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多尺度光学和光声成像在小鼠的淀粉样-β沉积。

Multiscale optical and optoacoustic imaging of amyloid-β deposits in mice.

机构信息

Institute for Biomedical Engineering, University of Zurich and ETH Zurich, Zurich, Switzerland.

Zurich Neuroscience Center (ZNZ), University of Zurich and ETH Zurich, Zurich, Switzerland.

出版信息

Nat Biomed Eng. 2022 Sep;6(9):1031-1044. doi: 10.1038/s41551-022-00906-1. Epub 2022 Jul 14.

Abstract

Deposits of amyloid-β (Aβ) in the brains of rodents can be analysed by invasive intravital microscopy on a submillimetre scale, or via whole-brain images from modalities lacking the resolution or molecular specificity to accurately characterize Aβ pathologies. Here we show that large-field multifocal illumination fluorescence microscopy and panoramic volumetric multispectral optoacoustic tomography can be combined to longitudinally assess Aβ deposits in transgenic mouse models of Alzheimer's disease. We used fluorescent Aβ-targeted probes (the luminescent conjugated oligothiophene HS-169 and the oxazine-derivative AOI987) to transcranially detect Aβ deposits in the cortex of APP/PS1 and arcAβ mice with single-plaque resolution (8 μm) and across the whole brain (including the hippocampus and the thalamus, which are inaccessible by conventional intravital microscopy) at sub-150 μm resolutions. Two-photon microscopy, light-sheet microscopy and immunohistochemistry of brain-tissue sections confirmed the specificity and regional distributions of the deposits. High-resolution multiscale optical and optoacoustic imaging of Aβ deposits across the entire brain in rodents thus facilitates the in vivo study of Aβ accumulation by brain region and by animal age and strain.

摘要

淀粉样蛋白-β (Aβ) 在啮齿动物大脑中的沉积可以通过微创活体显微镜在亚毫米尺度上进行分析,也可以通过缺乏分辨率或分子特异性来准确描述 Aβ 病变的全脑图像进行分析。在这里,我们展示了大视场多焦点荧光显微镜和全景容积多光谱光声断层扫描可以结合使用,以纵向评估阿尔茨海默病转基因小鼠模型中的 Aβ 沉积。我们使用荧光 Aβ 靶向探针(发光共轭寡聚噻吩 HS-169 和吖嗪衍生物 AOI987)经颅检测 APP/PS1 和 arcAβ 小鼠大脑皮质中的 Aβ 沉积,具有单斑块分辨率(8 μm)和全脑分辨率(包括海马体和丘脑,这是传统活体显微镜无法到达的部位),分辨率低于 150 μm。双光子显微镜、光片显微镜和脑组织切片的免疫组织化学证实了沉积物的特异性和区域分布。在整个大脑中对 Aβ 沉积物进行高分辨率多尺度光学和光声成像,从而方便了对 Aβ 在脑区、动物年龄和品系中的积累进行体内研究。

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