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首页> 外文期刊>Neurochemical Research >Changes in Glial Cell Line-derived Neurotrophic Factor Expression in the Rostral and Caudal Stumps of the Transected Adult Rat Spinal Cord
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Changes in Glial Cell Line-derived Neurotrophic Factor Expression in the Rostral and Caudal Stumps of the Transected Adult Rat Spinal Cord

机译:横断成年大鼠脊髓的尾端和尾端胶质细胞源性神经营养因子表达的变化

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摘要

Limited information is available regarding the role of endogenous Glial cell line-derived neurotrophic factor (GDNF) in the spinal cord following transection injury. The present study investigated the possible role of GDNF in injured spinal cords following transection injury (T9–T10) in adult rats. The locomotor function recovery of animals by the BBB (Basso, Beattie, Bresnahan) scale score showed that hindlimb support and stepping function increased gradually from 7 days post operation (dpo) to 21 dpo. However, the locomotion function in the hindlimbs decreased effectively in GDNF-antibody treated rats. GDNF immunoreactivty in neurons in the ventral horn of the rostral stump was stained strongly at 3 and 7 dpo, and in the caudal stump at 14 dpo, while immunostaining in astrocytes was also seen at all time-points after transection injury. Western blot showed that the level of GDNF protein underwent a rapid decrease at 7 dpo in both stumps, and was followed by a partial recovery at a later time-point, when compared with the sham-operated group. GDNF mRNA-positive signals were detected in neurons of the ventral horn, especially in lamina IX. No regenerative fibers from corticospinal tract can be seen in the caudal segment near the injury site using BDA tracing technique. No somatosensory evoked potentials (SEP) could be recorded throughout the experimental period as well. These findings suggested that intrinsic GDNF in the spinal cord could play an essential role in neuroplasticity. The mechanism may be that GDNF is involved in the regulation of local circuitry in transected spinal cords of adult rats.
机译:关于横断损伤后内源性神经胶质细胞源性神经营养因子(GDNF)在脊髓中的作用的信息有限。本研究探讨了成年大鼠横断损伤(T9 –T10 )中GDNF在脊髓损伤中的可能作用。通过BBB(Basso,Beattie,Bresnahan)量表评分,动物的运动功能恢复显示,后肢的支撑和踩踏功能从术后7天(dpo)逐渐增加到21 dpo。但是,在GDNF-抗体治疗的大鼠中,后肢的运动功能有效降低。在横断损伤后的所有时间点,星形胶质瘤残端腹角神经元的GDNF免疫反应性在3 dpo和7 dpo时染色强烈,在尾端残端在14 dpo时染色强烈。 Western印迹显示,与假手术组相比,两个残端的GDNF蛋白水平均在7 dpo处迅速降低,随后在较晚的时间点部分恢复。 GDNF mRNA阳性信号在腹角神经元中被检测到,尤其是在IX层中。使用BDA追踪技术,在损伤部位附近的尾节中看不到来自皮质脊髓束的再生纤维。在整个实验期间也无法记录体感诱发电位(SEP)。这些发现表明,脊髓中固有的GDNF可能在神经可塑性中起重要作用。其机制可能是GDNF参与成年大鼠横断脊髓的局部电路调节。

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  • 来源
    《Neurochemical Research》 |2008年第5期|927-937|共11页
  • 作者单位

    Institute of Neurological Disease West China Hospital Sichuan University Chengdu 610041 China;

    Institute of Neuroscience Kunming Medical College Kunming 650031 China;

    Institute of Neuroscience Kunming Medical College Kunming 650031 China;

    Nursing Department Weifang Medical College Weifang 261042 China;

    Institute of Neuroscience Kunming Medical College Kunming 650031 China;

    Institute of Neuroscience Kunming Medical College Kunming 650031 China;

    Institute of Neuroscience Kunming Medical College Kunming 650031 China;

    Institute of Neuroscience Kunming Medical College Kunming 650031 China;

    Institute of Neurological Disease West China Hospital Sichuan University Chengdu 610041 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    GDNF; Spinal cord transection; Immunohistochemistry; In?situ hybridization; Western blot; Antibody; Rats;

    机译:GDNF;脊髓横断;免疫组织化学;原位杂交;Western印迹;抗体;鼠;

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