首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dendritic Spine Dynamics after Peripheral Nerve Injury: An Intravital Structural Study
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Dendritic Spine Dynamics after Peripheral Nerve Injury: An Intravital Structural Study

机译:外周神经损伤后树突脊柱动态:盆腔结构研究

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Neuropathic pain is an intractable medical condition with few or no options for effective treatment. Emerging evidence shows a strong structure-function relationship between dendritic spine dysgenesis and the presence of neuropathic pain. Postmortem tissue analyses can only imply dynamic structural changes associated with injury-induced pain. Here, we profiled the in vivo dynamics of dendritic spines over time on the same superficial dorsal horn (lamina II) neurons before and after peripheral nerve injury-induced pain. We used a two-photon, whole-animal imaging paradigm that permitted repeat imaging of the same dendritic branches of these neurons in C57/BI6 Thy1-YFP male mice. Our study demonstrates, for the first time, the ongoing, steady-state changes in dendritic spine dynamics in the dorsal horn associated with peripheral nerve injury and pain. Ultimately, the relationship between altered dendritic spine dynamics and neuropathic pain may serve as a structure-based opportunity to investigate mechanisms of pain following injury and disease.
机译:神经性疼痛是一种难以应变的医疗条件,有很少或没有有效治疗的选择。新兴的证据表明,树突脊柱肿瘤性疾病和神经性疼痛的存在之间存在强大的结构功能关系。后期组织分析只能意味着与伤害引起的疼痛相关的动态结构变化。在这里,我们在外周神经损伤诱导的疼痛之前和之后,在同一浅表背角(Lamina II)神经元上随着时间的推移,在树枝状刺的体内动态。我们使用了双光子,全动物成像范式,允许在C57 / BI6 Thy1-YFP雄性小鼠中允许对这些神经元的相同树突状分支的重复成像。我们的研究首次表现出持续的稳态变化在与周角与周围神经损伤和疼痛相关的背角中的树枝状脊柱动态的变化。最终,改变的树突脊柱动态和神经性疼痛之间的关系可以作为基于结构的机会来调查伤害和疾病后疼痛机制。

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