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肉毒杆菌毒素可诱导斑马鱼肌肉麻痹并抑制其骨骼再生。

Botulinum toxin induces muscle paralysis and inhibits bone regeneration in zebrafish.

作者信息

Recidoro Anthony M, Roof Amanda C, Schmitt Michael, Worton Leah E, Petrie Timothy, Strand Nicholas, Ausk Brandon J, Srinivasan Sundar, Moon Randall T, Gardiner Edith M, Kaminsky Werner, Bain Steven D, Allan Christopher H, Gross Ted S, Kwon Ronald Y

机构信息

Department of Orthopaedics and Sports Medicine, University of Washington, Seattle, WA, USA.

出版信息

J Bone Miner Res. 2014 Nov;29(11):2346-56. doi: 10.1002/jbmr.2274.

Abstract

Intramuscular administration of Botulinum toxin (BTx) has been associated with impaired osteogenesis in diverse conditions of bone formation (eg, development, growth, and healing), yet the mechanisms of neuromuscular-bone crosstalk underlying these deficits have yet to be identified. Motivated by the emerging utility of zebrafish (Danio rerio) as a rapid, genetically tractable, and optically transparent model for human pathologies (as well as the potential to interrogate neuromuscular-mediated bone disorders in a simple model that bridges in vitro and more complex in vivo model systems), in this study, we developed a model of BTx-induced muscle paralysis in adult zebrafish, and we examined its effects on intramembranous ossification during tail fin regeneration. BTx administration induced rapid muscle paralysis in adult zebrafish in a manner that was dose-dependent, transient, and focal, mirroring the paralytic phenotype observed in animal and human studies. During fin regeneration, BTx impaired continued bone ray outgrowth, morphology, and patterning, indicating defects in early osteogenesis. Further, BTx significantly decreased mineralizing activity and crystalline mineral accumulation, suggesting delayed late-stage osteoblast differentiation and/or altered secondary bone apposition. Bone ray transection proximal to the amputation site focally inhibited bone outgrowth in the affected ray, implicating intra- and/or inter-ray nerves in this process. Taken together, these studies demonstrate the potential to interrogate pathological features of BTx-induced osteoanabolic dysfunction in the regenerating zebrafish fin, define the technological toolbox for detecting bone growth and mineralization deficits in this process, and suggest that pathways mediating neuromuscular regulation of osteogenesis may be conserved beyond established mammalian models of bone anabolic disorders.

摘要

在多种骨形成情况下(如发育、生长和愈合),肌肉注射肉毒杆菌毒素(BTx)与成骨受损有关,但这些缺陷背后的神经肌肉-骨相互作用机制尚未明确。鉴于斑马鱼(Danio rerio)作为一种用于研究人类疾病的快速、具有遗传易操作性且光学透明的模型正逐渐展现出其效用(以及在一个连接体外和更复杂体内模型系统的简单模型中探究神经肌肉介导的骨疾病的潜力),在本研究中,我们建立了成年斑马鱼BTx诱导的肌肉麻痹模型,并研究了其对尾鳍再生过程中膜内成骨的影响。BTx给药以剂量依赖性、短暂性和局灶性的方式诱导成年斑马鱼快速肌肉麻痹,这与在动物和人体研究中观察到的麻痹表型相似。在鳍再生过程中,BTx损害了骨射线的持续生长、形态和模式,表明早期成骨存在缺陷。此外,BTx显著降低了矿化活性和晶体矿物质积累,提示晚期成骨细胞分化延迟和/或继发性骨沉积改变。在截肢部位近端进行骨射线横切,可局部抑制受影响射线中的骨生长,这表明在此过程中射线内和/或射线间神经发挥了作用。综上所述,这些研究证明了在再生的斑马鱼尾鳍中探究BTx诱导的骨合成代谢功能障碍病理特征的潜力,定义了在此过程中检测骨生长和矿化缺陷的技术工具箱,并表明介导骨生成神经肌肉调节的途径可能在已建立的哺乳动物骨合成代谢疾病模型之外具有保守性。

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