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An investigation of the molecular mechanisms engaged before and after the development of Alzheimer disease neuropathology in Down syndrome: a proteomics approach

机译:唐氏综合症阿尔茨海默氏病神经病理学发展前后参与的分子机制研究:蛋白质组学方法

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Down syndrome (DS) is one of the most common causes of intellectual disability, owing to trisomy of all or part of chromosome 21. DS is also associated with the development of Alzheimer disease (AD) neuropathology after the age of 40 years. To better clarify the cellular and metabolic pathways that could contribute to the differences in DS brain, in particular those involved in the onset of neurodegeneration, we analyzed the frontal cortex of DS subjects with or without significant AD pathology in comparison with age-matched controls, using a proteomics approach. Proteomics represents an advantageous tool to investigate the molecular mechanisms underlying the disease. From these analyses, we investigated the effects that age, DS, and AD neuropathology could have on protein expression levels. Our results show overlapping and independent molecular pathways (including energy metabolism, oxidative damage, protein synthesis, and autophagy) contributing to DS, to aging, and to the presence of AD pathology in DS. Investigation of pathomechanisms involved in DS with AD may provide putative targets for therapeutic approaches to slow the development of AD. (C) 2014 Elsevier Inc. All rights reserved,
机译:唐氏综合症(DS)是智力障碍的最常见原因之一,由于21号染色体的全部或部分三体性,DS也与40岁以后的阿尔茨海默氏病(AD)神经病理学发展有关。为了更好地阐明可能导致DS大脑差异的细胞和代谢途径,特别是那些参与神经退行性病变的途径,我们与年龄匹配的对照组相比,分析了患有或不患有明显AD病理的DS受试者的额叶皮层,使用蛋白质组学方法。蛋白质组学是研究该疾病潜在分子机制的有利工具。通过这些分析,我们研究了年龄,DS和AD神经病理学对蛋白质表达水平的影响。我们的结果表明,重叠,独立的分子途径(包括能量代谢,氧化损伤,蛋白质合成和自噬)有助于DS,衰老以及DS中AD病理的存在。对DS伴有AD的病理机制的研究可能为治疗方法减慢AD的发展提供可能的靶标。 (C)2014 Elsevier Inc.保留所有权利,

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