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S100A9 Knockout Decreases the Memory Impairment and Neuropathology in Crossbreed Mice of Tg2576 and S100A9 Knockout Mice Model

机译:S100A9基因敲除降低了Tg2576和S100A9基因敲除小鼠模型的杂交小鼠的记忆障碍和神经病理

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摘要

Our previous study presented evidence that the inflammation-related S100A9 gene is significantly upregulated in the brains of Alzheimer's disease (AD) animal models and human AD patients. In addition, experiments have shown that knockdown of S100A9 expression improves cognition function in AD model mice (Tg2576), and these animals exhibit reduced amyloid plaque burden. In this study, we established a new transgenic animal model of AD by crossbreeding the Tg2576 mouse with the S100A9 knockout (KO) mouse. We observed that S100A9KO/Tg2576 (KO/Tg) mice displayed an increased spatial reference memory in the Morris water maze task and Y-maze task as well as decreased amyloid beta peptide (Aβ) neuropathology because of reduced levels of Aβ, C-terminal fragments of amyloid precursor protein (APP-CT) and phosphorylated tau and increased expression of anti-inflammatory IL-10 and also decreased expression of inflammatory IL-6 and tumor neurosis factor (TNF)-α when compared with age-matched S100A9WT/Tg2576 (WT/Tg) mice. Overall, these results suggest that S100A9 is responsible for the neurodegeneration and cognitive deficits in Tg2576 mice. The mechanism of S100A9 is able to coincide with the inflammatory process. These findings indicate that knockout of S100A9 is a potential target for the pharmacological therapy of AD.
机译:我们先前的研究提供了证据,表明与炎症相关的S100A9基因在阿尔茨海默氏病(AD)动物模型和人类AD患者的大脑中显着上调。此外,实验表明,敲低S100A9表达可改善AD模型小鼠(Tg2576)的认知功能,并且这些动物的淀粉样斑块负担减少。在这项研究中,我们通过将Tg2576小鼠与S100A9基因敲除(KO)小鼠杂交,建立了AD的新转基因动物模型。我们观察到,S100A9KO / Tg2576(KO / Tg)小鼠在Morris水迷宫任务和Y迷宫任务中显示出增加的空间参考记忆,并且由于Aβ,C末端水平降低,淀粉样蛋白β肽(Aβ)神经病理学降低。与年龄相匹配的S100A9WT / Tg2576相比,淀粉样前体蛋白(APP-CT)片段和磷酸化的tau片段增加,抗炎性IL-10的表达增加,炎性IL-6和肿瘤神经症因子(TNF)-α的表达降低(WT / Tg)小鼠。总体而言,这些结果表明,S100A9负责Tg2576小鼠的神经退行性变和认知缺陷。 S100A9的机制能够与炎症过程相吻合。这些发现表明,敲除S100A9是AD药物治疗的潜在靶标。

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