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在脊髓损伤模型中,周围神经去神经支配参与异位骨化。

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

作者信息

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

机构信息

Spine Division Orthopaedic Surgery Department, Hôpital Européen Georges Pompidou, APHP, Paris, France.

University of Versailles Saint Quentin en Yvelines, U1179 INSERM, UFR des Sciences de la Santé - Simone Veil, Montigny-le-Bretonneux, France.

出版信息

PLoS One. 2017 Aug 30;12(8):e0182454. doi: 10.1371/journal.pone.0182454. eCollection 2017.

Abstract

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.

摘要

我们之前报道了一种新的获得性神经源性异位骨化(NHO)小鼠模型的建立,该模型结合了脊髓横断损伤(SCI)和化学性肌肉损伤。中枢神经损伤后异位骨化的病理机制仍有待阐明。在本研究中,我们首先假设在NHO小鼠模型中,外周神经系统(PNS)可能将来自损伤脊髓的病理信号传递至肌肉。其次,我们试图确定SCI是否会导致肌肉内骨形态发生蛋白2(BMP2)信号通路的改变。本实验方案纳入了21只C57Bl6小鼠。在腘绳肌双侧注射心肌毒素(CTX)并结合两阶段手术操作,即胸段SCI与单侧外周神经去神经支配相结合。术后28天使用微型计算机断层扫描成像技术测量异位骨化的体积(骨体积,BV),并进行组织学分析以确认肌肉内骨生成。使用Wilcoxon符号秩检验对每只动物的右后肢和左后肢进行体积比较。进行定量聚合酶链反应(qPCR)以探究肌肉内BMP2、Alk3和Id1的表达。19只小鼠在完成SCI和外周神经去神经支配手术后存活。当在手术后立即进行CTX注射时(n = 7),28天后在所有动物中均检测到双侧异位骨化。微型计算机断层扫描测量显示,与对侧相比,去神经支配爪中的BV显著增加(1.47 mm3±0.5)(对侧为0.56 mm3±0.4),p = 0.03。当在假SCI手术后进行外周神经去神经支配和CTX注射时(n = 6),28天时三只小鼠出现双侧异位骨化。定量PCR分析显示,与对照小鼠(假SCI)相比,SCI后肌肉内BMP2表达无变化。在外周神经去神经支配可以可靠地添加到NHO小鼠模型的脊髓横断损伤中。这种新的实验设计证实,中枢或外周神经系统损伤诱导的神经炎症机制在触发异位骨化中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e815/5576715/89793404498b/pone.0182454.g001.jpg

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