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Identification of Spinal Inhibitory Interneurons Required for Attenuating Effect of Duloxetine on Neuropathic Allodynia-like Signs in Rats

Neuropathic pain is a chronic pain condition that occurs after nerve damage; allodynia, which refers to pain caused by generally innocuous stimuli, is a hallmark symptom. Although allodynia is often resistant to analgesics, the antidepressant duloxetine has been used as an effective therapeutic opti...

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Autores principales: Ishibashi, Tadayuki, Sueto, Daichi, Yoshikawa, Yu, Koga, Keisuke, Yamaura, Ken, Tsuda, Makoto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9777279/
https://www.ncbi.nlm.nih.gov/pubmed/36552814
http://dx.doi.org/10.3390/cells11244051
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author Ishibashi, Tadayuki
Sueto, Daichi
Yoshikawa, Yu
Koga, Keisuke
Yamaura, Ken
Tsuda, Makoto
author_facet Ishibashi, Tadayuki
Sueto, Daichi
Yoshikawa, Yu
Koga, Keisuke
Yamaura, Ken
Tsuda, Makoto
author_sort Ishibashi, Tadayuki
collection PubMed
description Neuropathic pain is a chronic pain condition that occurs after nerve damage; allodynia, which refers to pain caused by generally innocuous stimuli, is a hallmark symptom. Although allodynia is often resistant to analgesics, the antidepressant duloxetine has been used as an effective therapeutic option. Duloxetine increases spinal noradrenaline (NA) levels by inhibiting its transporter at NAergic terminals in the spinal dorsal horn (SDH), which has been proposed to contribute to its pain-relieving effect. However, the mechanism through which duloxetine suppresses neuropathic allodynia remains unclear. Here, we identified an SDH inhibitory interneuron subset (captured by adeno-associated viral (AAV) vectors incorporating a rat neuropeptide Y promoter; AAV-NpyP(+) neurons) that is mostly depolarized by NA. Furthermore, this excitatory effect was suppressed by pharmacological blockade or genetic knockdown of α(1B)-adrenoceptors (ARs) in AAV-NpyP(+) SDH neurons. We found that duloxetine suppressed Aβ fiber-mediated allodynia-like behavioral responses after nerve injury and that this effect was not observed in AAV-NpyP(+) SDH neuron-selective α(1B)-AR-knockdown. These results indicate that α(1B)-AR and AAV-NpyP(+) neurons are critical targets for spinal NA and are necessary for the therapeutic effect of duloxetine on neuropathic pain, which can support the development of novel analgesics.
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spelling pubmed-97772792022-12-23 Identification of Spinal Inhibitory Interneurons Required for Attenuating Effect of Duloxetine on Neuropathic Allodynia-like Signs in Rats Ishibashi, Tadayuki Sueto, Daichi Yoshikawa, Yu Koga, Keisuke Yamaura, Ken Tsuda, Makoto Cells Article Neuropathic pain is a chronic pain condition that occurs after nerve damage; allodynia, which refers to pain caused by generally innocuous stimuli, is a hallmark symptom. Although allodynia is often resistant to analgesics, the antidepressant duloxetine has been used as an effective therapeutic option. Duloxetine increases spinal noradrenaline (NA) levels by inhibiting its transporter at NAergic terminals in the spinal dorsal horn (SDH), which has been proposed to contribute to its pain-relieving effect. However, the mechanism through which duloxetine suppresses neuropathic allodynia remains unclear. Here, we identified an SDH inhibitory interneuron subset (captured by adeno-associated viral (AAV) vectors incorporating a rat neuropeptide Y promoter; AAV-NpyP(+) neurons) that is mostly depolarized by NA. Furthermore, this excitatory effect was suppressed by pharmacological blockade or genetic knockdown of α(1B)-adrenoceptors (ARs) in AAV-NpyP(+) SDH neurons. We found that duloxetine suppressed Aβ fiber-mediated allodynia-like behavioral responses after nerve injury and that this effect was not observed in AAV-NpyP(+) SDH neuron-selective α(1B)-AR-knockdown. These results indicate that α(1B)-AR and AAV-NpyP(+) neurons are critical targets for spinal NA and are necessary for the therapeutic effect of duloxetine on neuropathic pain, which can support the development of novel analgesics. MDPI 2022-12-14 /pmc/articles/PMC9777279/ /pubmed/36552814 http://dx.doi.org/10.3390/cells11244051 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ishibashi, Tadayuki
Sueto, Daichi
Yoshikawa, Yu
Koga, Keisuke
Yamaura, Ken
Tsuda, Makoto
Identification of Spinal Inhibitory Interneurons Required for Attenuating Effect of Duloxetine on Neuropathic Allodynia-like Signs in Rats
title Identification of Spinal Inhibitory Interneurons Required for Attenuating Effect of Duloxetine on Neuropathic Allodynia-like Signs in Rats
title_full Identification of Spinal Inhibitory Interneurons Required for Attenuating Effect of Duloxetine on Neuropathic Allodynia-like Signs in Rats
title_fullStr Identification of Spinal Inhibitory Interneurons Required for Attenuating Effect of Duloxetine on Neuropathic Allodynia-like Signs in Rats
title_full_unstemmed Identification of Spinal Inhibitory Interneurons Required for Attenuating Effect of Duloxetine on Neuropathic Allodynia-like Signs in Rats
title_short Identification of Spinal Inhibitory Interneurons Required for Attenuating Effect of Duloxetine on Neuropathic Allodynia-like Signs in Rats
title_sort identification of spinal inhibitory interneurons required for attenuating effect of duloxetine on neuropathic allodynia-like signs in rats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9777279/
https://www.ncbi.nlm.nih.gov/pubmed/36552814
http://dx.doi.org/10.3390/cells11244051
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