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Comparative Approaches in Neurobiology: Model systems for studying cellular mechanisms of SCN1A-related epilepsy

机译:神经生物学比较方法:用于研究SCN1A相关性癫痫的细胞机制的模型系统

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摘要

Mutations in SCN1A, the gene encoding voltage-gated sodium channel NaV1.1, cause a spectrum of epilepsy disorders that range from genetic epilepsy with febrile seizures plus to catastrophic disorders such as Dravet syndrome. To date, more than 1,250 mutations in SCN1A have been linked to epilepsy. Distinct effects of individual SCN1A mutations on neuronal function are likely to contribute to variation in disease severity and response to treatment in patients. Several model systems have been used to explore seizure genesis in SCN1A epilepsies. In this article we review what has been learned about cellular mechanisms and potential new therapies from these model systems, with a particular emphasis on the novel model system of knockin Drosophila and a look toward the future with expanded use of patient-specific induced pluripotent stem cell-derived neurons.
机译:SCN1A(编码电压门控钠通道NaV1.1的基因)中的突变会导致一系列癫痫病,从遗传性癫痫伴高热惊厥到灾难性疾病(例如Dravet综合征)。迄今为止,SCN1A中超过1,250个突变与癫痫病有关。单个SCN1A突变对神经元功能的不同影响可能会导致疾病严重程度的变化和患者对治疗的反应。几个模型系统已被用来探索SCN1A癫痫发作的发生。在本文中,我们回顾了从这些模型系统学到的有关细胞机制和潜在新疗法的知识,特别着重于敲除果蝇的新型模型系统,并展望了随着患者特异性诱导多能干细胞的广泛使用而展望的未来来源的神经元。

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