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Intra- and extracellular β-amyloid overexpression via adeno-associated virus-mediated gene transfer impairs memory and synaptic plasticity in the hippocampus

机译:通过腺相关病毒介导的基因转移的血细胞和细胞外β-淀粉样蛋白过表达损害了海马中的记忆和突触塑性

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Alzheimer's disease (AD), the most common age-related neurodegenerative disorder, is currently conceptualized as a disease of synaptic failure. Synaptic impairments are robust within the AD brain and better correlate with dementia severity when compared with other pathological features of the disease. Nevertheless, the series of events that promote synaptic failure still remain under debate, as potential triggers such as β-amyloid (Aβ) can vary in size, configuration and cellular location, challenging data interpretation in causation studies. Here we present data obtained using adeno-associated viral (AAV) constructs that drive the expression of oligomeric Aβ either intra or extracellularly. We observed that expression of Aβ in both cellular compartments affect learning and memory, reduce the number of synapses and the expression of synaptic-related proteins, and disrupt chemical long-term potentiation (cLTP). Together, these findings indicate that during the progression AD the early accumulation of Aβ inside neurons is sufficient to promote morphological and functional cellular toxicity, a phenomenon that can be exacerbated by the buildup of Aβ in the brain parenchyma. Moreover, our AAV constructs represent a valuable tool in the investigation of the pathological properties of Aβ oligomers both in vivo and in vitro.
机译:阿尔茨海默病(AD),最常见的年龄相关的神经变性障碍,目前是概念化为突触衰竭的疾病。与疾病的其他病理特征相比,突触损伤在广告脑内和更好地与痴呆严重程度相关。尽管如此,促进突触衰竭的一系列事件仍然存在于辩论中,因为诸如β-淀粉样(Aβ)的潜在触发器可以在大小,配置和细胞位置变化,具有挑战性地在因果关系中的数据解释。在这里,我们呈现使用腺体相关病毒(AAV)构建体获得的数据,该构建体驱动寡聚Aβ的表达或细胞外。我们观察到,两种细胞室中Aβ的表达影响学习和记忆,减少突触突变数和突触相关蛋白的表达,并破坏化学长期增强(CLTP)。这些发现表明,在进展广告期间,Aβ内部神经元的早期积累足以促进形态学和功能性细胞毒性,这种现象可以通过脑进行脑部中Aβ的累积而加剧。此外,我们的AAV构建体代表了在体内和体外均有β低聚物的病理特性进行有价值的工具。

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