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Impact of inhibition of erythropoietin treatment-mediated neurogenesis in the dentate gyrus of the hippocampus on restoration of spatial learning after traumatic brain injury

机译:促红细胞素治疗介导的神经发生在海马齿状术中的影响对空间学习恢复创伤后脑损伤

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摘要

Our previous study demonstrates that delayed (initiated 24. h post injury) erythropoietin (EPO) therapy for traumatic brain injury (TBI) significantly improves spatial learning. In this study, we investigated the impact of inhibition of EPO treatment-mediated neurogenesis on spatial learning after experimental TBI. Young male Wistar rats (318 +/- 7. g) were subjected to unilateral controlled cortical impact injury. TBI rats received delayed EPO treatment (5000. U/kg in saline) administered intraperitoneally once daily at 1, 2, and 3. days post injury and intracerebroventricular (icv) infusion of either a mitotic inhibitor cytosine-b-D-arabinofuranoside or vehicle (saline) for 14. days. Another 2 groups of TBI rats were treated intraperitoneally with saline and infused icv with either a mitotic inhibitor Ara-C or saline for 14. days. Animals receiving sham operation were infused icv with either Ara-C infusion or saline. Bromodeoxyuridine (BrdU) was administered to label dividing cells. Spatial learning was assessed using a modified Morris water maze test. Animals were sacrificed at 35. days after injury and brain sections stained for immunohistochemical analyses. As compared to the saline treatment, immunohistochemical analysis revealed that delayed EPO treatment significantly increased the number of BrdU-positive cells and new neurons co-stained with BrdU and NeuN (mature neuron marker) in the dentate gyrus in TBI rats. EPO treatment improved spatial learning after TBI. Ara-C infusion significantly abolished neurogenesis and spatial learning recovery after TBI and EPO treatment. Both EPO and Ara-C reduced the number of astrocytes and microglia/macrophages in the dentate gyrus after TBI. Our findings are highly suggestive for an important role of EPO-amplified dentate gyrus neurogenesis as one of the mechanisms underlying EPO therapeutic treatments after TBI, strongly indicating that strategies promoting endogenous neurogenesis may hold an important therapeutic potential for treatment of TBI.
机译:我们以前的研究表明,延迟(启动了24. h后损伤后损伤)促创生产素(EPO)治疗针对创伤性脑损伤(TBI)显着提高了空间学习。在这项研究中,我们研究了抑制EPO治疗介导的神经发生对实验性TBI后空间学习的影响。对年轻的雄性Wistar大鼠(318 +/- 7.g)进行单侧控制的皮质冲击损伤。 TBI大鼠在每天一次每天一次腹膜内施用一次EPO治疗(5000.U / kg)腹膜内施用一次,损伤后患者和3.天后(ICV)输注有丝分裂抑制剂胞嘧啶-BD-阿拉伯脲或载体(盐水)14.天。另外2组TBI大鼠用盐水腹膜淋巴并用有丝分裂抑制剂ARA-C或盐水注入14.天。接受假手术的动物用ARA-C输液或盐水注入ICV。施用溴氧脲嘌呤(BRDU)以标记分割细胞。使用改进的莫里斯水迷宫测试评估空间学习。在35岁时被处死动物。损伤和脑切片染色的免疫组化分析。与盐水处理相比,免疫组织化学分析表明,延迟的EPO治疗显着增加了在TBI大鼠的牙齿牙齿上与Brdu和Neun(成熟神经元标记)共染色的Brdu阳性细胞和新神经元的数量。 EPO治疗改善了TBI后的空间学习。 TBI和EPO治疗后ARA-C输液显着消除了神经发生和空间学习恢复。 EPO和ARA-C都减少了TBI后牙齿过滤器中的星形胶质细胞和微胶质细胞/巨噬细胞的数量。我们的研究结果对于EPO扩增的牙齿神经发生的重要作用非常暗示,作为在TBI之后的ePO治疗治疗后的机制之一,强烈表明促进内源神经发生的策略可能具有治疗TBI的重要治疗潜力。

著录项

  • 来源
    《Experimental Neurology》 |2012年第1期|共9页
  • 作者单位

    Department of Neurosurgery Henry Ford Health System Detroit MI 48202 United States;

    Department of Neurology Henry Ford Health System Detroit MI 48202 United States Department of;

    Department of Neurosurgery Henry Ford Health System Detroit MI 48202 United States;

    Department of Neurosurgery Henry Ford Health System Detroit MI 48202 United States;

    Department of Neurosurgery Henry Ford Health System Detroit MI 48202 United States;

    Department of Neurosurgery Henry Ford Health System Detroit MI 48202 United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

    Astrocytes; Erythropoietin; Microglia; Neurogenesis; Spatial learning; Traumatic brain injury;

    机译:星形胶质细胞;促红细胞生成素;小胶质细胞;神经发生;空间学习;创伤性脑损伤;

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