Early age-related progression of AD-like neuropathology in Down's syndrome.

American journal of neurodegenerative disease Pub Date : 2013-06-21 Print Date: 2013-01-01
Larry D Sparks, Richard J Kryscio, John C Hunsaker
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Abstract

We have previously reported that increased numbers of Alz-50-reactive (apoptotic) neurons occurred in young DS subjects compared to controls, but increased in density with increasing age, and in advance of identifiable senile plaques (SP) in DS. The purpose of the study was to determine if there are further differences in Alzheimer's disease (AD)-like neuropathology with increasing age among individuals with Down's syndrome (DS) compared to cognitively normal age-matched controls. The two populations compared were age-matched normal controls (N = 14) between 11 months and 61 years of age and individuals with DS (N = 8) between 1 and 54 years of age. There were 7 cognitively intact DS and 10 control subjects under 35 years of age. The single demented 54 year old DS subject was compared to 4 non-demented controls between 48 and 61 years of age. 50 μm Vibratome sections of formalin fixed hippocampal formations were immunohistochemically stained for amyloid-β (6E10), APP (22C11) and phosphorylated tau (AT8) using standard methods. AT8 immunoreactive features were found only in the oldest DS subject. In contrast, the number and intensity of amyloid-β-immunoreactive neurons were maximal in the youngest DS subjects (1-24 years), reduced in the young adults (25-35 years) synchronous with the appearance of only diffuse-form SP, and were further reduced in the 54 year-old DS subject exhibiting abundant multiform SP. Distribution of APP immunoreactivity (22C11) was distinct from amyloid-β (6E10) in appearance and by location and age in both DS and normal controls. The data indicates that the earliest observable neuropathologic feature in DS may be neuronal accumulation of amyloid-β. Such accumulation of amyloid-β occurs decades in advance of deposition as SP, which in turn occurs decades before cognitive decline.

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唐氏综合征ad样神经病理的早期相关进展
我们之前报道过,与对照组相比,年轻的DS受试者中alz -50反应性(凋亡)神经元的数量增加,但随着年龄的增长,密度增加,并且在DS中可识别的老年斑(SP)出现之前。该研究的目的是确定唐氏综合症(DS)患者与认知正常的年龄匹配的对照组相比,随着年龄的增长,阿尔茨海默病(AD)样神经病理学是否存在进一步的差异。比较的两个人群是年龄匹配的正常对照(N = 14),年龄在11个月至61岁之间,以及DS患者(N = 8),年龄在1至54岁之间。35岁以下认知完整的DS 7例,对照组10例。将54岁老年痴呆患者与4名年龄在48岁至61岁之间的非痴呆患者进行比较。采用标准方法对50 μm福尔马林固定海马结构振动体切片进行淀粉样蛋白-β (6E10)、APP (22C11)和磷酸化tau (AT8)的免疫组织化学染色。AT8免疫反应特征仅在年龄最大的DS受试者中发现。相比之下,淀粉样蛋白β免疫反应神经元的数量和强度在年轻的DS受试者(1-24岁)中最大,在年轻的成人(25-35岁)中减少,同时只有弥漫性SP的出现,在54岁的DS受试者中进一步减少,表现出丰富的多形式SP。APP免疫反应性(22C11)的分布与淀粉样蛋白β (6E10)在外观和位置和年龄上都不同。这些数据表明,最早可观察到的退行性椎体滑移的神经病理特征可能是淀粉样蛋白-β的神经元积聚。淀粉样蛋白-β的积累比SP的沉积早几十年,而SP的沉积又比认知能力下降早几十年。
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