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Neuron loss in the 5XFAD mouse model of Alzheimer’s disease correlates with intraneuronal Aβ42 accumulation and Caspase-3 activation

机译:阿尔茨海默氏病5XFAD小鼠模型中的神经元丢失与神经内Aβ 42 积累和Caspase-3激活相关

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Background Although the mechanism of neuron loss in Alzheimer’s disease (AD) is enigmatic, it is associated with cerebral accumulation of Aβ42. The 5XFAD mouse model of amyloid deposition expresses five familial AD (FAD) mutations that are additive in driving Aβ42 overproduction. 5XFAD mice exhibit intraneuronal Aβ42 accumulation at 1.5 months, amyloid deposition at 2 months, and memory deficits by 4 months of age. Results Here, we demonstrate by unbiased stereology that statistically significant neuron loss occurs by 9 months of age in 5XFAD mice. We validated two Aβ42-selective antibodies by immunostaining 5XFAD; BACE1?/? bigenic brain sections and then used these antibodies to show that intraneuronal Aβ42 and amyloid deposition develop in the same regions where neuron loss is observed in 5XFAD brain. In 5XFAD neuronal soma, intraneuronal Aβ42 accumulates in puncta that co-label for Transferrin receptor and LAMP-1, indicating endosomal and lysosomal localization, respectively. In addition, in young 5XFAD brains, we observed activated Caspase-3 in the soma and proximal dendrites of intraneuronal Aβ42-labeled neurons. In older 5XFAD brains, we found activated Caspase-3-positive punctate accumulations that co-localize with the neuronal marker class III β-tubulin, suggesting neuron loss by apoptosis. Conclusions Together, our results indicate a temporal sequence of intraneuronal Aβ42 accumulation, Caspase-3 activation, and neuron loss that implies a potential apoptotic mechanism of neuron death in the 5XFAD mouse.
机译:背景尽管阿尔茨海默氏病(AD)中神经元丢失的机制是未知的,但它与Aβ42的脑积聚有关。淀粉样蛋白沉积的5XFAD小鼠模型表达了五个家族性AD(FAD)突变,这些突变可促进Aβ42的过度生产。 5XFAD小鼠在1.5个月时出现神经内Aβ42积累,在2个月时出现淀粉样沉积,到4个月大时出现记忆缺陷。结果在这里,我们通过无偏见的立体证明5XFAD小鼠在9个月大时就发生了统计学上显着的神经元丢失。我们通过免疫染色5XFAD验证了两种Aβ42选择性抗体; BACE1?//然后使用这些抗体来显示神经元内Aβ42和淀粉样蛋白沉积在5XFAD脑中观察到神经元丢失的相同区域中发展。在5XFAD神经元体中,神经元内Aβ42积聚在泪点中,这是转铁蛋白受体和LAMP-1的共同标记,分别指示内体和溶酶体的定位。此外,在年轻的5XFAD脑中,我们观察到神经元内Aβ42标记的神经元的体细胞和近端树突中的Caspase-3活化。在较老的5XFAD大脑中,我们发现激活的Caspase-3阳性点状积累与神经元标记III类β-微管蛋白共定位,提示神经元因凋亡而丢失。结论总之,我们的结果表明神经元内Aβ42积累,Caspase-3激活和神经元丢失的时间序列,暗示5XFAD小鼠中神经元死亡的潜在凋亡机制。

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