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AAV2/1 CD74 Gene Transfer Reduces β-amyloidosis and Improves Learning and Memory in a Mouse Model of Alzheimers Disease

机译:AAV2 / 1 CD74基因转移减少阿尔茨海默氏病小鼠模型的β-淀粉样变性并改善学习和记忆

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摘要

Modulation of the amyloid-β (Aβ) trafficking pathway heralds a new therapeutic frontier for Alzheimer's disease (AD). As CD74 binds to the amyloid-β precursor protein (APP) and can suppresses Aβ processing, we investigated whether recombinant adeno-associated virus (AAV) delivery of CD74 could reduce Aβ production and affect disease outcomes. This idea was tested in a mouse AD model. Cotransduction of AAV-tetracycline-controlled transactivator (tTA) and AAV-tet-response element (TRE)-CD74 resulted in CD74 expression, reduced Aβ production in mouse neurons containing the human APP with familial AD-linked mutations. Stereotaxic injection of AAV-TRE-GFP or CD74 into the hippocampi of an AD mouse, defined as a TgCRND8 × calmodulin-dependent protein kinase II derived promoter-tTA double-transgenic, reduced Aβ loads and pyramidal neuronal Aβ accumulation in the hippocampus. Immunofluorescent studies showed that APP colocalization with Lamp1 was increased in CD74-expressing neurons. Moreover, Morris water maze tasks demonstrated that mice treated with AAV-TRE-CD74 showed improved learning and memory compared to AAV-TRE-GFP control animals. These results support the idea that CD74-induced alteration of Aβ processing could improve AD-associated memory deficits as shown in mouse models of human disease.
机译:淀粉样蛋白-β(Aβ)转运途径的调节预示着阿尔茨海默氏病(AD)的新治疗前沿。由于CD74与淀粉样β前体蛋白(APP)结合并可以抑制Aβ加工,我们研究了CD74的重组腺相关病毒(AAV)传递是否可以减少Aβ产生并影响疾病结局。这个想法已经在鼠标AD模型中进行了测试。 AAV-四环素控制的反式激活因子(tTA)和AAV-tet反应元件(TRE)-CD74的共转导导致CD74表达,减少了含有人AD突变的人APP的小鼠神经元中Aβ的产生。将AAV-TRE-GFP或CD74立体定向注射到AD小鼠的海马体中,定义为TgCRND8×钙调蛋白依赖性蛋白激酶II衍生的启动子-tTA双转基因,减少了Aβ的负荷并减少了海马锥体神经元Aβ的积累。免疫荧光研究表明,在表达CD74的神经元中APP与Lamp1的共定位增加。此外,莫里斯水迷宫任务表明,与AAV-TRE-GFP对照动物相比,用AAV-TRE-CD74处理的小鼠显示出改善的学习和记忆。这些结果支持这样的想法,即CD74诱导的Aβ加工改变可以改善与AD相关的记忆缺陷,如人类疾病的小鼠模型所示。

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