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首页> 外文期刊>Brain research >The number of nociceptors in the trigeminal ganglion but not proprioceptors in the mesencephalic trigeminal tract nucleus is reduced in dystonin deficient dystonia musculorum mice.
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The number of nociceptors in the trigeminal ganglion but not proprioceptors in the mesencephalic trigeminal tract nucleus is reduced in dystonin deficient dystonia musculorum mice.

机译:三叉神经节的伤害者数量,但在尿道缺乏缺陷型肌肉小鼠中,减少了脑脑三叉细胞核中的雌激素的伤害者。

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摘要

The trigeminal ganglion (TG) and mesencephalic trigeminal tract nucleus (Mes5) were investigated in wild type and dystonia musculorum (dt) mice to study the effect of dystonin deficiency on primary sensory neurons in the trigeminal nervous system. At postnatal day 14, the number of TG neurons was markedly decreased in dt mice when compared to wild type mice (43.1% reduction). In addition, dystonin disruption decreased the number of sensory neurons which bound to isolectin B4, and contained calcitonin gene-related peptide or high-affinity nerve growth factor receptor TrkA. Immunohistochemistry for caspase-3 demonstrated that dystonin deficiency induced excess cell death of TG neurons during the early postnatal period. In contrast, Mes5 neurons were barely affected in dt mice. These data together suggest that dystonin is necessary for survival of nociceptors but not proprioceptors in the trigeminal nervous system.
机译:在野生型和肌肌肌肌室(DT)小鼠中研究了三叉神经节(TG)和思科三棱镜菌细胞核(MES5),以研究三叉神经系统中Dystonin缺乏对原发性感觉神经元的效果。 在后期14天,与野生型小鼠相比,DT小鼠中TG神经元的数量明显降低(减少43.1%)。 此外,Dystonin破坏减少了与二胞蛋白B4结合的感觉神经元的数量,并且含有降钙素基因相关肽或高亲和力神经生长因子受体Trka。 Caspase-3的免疫组织化学证明,尿素缺乏症在产后早期的TG神经元的过度细胞死亡。 相比之下,MES5神经元在DT小鼠中几乎受到影响。 这些数据在一起表明Dystonin对于伤害者的存活是必要的,而不是三叉神经系统中的丙啶菌属。

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