Cargando…
Effect of Gabapentin in a Neuropathic Pain Model in Mice Overexpressing Human Wild-Type or Human Mutated Torsin A
Background: DYT1 dystonia is the most common form of early-onset inherited dystonia, which is caused by mutation of torsin A (TA) belonging to the “ATPases associated with a variety of cellular activities” (AAA + ATPase). Dystonia is often accompanied by pain, and neuropathic pain can be associated...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7826569/ https://www.ncbi.nlm.nih.gov/pubmed/33445430 http://dx.doi.org/10.3390/life11010041 |
_version_ | 1783640551932821504 |
---|---|
author | Scuteri, Damiana Rombolà, Laura Natoli, Silvia Pisani, Antonio Bonsi, Paola Watanabe, Chizuko Bagetta, Giacinto Tonin, Paolo Corasaniti, Maria Tiziana |
author_facet | Scuteri, Damiana Rombolà, Laura Natoli, Silvia Pisani, Antonio Bonsi, Paola Watanabe, Chizuko Bagetta, Giacinto Tonin, Paolo Corasaniti, Maria Tiziana |
author_sort | Scuteri, Damiana |
collection | PubMed |
description | Background: DYT1 dystonia is the most common form of early-onset inherited dystonia, which is caused by mutation of torsin A (TA) belonging to the “ATPases associated with a variety of cellular activities” (AAA + ATPase). Dystonia is often accompanied by pain, and neuropathic pain can be associated to peripherally induced movement disorder and dystonia. However, no evidence exists on the effect of gabapentin in mice subjected to neuropathic pain model overexpressing human normal or mutated TA. Methods: Mice subjected to L5 spinal nerve ligation (SNL) develop mechanical allodynia and upregulation of the α2δ-1 L-type calcium channel subunit, forming a validated experimental model of neuropathic pain. Under these experimental conditions, TA is expressed in dorsal horn neurons and astrocytes and colocalizes with α2δ-1. Similar to this subunit, TA is overexpressed in dorsal horn 7 days after SNL. This model has been used to investigate (1) basal mechanical sensitivity; (2) neuropathic pain phases; and (3) the effect of gabapentin, an α2δ-1 ligand used against neuropathic pain, in non-transgenic (NT) C57BL/6 mice and in mice overexpressing human wild-type (hWT) or mutant (hMT) TA. Results: In comparison to non-transgenic mice, the threshold for mechanical sensitivity in hWT or hMT does not differ (Kruskal–Wallis test = 1.478; p = 0.4777, although, in the latter animals, neuropathic pain recovery phase is delayed. Interestingly, gabapentin (100 mg/Kg) reduces allodynia at its peak (occurring between post-operative day 7 and day 10) but not in the phase of recovery. Conclusions: These data lend support to the investigation on the role of TA in the molecular machinery engaged during neuropathic pain. |
format | Online Article Text |
id | pubmed-7826569 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-78265692021-01-25 Effect of Gabapentin in a Neuropathic Pain Model in Mice Overexpressing Human Wild-Type or Human Mutated Torsin A Scuteri, Damiana Rombolà, Laura Natoli, Silvia Pisani, Antonio Bonsi, Paola Watanabe, Chizuko Bagetta, Giacinto Tonin, Paolo Corasaniti, Maria Tiziana Life (Basel) Communication Background: DYT1 dystonia is the most common form of early-onset inherited dystonia, which is caused by mutation of torsin A (TA) belonging to the “ATPases associated with a variety of cellular activities” (AAA + ATPase). Dystonia is often accompanied by pain, and neuropathic pain can be associated to peripherally induced movement disorder and dystonia. However, no evidence exists on the effect of gabapentin in mice subjected to neuropathic pain model overexpressing human normal or mutated TA. Methods: Mice subjected to L5 spinal nerve ligation (SNL) develop mechanical allodynia and upregulation of the α2δ-1 L-type calcium channel subunit, forming a validated experimental model of neuropathic pain. Under these experimental conditions, TA is expressed in dorsal horn neurons and astrocytes and colocalizes with α2δ-1. Similar to this subunit, TA is overexpressed in dorsal horn 7 days after SNL. This model has been used to investigate (1) basal mechanical sensitivity; (2) neuropathic pain phases; and (3) the effect of gabapentin, an α2δ-1 ligand used against neuropathic pain, in non-transgenic (NT) C57BL/6 mice and in mice overexpressing human wild-type (hWT) or mutant (hMT) TA. Results: In comparison to non-transgenic mice, the threshold for mechanical sensitivity in hWT or hMT does not differ (Kruskal–Wallis test = 1.478; p = 0.4777, although, in the latter animals, neuropathic pain recovery phase is delayed. Interestingly, gabapentin (100 mg/Kg) reduces allodynia at its peak (occurring between post-operative day 7 and day 10) but not in the phase of recovery. Conclusions: These data lend support to the investigation on the role of TA in the molecular machinery engaged during neuropathic pain. MDPI 2021-01-12 /pmc/articles/PMC7826569/ /pubmed/33445430 http://dx.doi.org/10.3390/life11010041 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Communication Scuteri, Damiana Rombolà, Laura Natoli, Silvia Pisani, Antonio Bonsi, Paola Watanabe, Chizuko Bagetta, Giacinto Tonin, Paolo Corasaniti, Maria Tiziana Effect of Gabapentin in a Neuropathic Pain Model in Mice Overexpressing Human Wild-Type or Human Mutated Torsin A |
title | Effect of Gabapentin in a Neuropathic Pain Model in Mice Overexpressing Human Wild-Type or Human Mutated Torsin A |
title_full | Effect of Gabapentin in a Neuropathic Pain Model in Mice Overexpressing Human Wild-Type or Human Mutated Torsin A |
title_fullStr | Effect of Gabapentin in a Neuropathic Pain Model in Mice Overexpressing Human Wild-Type or Human Mutated Torsin A |
title_full_unstemmed | Effect of Gabapentin in a Neuropathic Pain Model in Mice Overexpressing Human Wild-Type or Human Mutated Torsin A |
title_short | Effect of Gabapentin in a Neuropathic Pain Model in Mice Overexpressing Human Wild-Type or Human Mutated Torsin A |
title_sort | effect of gabapentin in a neuropathic pain model in mice overexpressing human wild-type or human mutated torsin a |
topic | Communication |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7826569/ https://www.ncbi.nlm.nih.gov/pubmed/33445430 http://dx.doi.org/10.3390/life11010041 |
work_keys_str_mv | AT scuteridamiana effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina AT rombolalaura effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina AT natolisilvia effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina AT pisaniantonio effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina AT bonsipaola effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina AT watanabechizuko effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina AT bagettagiacinto effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina AT toninpaolo effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina AT corasanitimariatiziana effectofgabapentininaneuropathicpainmodelinmiceoverexpressinghumanwildtypeorhumanmutatedtorsina |