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首页> 外文期刊>Epilepsy research >Leptin-regulated autophagy plays a role in long-term neurobehavioral injury after neonatal seizures and the regulation of zinc/cPLA2 and CaMK II signaling in cerebral cortex
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Leptin-regulated autophagy plays a role in long-term neurobehavioral injury after neonatal seizures and the regulation of zinc/cPLA2 and CaMK II signaling in cerebral cortex

机译:瘦素调节的自噬在新生儿癫痫发作后的长期神经疾病中起作用,在脑皮层中的锌/ cpLa2和Camk II信号传导的调节

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摘要

Metabolic disorders play an important role in the pathogenesis of many neurological diseases. Recent evidence suggests that leptin levels in peripheral blood and brain are lower in patients with epilepsy. Leptin is an energy-regulating hormone that plays a neuroprotective role in neurodegenerative diseases and brain trauma. However, little is known about the effects and molecular mechanisms of leptin treatment on long-term neurobehavioral impairment caused by developmental seizures. The present study evaluated whether chronic leptin treatment protected against neurobehavioral impairments induced by recurrent seizures in newborns treated with flurothyl. We also examined the effect of leptin on the expression of zinc/cPLA2-related autophagy signaling molecules and CaMKII in the cerebral cortex. Twenty Sprague-Dawley rats (6 days after birth, P6) were randomly divided into two groups, a neonatal seizure group and control group. Rats were subdivided on P13 into control, control?+?leptin (leptin, 2?mg/kg/day, continuous 10 days), seizure (RS), and seizure?+?leptin group (RS?+?leptin, 2?mg/kg/day for 10 consecutive days). Neurological behavioral parameters (negative geotaxis reaction reflex, righting reflex, cliff avoidance reflex, forelimb suspension reflex and open field test) were observed from P23 to P30. mRNA and protein levels in the cerebral cortex were detected using real-time RT-PCR and Western blotting, respectively. Flurothyl-induced seizures (RS group) produced long-term abnormal neurobehavior, which was improved with leptin treatment. Chronic leptin treatment restored several expression parameters affected by neonatal seizures, including seizure-induced up-regulated zinc transporter ZnT1/ZIP7, lipid membrane injury-related cPLA2, autophagy marker beclin-1/bcl2, LC3II/LC3I, and its execution molecule cathepsin-E, and down-regulated memory marker CaMK II alpha. Our results suggest that the early use of leptin after neonatal recurrent seizures may exert neuroprotective effects and antagonize the long-term neurobehavioral impairment caused by seizures. Autophagy-mediated Zn/cPLA2 and CaMK II signaling in the cerebral cortex may be involved in the neuroprotective effect of leptin. Our results provide new clues for anti-epileptogenetic treatment.
机译:代谢紊乱在许多神经疾病的发病机制中发挥着重要作用。最近的证据表明,癫痫患者患者外周血和大脑的瘦素水平降低。瘦素是一种能量调节激素,其在神经变性疾病和脑创伤中起着神经保护作用。然而,关于瘦素治疗对由发育癫痫发作引起的长期神经障碍损伤的影响和分子机制很少。本研究评估了慢性瘦素治疗是否受到用氟噻基处理的新生儿复发癫痫发作诱导的神经障碍障碍。我们还研究了Leptin对脑皮层中锌/ CPLA2相关自噬信号分子和Camkii表达的影响。二十辆Sprague-Dawley大鼠(出生后6天)随机分为两组,是新生儿癫痫发作组和对照组。将大鼠细分为p13,进入对照,对照,对照?+α?瘦素(瘦素,2×mg / kg /天,连续10天),癫痫发作(Rs)和癫痫发作?+α1?αα(rs?+?瘦蛋白,2?连续10天的mg / kg /天)。从P23到P30观察到神经系统行为参数(负土耳其反应反射,抗反射,悬崖避免反射,前列悬浮反射和开放场测试)。使用实时RT-PCR和Western印迹检测脑皮质中的mRNA和蛋白质水平。血管素诱导的癫痫发作(RS组)产生的长期异常神经疼痛,其随瘦素治疗得到改善。慢性瘦素治疗恢复了由新生儿癫痫发作影响的几种表达参数,包括癫痫发作的上调锌转运蛋白ZnT1 / Zip7,脂质膜损伤相关的CPLA2,自噬标志物BEC1-1 / BCL2,LC3II / LC3I及其执行分子蛋白 - e,下调内存标记Camk II alpha。我们的研究结果表明,新生儿复发癫痫发作后早期使用瘦素可能会发挥神经保护作用,并拮抗由癫痫发作引起的长期神经障碍损伤。脑皮层中的自噬介导的Zn / CPLA2和Camk II信号传导可能参与瘦素的神经保护作用。我们的结果为抗癫痫治疗提供了新的线索。

著录项

  • 来源
    《Epilepsy research》 |2018年第2018期|共9页
  • 作者单位

    Neurology Laboratory Institute of Pediatric Research Children’s Hospital of Soochow University;

    Neurology Laboratory Institute of Pediatric Research Children’s Hospital of Soochow University;

    Neurology Laboratory Institute of Pediatric Research Children’s Hospital of Soochow University;

    Neurology Laboratory Institute of Pediatric Research Children’s Hospital of Soochow University;

    Neurology Laboratory Institute of Pediatric Research Children’s Hospital of Soochow University;

  • 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

    Leptin; Zinc transporter; Autophagy; Cerebral cortex; Neurobehavior;

    机译:瘦素;锌转运蛋白;自噬;脑皮层;神经麻烦;

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