Department of Anatomy, Radboud University Nijmegen Medical Centre, Donders Institute for Brain, Cognition and Behaviour, Donders Centre for Neuroscience, Nijmegen, The Netherlands.
PLoS One. 2013 May 22;8(5):e63643. doi: 10.1371/journal.pone.0063643. Print 2013.
Proton magnetic resonance spectroscopy ((1)H MRS) is a valuable tool in Alzheimer's disease research, investigating the functional integrity of the brain. The present longitudinal study set out to characterize the neurochemical profile of the hippocampus, measured by single voxel (1)H MRS at 7 Tesla, in the brains of AβPPSswe-PS1dE9 and wild-type mice at 8 and 12 months of age. Furthermore, we wanted to determine whether alterations in hippocampal metabolite levels coincided with behavioral changes, cognitive decline and neuropathological features, to gain a better understanding of the underlying neurodegenerative processes. Moreover, correlation analyses were performed in the 12-month-old AβPP-PS1 animals with the hippocampal amyloid-β deposition, TBS-T soluble Aβ levels and high-molecular weight Aβ aggregate levels to gain a better understanding of the possible involvement of Aβ in neurochemical and behavioral changes, cognitive decline and neuropathological features in AβPP-PS1 transgenic mice. Our results show that at 8 months of age AβPPswe-PS1dE9 mice display behavioral and cognitive changes compared to age-matched wild-type mice, as determined in the open field and the (reverse) Morris water maze. However, there were no variations in hippocampal metabolite levels at this age. AβPP-PS1 mice at 12 months of age display more severe behavioral and cognitive impairment, which coincided with alterations in hippocampal metabolite levels that suggest reduced neuronal integrity. Furthermore, correlation analyses suggest a possible role of Aβ in inflammatory processes, synaptic dysfunction and impaired neurogenesis.
质子磁共振波谱(1H MRS)是阿尔茨海默病研究中的一种有价值的工具,用于研究大脑的功能完整性。本纵向研究旨在通过 7 特斯拉单体素(1)H MRS 来描述 AβPPSswe-PS1dE9 和野生型小鼠大脑中海马体的神经化学特征,在 8 个月和 12 个月大时进行测量。此外,我们还想确定海马体代谢物水平的变化是否与行为变化、认知能力下降和神经病理学特征相吻合,以更好地了解潜在的神经退行性过程。此外,还对 12 个月大的 AβPP-PS1 动物进行了相关性分析,与海马体淀粉样蛋白-β沉积、TBS-T 可溶性 Aβ 水平和高分子量 Aβ 聚集物水平相关,以更好地了解 Aβ 在 AβPP-PS1 转基因小鼠的神经化学和行为变化、认知能力下降和神经病理学特征中的可能作用。我们的结果表明,与年龄匹配的野生型小鼠相比,8 个月大的 AβPPswe-PS1dE9 小鼠在开阔场和(反向)莫里斯水迷宫中表现出行为和认知变化。然而,在这个年龄,海马体代谢物水平没有变化。12 个月大的 AβPP-PS1 小鼠表现出更严重的行为和认知障碍,这与海马体代谢物水平的变化相吻合,表明神经元完整性降低。此外,相关性分析表明 Aβ 可能在炎症过程、突触功能障碍和神经发生受损中发挥作用。