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阿尔茨海默病转基因 APP/PS1 小鼠模型视网膜、海马和皮质中铜、铁和锌的分布。

Distribution of Copper, Iron, and Zinc in the Retina, Hippocampus, and Cortex of the Transgenic APP/PS1 Mouse Model of Alzheimer's Disease.

机构信息

Institute for Biomedical Materials and Devices, School of Mathematical and Physical Sciences, Faculty of Science, University of Technology Sydney, 15 Broadway, Sydney, NSW 2007, Australia.

Hyphenated Mass Spectrometry Laboratory (HyMaS), School of Mathematical and Physical Sciences, Faculty of Science, University of Technology Sydney, 15 Broadway, Sydney, NSW 2007, Australia.

出版信息

Cells. 2023 Apr 13;12(8):1144. doi: 10.3390/cells12081144.

Abstract

A mis-metabolism of transition metals (i.e., copper, iron, and zinc) in the brain has been recognised as a precursor event for aggregation of Amyloid-β plaques, a pathological hallmark of Alzheimer's disease (AD). However, imaging cerebral transition metals in vivo can be extremely challenging. As the retina is a known accessible extension of the central nervous system, we examined whether changes in the hippocampus and cortex metal load are also mirrored in the retina. Laser ablation inductively coupled plasma-mass spectrometry (LA-ICP-MS) was used to visualise and quantify the anatomical distribution and load of Cu, Fe, and Zn in the hippocampus, cortex, and retina of 9-month-old Amyloid Precursor Protein/Presenilin 1 (APP/PS1, = 10) and Wild Type (WT, = 10) mice. Our results show a similar metal load trend between the retina and the brain, with the WT mice displaying significantly higher concentrations of Cu, Fe, and Zn in the hippocampus ( < 0.05, < 0.0001, < 0.01), cortex ( < 0.05, = 0.18, < 0.0001) and the retina ( < 0.001, = 0.01, < 0.01) compared with the APP/PS1 mice. Our findings demonstrate that dysfunction of the cerebral transition metals in AD is also extended to the retina. This could lay the groundwork for future studies on the assessment of transition metal load in the retina in the context of early AD.

摘要

大脑中过渡金属(即铜、铁和锌)的代谢异常已被认为是淀粉样β斑块聚集的前体事件,淀粉样β斑块是阿尔茨海默病(AD)的病理标志。然而,在体内对大脑中的过渡金属进行成像可能极具挑战性。由于视网膜是中枢神经系统的已知可及延伸部分,我们研究了海马体和皮质中的金属负荷变化是否也反映在视网膜中。激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)用于可视化和量化 APP/PS1(n = 10)和野生型(WT,n = 10)小鼠海马体、皮质和视网膜中 Cu、Fe 和 Zn 的解剖分布和负荷。我们的结果表明,视网膜和大脑之间存在相似的金属负荷趋势,WT 小鼠的海马体(<0.05,<0.0001,<0.01)、皮质(<0.05,=0.18,<0.0001)和视网膜(<0.001,=0.01,<0.01)中 Cu、Fe 和 Zn 的浓度明显更高。与 APP/PS1 小鼠相比。我们的发现表明,AD 中大脑过渡金属的功能障碍也扩展到了视网膜。这为未来在 AD 早期评估视网膜中过渡金属负荷的研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c92/10136451/d7b84d510613/cells-12-01144-g001.jpg

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