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Peripheral denervation participates in heterotopic ossification in a spinal cord injury model

We previously reported the development of a new acquired neurogenic HO (NHO) mouse model, combining spinal cord transection (SCI) and chemical muscle injury. Pathological mechanisms responsible for ectopic osteogenesis after central neurological damage are still to be elucidated. In this study, we f...

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Autores principales: Debaud, Charlotte, Salga, Marjorie, Begot, Laurent, Holy, Xavier, Chedik, Malha, de l’Escalopier, Nicolas, Torossian, Fréderic, Levesque, Jean-Pierre, Lataillade, Jean-Jacques, Le Bousse-Kerdilès, Marie-Caroline, Genêt, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5576715/
https://www.ncbi.nlm.nih.gov/pubmed/28854256
http://dx.doi.org/10.1371/journal.pone.0182454
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author Debaud, Charlotte
Salga, Marjorie
Begot, Laurent
Holy, Xavier
Chedik, Malha
de l’Escalopier, Nicolas
Torossian, Fréderic
Levesque, Jean-Pierre
Lataillade, Jean-Jacques
Le Bousse-Kerdilès, Marie-Caroline
Genêt, François
author_facet Debaud, Charlotte
Salga, Marjorie
Begot, Laurent
Holy, Xavier
Chedik, Malha
de l’Escalopier, Nicolas
Torossian, Fréderic
Levesque, Jean-Pierre
Lataillade, Jean-Jacques
Le Bousse-Kerdilès, Marie-Caroline
Genêt, François
author_sort Debaud, Charlotte
collection PubMed
description We previously reported the development of a new acquired neurogenic HO (NHO) mouse model, combining spinal cord transection (SCI) and chemical muscle injury. Pathological mechanisms responsible for ectopic osteogenesis after central neurological damage are still to be elucidated. In this study, we first hypothesized that peripheral nervous system (PNS) might convey pathological signals from injured spinal cord to muscles in NHO mouse model. Secondly, we sought to determine whether SCI could lead to intramuscular modifications of BMP2 signaling pathways. Twenty one C57Bl6 mice were included in this protocol. Bilateral cardiotoxin (CTX) injection in hamstring muscles was associated with a two-stage surgical procedure, combining thoracic SCI with unilateral peripheral denervation. Volumes of HO (Bone Volume, BV) were measured 28 days after surgery using micro-computed tomography imaging techniques and histological analyses were made to confirm intramuscular osteogenesis. Volume comparisons were conducted between right and left hind limb of each animal, using a Wilcoxon signed rank test. Quantitative polymerase chain reaction (qPCR) was performed to explore intra muscular expression of BMP2, Alk3 and Id1. Nineteen mice survive the complete SCI and peripheral denervation procedure. When CTX injections were done right after surgery (n = 7), bilateral HO were detected in all animals after 28 days. Micro-CT measurements showed significantly increased BV in denervated paws (1.47 mm3 +/- 0.5) compared to contralateral sides (0.56 mm3 +/-0.4), p = 0.03. When peripheral denervation and CTX injections were performed after sham SCI surgery (n = 6), bilateral HO were present in three mice at day 28. Quantitative PCR analyses showed no changes in intra muscular BMP2 expression after SCI as compared to control mice (shamSCI). Peripheral denervation can be reliably added to spinal cord transection in NHO mouse model. This new experimental design confirms that neuro inflammatory mechanisms induced by central or peripheral nervous system injury plays a key role in triggering ectopic osteogenesis.
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spelling pubmed-55767152017-09-15 Peripheral denervation participates in heterotopic ossification in a spinal cord injury model Debaud, Charlotte Salga, Marjorie Begot, Laurent Holy, Xavier Chedik, Malha de l’Escalopier, Nicolas Torossian, Fréderic Levesque, Jean-Pierre Lataillade, Jean-Jacques Le Bousse-Kerdilès, Marie-Caroline Genêt, François PLoS One Research Article We previously reported the development of a new acquired neurogenic HO (NHO) mouse model, combining spinal cord transection (SCI) and chemical muscle injury. Pathological mechanisms responsible for ectopic osteogenesis after central neurological damage are still to be elucidated. In this study, we first hypothesized that peripheral nervous system (PNS) might convey pathological signals from injured spinal cord to muscles in NHO mouse model. Secondly, we sought to determine whether SCI could lead to intramuscular modifications of BMP2 signaling pathways. Twenty one C57Bl6 mice were included in this protocol. Bilateral cardiotoxin (CTX) injection in hamstring muscles was associated with a two-stage surgical procedure, combining thoracic SCI with unilateral peripheral denervation. Volumes of HO (Bone Volume, BV) were measured 28 days after surgery using micro-computed tomography imaging techniques and histological analyses were made to confirm intramuscular osteogenesis. Volume comparisons were conducted between right and left hind limb of each animal, using a Wilcoxon signed rank test. Quantitative polymerase chain reaction (qPCR) was performed to explore intra muscular expression of BMP2, Alk3 and Id1. Nineteen mice survive the complete SCI and peripheral denervation procedure. When CTX injections were done right after surgery (n = 7), bilateral HO were detected in all animals after 28 days. Micro-CT measurements showed significantly increased BV in denervated paws (1.47 mm3 +/- 0.5) compared to contralateral sides (0.56 mm3 +/-0.4), p = 0.03. When peripheral denervation and CTX injections were performed after sham SCI surgery (n = 6), bilateral HO were present in three mice at day 28. Quantitative PCR analyses showed no changes in intra muscular BMP2 expression after SCI as compared to control mice (shamSCI). Peripheral denervation can be reliably added to spinal cord transection in NHO mouse model. This new experimental design confirms that neuro inflammatory mechanisms induced by central or peripheral nervous system injury plays a key role in triggering ectopic osteogenesis. Public Library of Science 2017-08-30 /pmc/articles/PMC5576715/ /pubmed/28854256 http://dx.doi.org/10.1371/journal.pone.0182454 Text en © 2017 Debaud 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
Debaud, Charlotte
Salga, Marjorie
Begot, Laurent
Holy, Xavier
Chedik, Malha
de l’Escalopier, Nicolas
Torossian, Fréderic
Levesque, Jean-Pierre
Lataillade, Jean-Jacques
Le Bousse-Kerdilès, Marie-Caroline
Genêt, François
Peripheral denervation participates in heterotopic ossification in a spinal cord injury model
title Peripheral denervation participates in heterotopic ossification in a spinal cord injury model
title_full Peripheral denervation participates in heterotopic ossification in a spinal cord injury model
title_fullStr Peripheral denervation participates in heterotopic ossification in a spinal cord injury model
title_full_unstemmed Peripheral denervation participates in heterotopic ossification in a spinal cord injury model
title_short Peripheral denervation participates in heterotopic ossification in a spinal cord injury model
title_sort peripheral denervation participates in heterotopic ossification in a spinal cord injury model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5576715/
https://www.ncbi.nlm.nih.gov/pubmed/28854256
http://dx.doi.org/10.1371/journal.pone.0182454
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