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优化免疫标记,以实现对单个样本的荧光和电子显微镜的相关观察。

Optimizing immuno-labeling for correlative fluorescence and electron microscopy on a single specimen.

机构信息

Molecular Biophysics, Department of Physics and Astronomy, Utrecht University, Princetonplein 1, Utrecht, The Netherlands.

出版信息

J Struct Biol. 2012 Nov;180(2):382-6. doi: 10.1016/j.jsb.2012.09.002. Epub 2012 Sep 13.

DOI:10.1016/j.jsb.2012.09.002
PMID:22982545
Abstract

Correlative fluorescence and electron microscopy has become an indispensible tool for research in cell biology. The integrated Laser and Electron Microscope (iLEM) combines a Fluorescence Microscope (FM) and a Transmission Electron Microscope (TEM) within one set-up. This unique imaging tool allows for rapid identification of a region of interest with the FM, and subsequent high resolution TEM imaging of this area. Sample preparation is one of the major challenges in correlative microscopy of a single specimen; it needs to be apt for both FM and TEM imaging. For iLEM, the performance of the fluorescent probe should not be impaired by the vacuum of the TEM. In this technical note, we have compared the fluorescence intensity of six fluorescent probes in a dry, oxygen free environment relative to their performance in water. We demonstrate that the intensity of some fluorophores is strongly influenced by its surroundings, which should be taken into account in the design of the experiment. Furthermore, a freeze-substitution and Lowicryl resin embedding protocol is described that yields excellent membrane contrast in the TEM but prevents quenching of the fluorescent immuno-labeling. The embedding protocol results in a single specimen preparation procedure that performs well in both FM and TEM. Such procedures are not only essential for the iLEM, but also of great value to other correlative microscopy approaches.

摘要

相关荧光和电子显微镜已成为细胞生物学研究中不可或缺的工具。集成的激光和电子显微镜(iLEM)在一个设置中结合了荧光显微镜(FM)和透射电子显微镜(TEM)。这种独特的成像工具允许使用 FM 快速识别感兴趣的区域,然后对该区域进行高分辨率 TEM 成像。对于单个样本的相关显微镜,样品制备是主要挑战之一;它需要同时适用于 FM 和 TEM 成像。对于 iLEM,荧光探针的性能不应因 TEM 的真空而受损。在本技术说明中,我们比较了六种荧光探针在干燥、无氧环境中的荧光强度与其在水中的性能。我们证明,一些荧光团的强度受其周围环境的强烈影响,在实验设计中应考虑到这一点。此外,还描述了一种冷冻替代和低聚物树脂包埋方案,该方案在 TEM 中产生出色的膜对比度,但可防止荧光免疫标记淬灭。该包埋方案可实现一种标本制备程序,该程序在 FM 和 TEM 中均表现良好。这种程序不仅对 iLEM 至关重要,而且对其他相关显微镜方法也具有重要价值。

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