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Activation and expression of μ-calpain in dorsal root contributes to RTX-induced mechanical allodynia

BACKGROUND: Calpain is a calcium-dependent cysteine protease, and inhibition of calpain by pre-treatment with MDL28170 attenuated the rat mechanical allodynia in a variety of pain models. Postherpetic neuralgia (Shingles) is a neuropathic pain conditioned with the presence of profound mechanical all...

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Autores principales: Yuan, Xiao-Cui, Wu, Cai-Hua, Gao, Fang, Li, Hong-Ping, Xiang, Hong-Chun, Zhu, He, Pan, Xiao-Li, Lin, Li-Xue, Liu, Yan-Shen, Yu, Wei, Tian, Bo, Meng, Xian-Fang, Li, Man
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5548329/
https://www.ncbi.nlm.nih.gov/pubmed/28714350
http://dx.doi.org/10.1177/1744806917719169
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author Yuan, Xiao-Cui
Wu, Cai-Hua
Gao, Fang
Li, Hong-Ping
Xiang, Hong-Chun
Zhu, He
Pan, Xiao-Li
Lin, Li-Xue
Liu, Yan-Shen
Yu, Wei
Tian, Bo
Meng, Xian-Fang
Li, Man
author_facet Yuan, Xiao-Cui
Wu, Cai-Hua
Gao, Fang
Li, Hong-Ping
Xiang, Hong-Chun
Zhu, He
Pan, Xiao-Li
Lin, Li-Xue
Liu, Yan-Shen
Yu, Wei
Tian, Bo
Meng, Xian-Fang
Li, Man
author_sort Yuan, Xiao-Cui
collection PubMed
description BACKGROUND: Calpain is a calcium-dependent cysteine protease, and inhibition of calpain by pre-treatment with MDL28170 attenuated the rat mechanical allodynia in a variety of pain models. Postherpetic neuralgia (Shingles) is a neuropathic pain conditioned with the presence of profound mechanical allodynia. Systemic injection of resiniferatoxin can reproduce the clinical symptoms of postherpetic neuralgia. In this study, we determined to study whether activation of calpain contributes to cleave the myelin basic protein of dorsal root and is involved in resiniferatoxin-induced mechanical allodynia of postherpetic neuralgia animal model. RESULTS: Resiniferatoxin up-regulated the expression and activation of µ-calpain in dorsal root. The expression of µ-calpain was located in Schwann cell of dorsal root, and resiniferatoxin increased the expression of µ-calpain in Schwann cell in L4–L6 dorsal root at six weeks after injection. Resiniferatoxin also induced myelin basic protein degradation in L4–L6 dorsal root at six weeks after injection. Moreover, intraperitoneal injection of calpain inhibitor MDL28170 prevented the degradation of myelin basic protein and then reduced the sprouting of myelinated afferent fibers into spinal lamina II, thus relieving resiniferatoxin-induced mechanical allodynia. CONCLUSIONS: Up-regulation and activation of µ-calpain located in Schwann cell may be the mechanism underlying resiniferatoxin-mediated proteolysis of myelin basic protein in dorsal root. Calpain inhibitor MDL28170 prevents resiniferatoxin-induced sprouting of myelinated afferent fibers and mechanical allodynia through inhibition of degradation of the myelin basic protein in dorsal root. Our results indicate that inhibition of pathological µ-calpain activation may present an interesting novel drug target in the treatment of postherpetic neuralgia.
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spelling pubmed-55483292017-08-24 Activation and expression of μ-calpain in dorsal root contributes to RTX-induced mechanical allodynia Yuan, Xiao-Cui Wu, Cai-Hua Gao, Fang Li, Hong-Ping Xiang, Hong-Chun Zhu, He Pan, Xiao-Li Lin, Li-Xue Liu, Yan-Shen Yu, Wei Tian, Bo Meng, Xian-Fang Li, Man Mol Pain Research Article BACKGROUND: Calpain is a calcium-dependent cysteine protease, and inhibition of calpain by pre-treatment with MDL28170 attenuated the rat mechanical allodynia in a variety of pain models. Postherpetic neuralgia (Shingles) is a neuropathic pain conditioned with the presence of profound mechanical allodynia. Systemic injection of resiniferatoxin can reproduce the clinical symptoms of postherpetic neuralgia. In this study, we determined to study whether activation of calpain contributes to cleave the myelin basic protein of dorsal root and is involved in resiniferatoxin-induced mechanical allodynia of postherpetic neuralgia animal model. RESULTS: Resiniferatoxin up-regulated the expression and activation of µ-calpain in dorsal root. The expression of µ-calpain was located in Schwann cell of dorsal root, and resiniferatoxin increased the expression of µ-calpain in Schwann cell in L4–L6 dorsal root at six weeks after injection. Resiniferatoxin also induced myelin basic protein degradation in L4–L6 dorsal root at six weeks after injection. Moreover, intraperitoneal injection of calpain inhibitor MDL28170 prevented the degradation of myelin basic protein and then reduced the sprouting of myelinated afferent fibers into spinal lamina II, thus relieving resiniferatoxin-induced mechanical allodynia. CONCLUSIONS: Up-regulation and activation of µ-calpain located in Schwann cell may be the mechanism underlying resiniferatoxin-mediated proteolysis of myelin basic protein in dorsal root. Calpain inhibitor MDL28170 prevents resiniferatoxin-induced sprouting of myelinated afferent fibers and mechanical allodynia through inhibition of degradation of the myelin basic protein in dorsal root. Our results indicate that inhibition of pathological µ-calpain activation may present an interesting novel drug target in the treatment of postherpetic neuralgia. SAGE Publications 2017-07-17 /pmc/articles/PMC5548329/ /pubmed/28714350 http://dx.doi.org/10.1177/1744806917719169 Text en © The Author(s) 2017 http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (http://www.creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Research Article
Yuan, Xiao-Cui
Wu, Cai-Hua
Gao, Fang
Li, Hong-Ping
Xiang, Hong-Chun
Zhu, He
Pan, Xiao-Li
Lin, Li-Xue
Liu, Yan-Shen
Yu, Wei
Tian, Bo
Meng, Xian-Fang
Li, Man
Activation and expression of μ-calpain in dorsal root contributes to RTX-induced mechanical allodynia
title Activation and expression of μ-calpain in dorsal root contributes to RTX-induced mechanical allodynia
title_full Activation and expression of μ-calpain in dorsal root contributes to RTX-induced mechanical allodynia
title_fullStr Activation and expression of μ-calpain in dorsal root contributes to RTX-induced mechanical allodynia
title_full_unstemmed Activation and expression of μ-calpain in dorsal root contributes to RTX-induced mechanical allodynia
title_short Activation and expression of μ-calpain in dorsal root contributes to RTX-induced mechanical allodynia
title_sort activation and expression of μ-calpain in dorsal root contributes to rtx-induced mechanical allodynia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5548329/
https://www.ncbi.nlm.nih.gov/pubmed/28714350
http://dx.doi.org/10.1177/1744806917719169
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