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利用扩展显微镜绘制神经元细胞骨架。

Mapping the neuronal cytoskeleton using expansion microscopy.

机构信息

Cell Biology, Neurobiology and Biophysics, Department of Biology, Faculty of Science, Utrecht University, Utrecht, The Netherlands.

Cell Biology, Neurobiology and Biophysics, Department of Biology, Faculty of Science, Utrecht University, Utrecht, The Netherlands.

出版信息

Methods Cell Biol. 2021;161:105-124. doi: 10.1016/bs.mcb.2020.04.018. Epub 2020 Jun 3.

Abstract

Expansion microscopy (ExM) is a recently introduced technique that enables high-resolution imaging with conventional microscopes by using physical expansion of samples. While this technique does not require a complicated microscope setup (like in STED or STORM microscopy), sample preparation and handling require additional attention. Here we describe a workflow for imaging of the neuronal microtubule network with minimal artifacts and sample perturbations. We demonstrate that the use of custom-printed mounting chambers simplifies sample handling and facilitates stable imaging of the sample. In addition, refractive index matching between the sample and the objective greatly improves signal retention deeper in thick samples. To accurately determine the precise expansion factor and determine sample distortion, we describe how samples can be compared using STED and ExM. Together, these procedures enabled us to better resolve different microtubule subsets in neuronal soma and dendrites.

摘要

扩展显微镜技术(ExM)是一种最近引入的技术,它通过对样品进行物理扩展,使传统显微镜能够进行高分辨率成像。虽然该技术不需要像 STED 或 STORM 显微镜那样复杂的显微镜设置,但样品制备和处理需要额外的注意。在这里,我们描述了一种用于最小化伪影和样品扰动的神经元微管网络成像的工作流程。我们证明,使用定制印刷的安装室简化了样品处理,并促进了样品的稳定成像。此外,样品和物镜之间的折射率匹配极大地提高了厚样品中更深层的信号保留。为了准确确定精确的扩展因子并确定样品变形,我们描述了如何使用 STED 和 ExM 对样品进行比较。这些程序使我们能够更好地分辨神经元胞体和树突中不同的微管亚群。

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