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Effect of genotype and age on cerebral 18FFDG uptake varies between transgenic APPSwe-PS1dE9 and Tg2576 mouse models of Alzheimer’s disease

机译:基因型和年龄对脑18F FDG摄取的影响在阿尔茨海默氏病转基因APPSwe-PS1dE9和Tg2576小鼠模型之间有所不同

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摘要

Back-translation of clinical imaging biomarkers of Alzheimer’s disease (AD), such as alterations in cerebral glucose metabolism detected by [18F]FDG positron emission tomography (PET), would be valuable for preclinical studies evaluating new disease-modifying drugs for AD. However, previous confounding results have been difficult to interpret due to differences in mouse models and imaging protocols between studies. We used an equivalent study design and [18F]FDG µPET imaging protocol to compare changes in cerebral glucose metabolism in commercial transgenic APPSwe-PS1dE9 (n = 12), Tg2576 (n = 15), and wild-type mice (n = 15 and 9). Dynamic [18F]FDG scans were performed in young (6 months) and aged (12 or 17 months) mice and the results verified by ex vivo methods (i.e., tissue counting, digital autoradiography, and beta-amyloid and Iba-1 immunohistochemistry). [18F]FDG uptake exhibited significant regional differences between genotypes (TG < WT) and ages (6 months <12 months) in the APPSwe-PS1dE9 model, whereas similar differences were not present in Tg2576 mice. In both models, only weak correlations were detected between regional beta-amyloid deposition or microgliosis and [18F]FDG uptake. By using equivalent methodology, this study demonstrated differences in cerebral glucose metabolism dysfunction detected with [18F]FDG PET between two widely used commercial AD mouse models.
机译:阿尔茨海默氏病(AD)的临床成像生物标志物的回译,例如[ 18 F] FDG正电子发射断层扫描(PET)检测到的脑葡萄糖代谢改变,对于评估新用于AD的疾病缓解药物。然而,由于研究之间小鼠模型和成像方案的差异,以前的混淆结果难以解释。我们使用了等效的研究设计和[ 18 F] FDG µPET成像方案,比较了商业转基因APPSwe-PS1dE9(n = 12),Tg2576(n = 15)和野生动物中脑葡萄糖代谢的变化型小鼠(n = 15和9)。在年轻(6个月)和年龄(12或17个月)小鼠中进行动态[ 18 F] FDG扫描,并通过离体方法(即组织计数,数字放射自显影和β)验证了结果-淀粉样蛋白和Iba-1免疫组化)。在APPSwe-PS1dE9模型中,[ 18 F] FDG摄取在基因型(TG 18 F] FDG摄取之间的弱相关性。通过使用等效方法,本研究证明了在两种广泛使用的商业AD小鼠模型之间,通过[ 18 F] FDG PET检测到的脑葡萄糖代谢功能障碍的差异。

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