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常染色体隐性D90A铜锌超氧化物歧化酶突变型肌萎缩侧索硬化症中保留的慢传导皮质运动神经元投射。

Preserved slow conducting corticomotoneuronal projections in amyotrophic lateral sclerosis with autosomal recessive D90A CuZn-superoxide dismutase mutation.

作者信息

Weber M, Eisen A, Stewart H G, Andersen P M

机构信息

The Neuromuscular Diseases Unit, Vancouver Hospital and the University of British Columbia, Vancouver, Canada.

出版信息

Brain. 2000 Jul;123 ( Pt 7):1505-15. doi: 10.1093/brain/123.7.1505.

Abstract

Recently, a subgroup of the amyotrophic lateral sclerosis (ALS) syndrome associated with mutations in the gene encoding the free radical scavenging enzyme CuZn-superoxide dismutase (CuZn-SOD, SOD1) has been identified. Some 67 different mutations have been reported worldwide to date, comprising about one-fifth of familial ALS cases in the populations studied. The autosomal recessively inherited D90A CuZn-SOD mutation has been associated with a very slowly progressive, clinically distinct phenotype, and is neurophysiologically characterized by very slow central motor conduction. It is not known which physiological and/or biochemical mechanisms are responsible for the different clinical course. To delineate ALS associated with this particular CuZn-SOD mutation from ALS without mutations, we performed a detailed neurophysiological study of the corticomotoneuronal function using peristimulus time histograms (PSTHs) in eight ALS patients homozygous for the D90A CuZn-SOD mutation. The results were compared with those obtained in 12 non-hereditary ALS patients and 11 healthy subjects. PSTHs were constructed from three to seven different, voluntarily recruited motor units of the extensor digitorum communis muscle (EDC) in each patient. The onset latency, number of excess bins, duration and synchrony of the primary peak were analysed. All measurements differed significantly between healthy controls and the D90A patients (P < 0.0007). The mean onset latency of the primary peak in D90A patients was 35.3 ms, compared with 24.2 ms for non-hereditary ALS patients and 19.3 ms for normal subjects (P < 0.0000). Delayed primary peaks in the D90A patients were desynchronized and characteristically preceded by a marked suppression phase. This suppression phase was not seen in non-hereditary ALS patients. We conclude that the mainly slow conducting and/or polysynaptic corticomotoneuronal connections are preserved in the D90A homozygous cases, and that the cortical and possibly spinal inhibitory circuitry is preserved. These events may partially protect the motor neurons, slowing down the degenerative process.

摘要

最近,已经鉴定出与编码自由基清除酶铜锌超氧化物歧化酶(CuZn-SOD,SOD1)的基因突变相关的肌萎缩侧索硬化症(ALS)综合征的一个亚组。迄今为止,全世界已报道约67种不同的突变,在所研究的人群中约占家族性ALS病例的五分之一。常染色体隐性遗传的D90A CuZn-SOD突变与进展非常缓慢、临床上独特的表型相关,并且在神经生理学上的特征是中枢运动传导非常缓慢。尚不清楚哪些生理和/或生化机制导致了不同的临床病程。为了将与这种特定CuZn-SOD突变相关的ALS与无突变的ALS区分开来,我们使用刺激后时间直方图(PSTH)对8名D90A CuZn-SOD突变纯合的ALS患者的皮质运动神经元功能进行了详细的神经生理学研究。将结果与12名非遗传性ALS患者和11名健康受试者的结果进行了比较。在每位患者中,从伸指总肌(EDC)的三到七个不同的、自愿募集的运动单位构建PSTH。分析了初级峰值的起始潜伏期、多余波峰数量、持续时间和同步性。健康对照组与D90A患者之间的所有测量结果均有显著差异(P < 0.0007)。D90A患者初级峰值的平均起始潜伏期为35.3毫秒,非遗传性ALS患者为24.2毫秒,正常受试者为19.3毫秒(P < 0.0000)。D90A患者延迟的初级峰值不同步,其特征是之前有一个明显的抑制期。在非遗传性ALS患者中未观察到这种抑制期。我们得出结论,在D90A纯合病例中,主要是缓慢传导和/或多突触的皮质运动神经元连接得以保留,并且皮质以及可能的脊髓抑制回路得以保留。这些事件可能部分保护运动神经元,减缓退化过程。

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