首页> 美国卫生研究院文献>Cerebral Cortex (New York NY) >Transplantation of GABAergic Interneurons into the Neonatal Primary Visual Cortex Reduces Absence Seizures in Stargazer Mice
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Transplantation of GABAergic Interneurons into the Neonatal Primary Visual Cortex Reduces Absence Seizures in Stargazer Mice

机译:GABA能神经元移植到新生儿原发性视觉皮层中可减少观星小鼠的癫痫发作。

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摘要

Epilepsies are debilitating neurological disorders characterized by repeated episodes of pathological seizure activity. Absence epilepsy (AE) is a poorly understood type of seizure with an estimated 30% of affected patients failing to respond to antiepileptic drugs. Thus, novel therapies are needed for the treatment of AE. A promising cell-based therapeutic strategy is centered on transplantation of embryonic neural stem cells from the medial ganglionic eminence (MGE), which give rise to gamma-aminobutyric acidergic (GABAergic) interneurons during embyronic development. Here, we used the Stargazer (Stg) mouse model of AE to map affected loci using c-Fos immunohistochemistry, which revealed intense seizure-induce activity in visual and somatosensory cortices. We report that transplantation of MGE cells into the primary visual cortex (V1) of Stg mice significantly reduces AE episodes and lowers mortality. Electrophysiological analysis in acute cortical slices of visual cortex demonstrated that Stg V1 neurons exhibit more pronounced increases in activity in response to a potassium-mediated excitability challenge than wildtypes (WT). The defective network activity in V1 was significantly altered following WT MGE transplantation, associating it with behavioral rescue of seizures in Stgs. Taken together, these findings present MGE grafting in the V1 as a possible clinical approach in the treatment of AE.
机译:癫痫病使神经系统疾病变得虚弱,其特征在于反复发作病理性癫痫活动。缺乏癫痫病(AE)是一种了解程度不高的癫痫发作,估计有30%的受影响患者对抗癫痫药无反应。因此,需要新的疗法来治疗AE。一种有前途的基于细胞的治疗策略集中于从神经节内隆起(MGE)移植胚胎神经干细胞,在胚胎发育过程中产生γ-氨基丁酸能(GABAergic)中间神经元。在这里,我们使用AE的Stargazer(Stg)小鼠模型,使用c-Fos免疫组织化学技术绘制了受影响的基因座,这揭示了视觉和体感皮层中强烈的癫痫发作诱导活性。我们报告说,将MGE细胞移植到Stg小鼠的初级视觉皮层(V1)中,可显着降低AE发作并降低死亡率。在视觉皮层的急性皮质切片中进行的电生理分析表明,与野生型(WT)相比,Stg V1神经元在对钾介导的兴奋性挑战的反应中表现出更加明显的活性增加。 WT MGE移植后,V1中的缺陷网络活动发生了显着变化,将其与Stgs癫痫发作的行为挽救相关联。综上所述,这些发现表明在V1中进行MGE移植是治疗AE的一种可能的临床方法。

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