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Genomic background-related activation of microglia and reduced β-amyloidosis in a mouse model of Alzheimer’s disease

机译:阿尔茨海默氏病小鼠模型中与小胶质细胞的基因组背景相关的激活和β-淀粉样变性的减少

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摘要

Alzheimer’s disease (AD) is by far the most common neurodegenerative disease. AD is histologically characterized not only by extracellular senile plaques and vascular deposits consisting of β-amyloid (Aβ) but also by accompanying neuroinflammatory processes involving the brain’s microglia. The importance of microglia is still in controversial discussion, which currently favors a protective function in disease progression. Recent findings by different research groups highlighted the importance of strain-specific and mitochondria-specific genomic variations in mouse models of cerebral β-amyloidosis. Here, we want to summarize our previously presented data and add new results that draw attention towards the consideration of strain-specific genomic alterations in the setting of APP transgenes. We present data from APP-transgenic mice in commonly used C57Bl/6J and FVB/N genomic backgrounds and show a direct influence on the kinetics of Aβ deposition and the activity of resident microglia. Plaque size, plaque deposition rate, and the total amount of Aβ are highest in C57Bl/6J mice as compared to the FVB/N genomic background, which can be explained at least partially by a reduced microglia activity toward amyloid deposits in the C57Bl/6J strain.
机译:阿尔茨海默氏病(AD)是迄今为止最常见的神经退行性疾病。 AD的组织学特征不仅在于细胞外老年斑和由β-淀粉样蛋白(Aβ)组成的血管沉积物,而且还伴随有涉及大脑小胶质细胞的神经炎症过程。小胶质细胞的重要性仍在有争议的讨论中,其目前支持疾病进展中的保护功能。不同研究小组的最新发现强调了脑β-淀粉样变性小鼠模型中特定菌株和线粒体特定基因组变异的重要性。在这里,我们要总结以前提供的数据并添加新结果,这些新结果引起人们对APP转基因设置中菌株特异性基因组改变的关注。我们从常用C57Bl / 6J和FVB / N基因组背景中的APP转基因小鼠中提供数据,并显示对Aβ沉积动力学和常驻小胶质细胞活性的直接影响。与FVB / N基因组背景相比,C57Bl / 6J小鼠的斑块大小,斑块沉积速率和Aβ总量最高,这可以至少部分地由对C57Bl / 6J的淀粉样沉积物的小胶质细胞活性降低来解释应变。

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