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Bone Adaptation in a Mouse Model of Reduced Sensory Nerve Function.

机译:感觉神经功能降低的小鼠模型中的骨适应。

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摘要

Long bones are richly innervated with a presence of sensory neurons in the periosteum, cortical bone, endosteum and bone marrow. Emerging evidence suggests that these nerves are involved in more than simple pain transmission. Nerve damage not only affects bone during development, but also contributes to bone loss following injury. As bone cells express receptors for several neurotransmitters, nerves may regulate bone metabolism through local release of neuropeptides.;The objective of this research was to elucidate the contribution of peripheral sensory nerves to bone adaptation. We used a chemical model of decreased nerve function, administering a naturally occurring compound, capsaicin, to neonatal mice. With the use of different imaging modalities and mechanical testing techniques, we assessed the effects of denervation on skeletal development. We next used a model of increased mechanical loading (tibial compression) to investigate how denervation alters the bone response to an anabolic stimulus. Finally, we measured changes in bone concentrations of neuropeptides CGRP and substance P in response to increased loading (tibial compression) and decreased loading (hindlimb unloading).;Capsaicin treatment resulted in shorter femurs possessing thinner trabeculae. Denervation also altered the bone response to increased mechanical loading, with capsaicin-treated mice exhibiting greater changes in bone mass and mineral apposition rates. Neuropeptide concentrations were also changed by the mechanical environment with an increase in CGRP following tibial compression. Our findings indicate an important role for sensory nerves in bone metabolism, and suggest a potential target for therapeutics aimed at bone diseases characterized by abnormal bone formation.
机译:长骨被丰富地支配着骨膜,皮质骨,骨内膜和骨髓中的感觉神经元。越来越多的证据表明,这些神经不仅涉及简单的疼痛传递。神经损伤不仅影响发育过程中的骨骼,而且还导致受伤后的骨骼丢失。由于骨细胞表达几种神经递质的受体,因此神经可能通过局部释放神经肽来调节骨代谢。本研究的目的是阐明周围感觉神经对骨骼适应的贡献。我们使用了神经功能下降的化学模型,将天然化合物辣椒素给予新生小鼠。通过使用不同的成像方式和机械测试技术,我们评估了去神经支配对骨骼发育的影响。接下来,我们使用增加机械负荷(胫骨压缩)的模型来研究去神经如何改变骨对合成代谢刺激的反应。最后,我们测量了神经肽CGRP和P物质的骨浓度随负荷增加(胫骨压缩)和负荷减少(后肢卸载)的变化。辣椒素治疗导致股骨较短,骨小梁变细。去神经作用还改变了骨骼对增加的机械负荷的反应,辣椒素处理的小鼠的骨骼质量和矿物质沉积率表现出更大的变化。胫骨受压后,神经肽浓度也因机械环境而改变,CGRP升高。我们的发现表明感觉神经在骨骼代谢中具有重要作用,并提出了针对以异常骨骼形成为特征的骨骼疾病的治疗方法的潜在目标。

著录项

  • 作者

    Heffner, Mollie Alexandria.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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