1815-PX or by interfering with brain-derived neurotrophic factor (BDNF) signaling, a P2X4R-activated microglial factor implicated in KCC2 downregulation. Taken together, the newly developed P2X4R antagonist NP-1815-PX produces anti-allodynic effects in chronic pain models without altering acute pain sensitivity, suggesting that microglial P2X4R could be an attractive target for treating chronic pain. Nature Publishing Group 2016-08-31 /pmc/articles/PMC5006034/ /pubmed/27576299 http://dx.doi.org/10.1038/srep32461 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Matsumura, Yuta
Yamashita, Tomohiro
Sasaki, Atsushi
Nakata, Eriko
Kohno, Keita
Masuda, Takahiro
Tozaki-Saitoh, Hidetoshi
Imai, Toshiyasu
Kuraishi, Yasushi
Tsuda, Makoto
Inoue, Kazuhide
A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain
title A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain
title_full A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain
title_fullStr A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain
title_full_unstemmed A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain
title_short A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain
title_sort novel p2x4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic pain
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5006034/
https://www.ncbi.nlm.nih.gov/pubmed/27576299
http://dx.doi.org/10.1038/srep32461
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