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从衰老到阿尔茨海默病:利用衰老加速小鼠模型(SAMP8)揭示“开关”

From aging to Alzheimer's disease: unveiling "the switch" with the senescence-accelerated mouse model (SAMP8).

作者信息

Pallas Merce, Camins Antoni, Smith Mark A, Perry George, Lee Hyoung-gon, Casadesus Gemma

机构信息

Unitat de Farmacologia, Facultat de Farmàcia Institut de Biomedicina Universitat de Barcelona (IBUB), Nucli Universitari de Pedralbes, Barcelona, Spain.

出版信息

J Alzheimers Dis. 2008 Dec;15(4):615-24. doi: 10.3233/jad-2008-15408.

Abstract

Current mouse models of Alzheimer's disease (AD) are restricted to the expression of AD-related pathology associated with specific mutations present in early-onset familial AD and thus represent < 5% of AD cases. To date there are no mouse lines that model late-onset/age-related AD, the feature which accounts for the vast majority of cases. As such, based on current mutation-associated models, the chronology of events that lead to the disease in the aged population is difficult to establish. However, published data show that senescence-accelerated mouse (SAMP8), as a model of aging, display many features that are known to occur early in the pathogenesis of AD such as increased oxidative stress, amyloid-beta alterations, and tau phosphorylation. Therefore, SAMP8 mice may be an excellent model for studying the earliest neurodegenerative changes associated with AD and provide a more encompassing picture of human disease, a syndrome triggered by a combination of age-related events. Here, the neurochemical, neuropathological, and behavioral alterations, characterized in SAMP8 mice are critically reviewed and discussed in relation to the potential use of this mouse model in the study of AD pathogenesis.

摘要

目前的阿尔茨海默病(AD)小鼠模型仅限于表达与早发性家族性AD中特定突变相关的AD相关病理,因此仅代表不到5%的AD病例。迄今为止,尚无模拟晚发性/年龄相关性AD的小鼠品系,而这一特征占绝大多数病例。因此,基于当前与突变相关的模型,很难确定导致老年人群发病的事件顺序。然而,已发表的数据表明,作为衰老模型的衰老加速小鼠(SAMP8)表现出许多已知在AD发病机制早期出现的特征,如氧化应激增加、β-淀粉样蛋白改变和tau蛋白磷酸化。因此,SAMP8小鼠可能是研究与AD相关的最早神经退行性变化的优秀模型,并能更全面地呈现人类疾病的情况,这种综合征是由一系列与年龄相关的事件共同引发的。在此,对SAMP8小鼠的神经化学、神经病理学和行为改变进行了批判性综述,并讨论了该小鼠模型在AD发病机制研究中的潜在用途。

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