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首页> 外文期刊>The Cerebellum >Spinocerebellar Ataxia Type 2 (SCA2): Identification of Early Brain Degeneration in One Monozygous Twin in the Initial Disease Stage
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Spinocerebellar Ataxia Type 2 (SCA2): Identification of Early Brain Degeneration in One Monozygous Twin in the Initial Disease Stage

机译:脊髓小脑共济失调2型(SCA2):在疾病初期的一个单卵双胞胎中早期脑退化的鉴定。

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摘要

Spinocerebellar ataxia type 2 (SCA2) is a progressive autosomal dominantly inherited cerebellar ataxia and is assigned to the CAG repeat or polyglutamine diseases. Recent morphological studies characterized the pathoanatomical features in heterozygous SCA2 patients and revealed severe neuronal loss in a large variety of cerebellar and extra-cerebellar brain sites. In the present study, we examined the brain pathoanatomy of a monozygous twin of a large Hungarian SCA2 family with pathologically extended CAG repeats in both SCA2 alleles. This unique patient was in the initial clinical stage of SCA2 and died almost 3 years after SCA2 onset. Upon pathoanatomical investigation, we observed loss of giant Betz pyramidal cells in the primary motor cortex, degeneration of sensory thalamic nuclei, the Purkinje cell layer, and deep cerebellar nuclei, as well as select brainstem nuclei (i.e., substantia nigra, oculomotor nucleus, reticulotegmental nucleus of the pons, facial, lateral vestibular, and raphe interpositus nuclei, inferior olive). All of these degenerated brain gray matter structures are known as consistent targets of the underlying pathological process in heterozygous SCA2 patients. Since they were already involved in our patient within 3 years after disease onset, we think that we were for the first time able to identify the early brain targets of the pathological process of SCA2.
机译:脊髓小脑性共济失调2型(SCA2)是一种进行性常染色体显性遗传的小脑性共济失调,并被归因于CAG重复或多谷氨酰胺疾病。最近的形态学研究表征了杂合性SCA2患者的病理解剖特征,并揭示了在各种小脑和小脑外脑部位的严重神经元丢失。在本研究中,我们检查了一个匈牙利大型SCA2家族的单卵双胞胎的脑病理解剖,在两个SCA2等位基因中都有病理扩展的CAG重复序列。这名独特的患者处于SCA2的初始临床阶段,并在SCA2发作后约3年死亡。通过病理解剖学研究,我们观察到初级运动皮层巨贝茨锥体细胞的丢失,感觉丘脑核的变性,浦肯野细胞层和小脑深核以及部分脑干核(即黑质,动眼神经核,网状膜脑桥,面部,前庭外侧和椎间盘中间核,下橄榄核)。所有这些退化的脑灰质结构都被认为是杂合SCA2患者潜在病理过程的一致靶标。由于他们已经在疾病发作后的三年内参与了我们的患者治疗,因此我们认为我们首次能够确定SCA2病理过程的早期大脑靶点。

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  • 来源
    《The Cerebellum》 |2011年第2期|245-253|共9页
  • 作者单位

    Institute of Clinical Neuroanatomy Dr. Senckenberg Anatomy Goethe-University 60590 Frankfurt am Main Germany;

    Department of Neurology and Stroke County Hospital Veszprém Hungary;

    Department of Pathology and Laboratory Medicine University Medical Center Groningen University of Groningen 5970 RB Groningen The Netherlands;

    Department of Neurology and Stroke County Hospital Veszprém Hungary;

    Department of Neurology and Stroke County Hospital Veszprém Hungary;

    Department of Medical Genetics University of Pécs Pécs Hungary;

    Department of Neurology Molecular Neurogenetics Goethe-University 60590 Frankfurt am Main Germany;

    Institute of Clinical Neuroanatomy Dr. Senckenberg Anatomy Goethe-University 60590 Frankfurt am Main Germany;

    Dr. Senckenberg Chronomedical Institute Goethe-University 60590 Frankfurt am Main Germany;

    Department of Neurology University Hospital of Bonn 53105 Bonn Germany;

    Institute of Clinical Neuroanatomy Dr. Senckenberg Anatomy Goethe-University 60590 Frankfurt am Main Germany;

    Department of Medical Genetics University of Pécs Pécs Hungary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ADCA; Ataxia; Polyglutamine; SCA2; Spinocerebellar ataxia;

    机译:ADCA;共济失调;聚谷氨酰胺;SCA2;小脑脊髓共济失调;

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