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HiExM:高通量扩展显微镜实现可扩展的超分辨率成像。

HiExM: high-throughput expansion microscopy enables scalable super-resolution imaging.

作者信息

Day John H, Santina Catherine Marin Della, Maretich Pema, Auld Alexander L, Schnieder Kirsten K, Shin Tay, Boyden Edward S, Boyer Laurie A

机构信息

Department of Biological Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139 USA.

Department of Biology, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139 USA.

出版信息

bioRxiv. 2024 Sep 25:2023.02.07.527509. doi: 10.1101/2023.02.07.527509.

Abstract

Expansion microscopy (ExM) enables nanoscale imaging using a standard confocal microscope through the physical, isotropic expansion of fixed immunolabeled specimens. ExM is widely employed to image proteins, nucleic acids, and lipid membranes in single cells; however, current methods limit the number of samples that can be processed simultaneously. We developed High-throughput Expansion Microscopy (HiExM), a robust platform that enables expansion microscopy of cells cultured in a standard 96-well plate. Our method enables ~4.2x expansion of cells within individual wells, across multiple wells, and between plates. We also demonstrate that HiExM can be combined with high-throughput confocal imaging platforms to greatly improve the ease and scalability of image acquisition. As an example, we analyzed the effects of doxorubicin, a known cardiotoxic agent, on human cardiomyocytes (CMs) as measured by Hoechst signal across the nucleus. We show a dose dependent effect on nuclear DNA that is not observed in unexpanded CMs, suggesting that HiExM improves the detection of cellular phenotypes in response to drug treatment. Our method broadens the application of ExM as a tool for scalable super-resolution imaging in biological research applications.

摘要

扩展显微镜技术(ExM)通过对固定的免疫标记样本进行物理各向同性扩展,能够使用标准共聚焦显微镜进行纳米级成像。ExM被广泛用于对单细胞中的蛋白质、核酸和脂质膜进行成像;然而,目前的方法限制了可同时处理的样本数量。我们开发了高通量扩展显微镜技术(HiExM),这是一个强大的平台,能够对在标准96孔板中培养的细胞进行扩展显微镜成像。我们的方法能够在单个孔内、多个孔之间以及不同板之间对细胞进行约4.2倍的扩展。我们还证明,HiExM可以与高通量共聚焦成像平台相结合,大大提高图像采集的便捷性和可扩展性。例如,我们分析了已知的心脏毒性药物阿霉素对人类心肌细胞(CMs)的影响,通过细胞核上的Hoechst信号进行测量。我们显示出对核DNA的剂量依赖性效应,而在未扩展的CMs中未观察到这种效应,这表明HiExM提高了对药物处理后细胞表型的检测能力。我们的方法拓宽了ExM作为生物研究应用中可扩展超分辨率成像工具的应用范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bde9/11441761/6de29ff56485/nihpp-2023.02.07.527509v4-f0001.jpg

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