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首页> 外文期刊>Neurochemical research >Forced Physical Training Increases Neuronal Proliferation and Maturation with Their Integration into Normal Circuits in Pilocarpine Induced Status Epilepticus Mice
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Forced Physical Training Increases Neuronal Proliferation and Maturation with Their Integration into Normal Circuits in Pilocarpine Induced Status Epilepticus Mice

机译:强制体育训练将神经元增殖和成熟增加,它们集成到柳甘油诱导状态癫痫患者中的正常电路中

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摘要

Increased number of newly-born neurons produced at latent stage after status epilepticus (SE) contribute to aberrant rewiring of hippocampus and are hypothesized to promote epileptogenesis. Although physical training (PT) was reported to cause further increase in neurogenesis after SE, how PT affect their integration pattern is still elusive, whether they integrate into normal circuits or increase aberrant integrations is yet to be determined. To understand this basic mechanism by which PT effects SE and to elaborate the possible role of neuronal integrations in prognosis of SE, we evaluated the effect of 4 weeks of treadmill PT in adult male mice after pilocarpine-induced SE on behavioral and aberrant integrations' parameters. Changes in BDNF gene methylation and its protein level in hippocampus was also measured at latent stage (2-weeks) to explore underlying pathways involved in increasing neurogenesis. Our results demonstrated that although PT increased proliferation and maturation of neurons in dentate gyrus, they showed reduced aberrant integrations into hippocampal circuitry assessed through a decrease in the number of ectopic granular cells, hilar basal dendrites and mossy fiber sprouting as compared to non-exercised SE mice. While SE decreased the percentage methylation of specific CpGs of BDNF gene's promoter, PT did not yield any significant difference in methylation of BDNF CpGs as compared to non-exercised SE mice. In conclusion, PT increases hippocampal neurogenesis through increasing BDNF levels by some pathways other than demethylating BDNF CpGs and causes post SE newly-born neurons to integrate into normal circuits thus resulting in decreased spontaneous recurrent seizures and enhanced spatial memory. Graphic
机译:状态癫痫(SE)后潜伏期产生的新出生神经元数量有助于海马的异常再次疲劳,并被假设促进癫痫发生。虽然据报道,据报道体育训练(PT)导致神经发生后的进一步增加,但PT如何影响它们的集成模式仍然难以捉摸,无论它们集成到正常电路中还是增加异常集成。要了解PT效应SE的这种基本机制,并详细阐述神经元整合在SE预后的可能作用,我们评估了在行为和异常的SE的成年雄性小鼠中的4周跑步机Pt的效果和异常融合的参数。在潜在阶段(2周)的潜在阶段(2周)下也测量了BDNF基因甲基化及其蛋白质水平的变化,以探索增加神经发生的潜在途径。我们的结果表明,尽管PT增加了牙齿过滤的神经元的增殖和成熟,但与非锻炼SE相比,它们表明通过减少分配的异位颗粒细胞的数量评估的海马电路中的异常综合老鼠。虽然SE降低了BDNF基因启动子的特异性CpG的甲基化百分比,但与非锻炼的SE小鼠相比,PT没有产生BDNF CPG的甲基化的任何显着差异。总之,PT通过增加除甲基化BDNF CPG之外的一些途径来增加海马神经发生,并使硒新出生的神经元集成到正常电路中,从而导致自发复发性癫痫发作和增强的空间记忆。形象的

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  • 来源
    《Neurochemical research》 |2019年第11期|共16页
  • 作者单位

    Xi An Jiao Tong Univ Hlth Sci Ctr Sch Basic Med Sci Inst Neurobiol 76 West Yanta Rd Xian;

    Xi An Jiao Tong Univ Hlth Sci Ctr Sch Basic Med Sci Dept Human Anat Histol &

    Embryol 76 West;

    Univ Lahore Univ Inst Phys Therapy 1 Km Def Rd Lahore Pakistan;

    Xi An Jiao Tong Univ Hlth Sci Ctr Sch Basic Med Sci Dept Human Anat Histol &

    Embryol 76 West;

    Xi An Jiao Tong Univ Hlth Sci Ctr Sch Basic Med Sci Dept Pathogen Biol &

    Immunol 76 West Yanta;

    Xi An Jiao Tong Univ Hlth Sci Ctr Sch Basic Med Sci Dept Human Anat Histol &

    Embryol 76 West;

    Xi An Jiao Tong Univ Hlth Sci Ctr Sch Basic Med Sci Inst Neurobiol 76 West Yanta Rd Xian;

    Xi An Jiao Tong Univ Hlth Sci Ctr Sch Basic Med Sci Inst Neurobiol 76 West Yanta Rd Xian;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物体其他化学成分;
  • 关键词

    Exercise; Treadmill running; Epilepsy; Neurogenesis; Aberrant hippocampal neurogenesis;

    机译:锻炼;跑步机跑步;癫痫;神经发生;异常海马神经发生;

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