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首页> 外文期刊>Experimental Neurology >Potassium channel abnormalities are consistent with early axon degeneration of motor axons in the G127X SOD1 mouse model of amyotrophic lateral sclerosis
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Potassium channel abnormalities are consistent with early axon degeneration of motor axons in the G127X SOD1 mouse model of amyotrophic lateral sclerosis

机译:钾通道异常与电动机轴突的早期轴突退化一致,在肌营养的侧面硬化症的G127X SOD1小鼠模型中的MOT运动轴突

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摘要

Amyotrophic lateral sclerosis (ALS) is a lethal neurodegenerative disease, which selectively affects upper and lower motoneurones. The underlying pathophysiology of the disease is complex but electrophysiological studies of peripheral nerves in ALS patients as well as human autopsy studies indicate that a potassium channel dysfunction/loss is present early in the symptomatic phase. It remains unclear to what extent potassium channel abnormalities reflect a specific pathogenic mechanism in ALS. The aim of this study was therefore to investigate the temporal changes in the expression and/or function of potassium channels in motoneurones in the adult G127X SOD1 mouse model of ALS, a model which has a very long presymptomatic phase. Evidence from animal models indicates that the early progressive motoneurone dysfunction and degeneration can be largely compensated by motor unit remodeling, delaying the clinical symptom onset. Experiments were therefore performed both before and after symptom onset.
机译:肌萎缩的外侧硬化症(ALS)是一种致命的神经变性疾病,其选择性地影响上部和下部运动神经元。该疾病的潜在病理生理学是复杂的,但在ALS患者的外周神经以及人体尸检研究表明,在症状期早期存在钾通道功能障碍/损失。钾通道异常在多大程度上仍不清楚反映了ALS中的特定致病机制。因此,本研究的目的是研究成年人G127x SOD1小鼠模型中的运动官量中钾通道的表达和/或功能的时间变化,具有非常长的假期阶段的模型。来自动物模型的证据表明,通过电机单元重塑可以大大补偿早期进行的渐进式动机功能障碍和变性,延迟临床症状发作。因此,在症状发作之前和之后进行实验。

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