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放大扩展受激发射损耗显微镜。

Amplified Expansion Stimulated Emission Depletion Microscopy.

机构信息

Center for Molecular Spectroscopy and Dynamics, Institute for Basic Science (IBS), Department of Chemistry, Korea University, Seoul, 02841, Republic of Korea.

Department of Chemistry, Sungkyunkwan University, Suwon, 440-746, Republic of Korea.

出版信息

Chembiochem. 2019 May 15;20(10):1260-1265. doi: 10.1002/cbic.201800775. Epub 2019 Apr 8.

Abstract

Expansion microscopy (ExM) enhances spatial resolution by using a swellable polymer that expands the sample volume by a factor of ≈4 in one dimension and a factor of ≈64 in volume. Combining ExM with stimulated emission depletion (STED) microscopy, referred to as ExSTED, increases the resolution to up to 10 nm. However, photobleaching is a critical issue in ExSTED because the sample expansion lowers the fluorophore density whereas high-resolution STED requires high depletion intensity. To overcome these issues, we developed extremely bright expansion nanoscopy by using biotin-avidin signal amplification to increase the labeling density. Our method provides up to sevenfold increases in fluorescence signal intensity in expanded samples, thus enabling the use of STED imaging with maximum depletion intensities of a commercial microscope in the order of GW cm . We demonstrated the method by using biotinylated antibodies and genetic incorporation approaches that allow localization of biotin in a specific molecule or organelle.

摘要

扩展显微镜(ExM)通过使用可溶胀聚合物来提高空间分辨率,该聚合物可将样品体积在一维方向上扩展约 4 倍,在体积方向上扩展约 64 倍。将 ExM 与受激发射损耗(STED)显微镜结合使用,称为 ExSTED,可以将分辨率提高到 10nm 。然而,光漂白是 ExSTED 中的一个关键问题,因为样品的扩展降低了荧光团的密度,而高分辨率的 STED 需要高的耗尽强度。为了克服这些问题,我们通过使用生物素-亲和素信号放大来开发了超亮扩展纳米显微镜,以增加标记密度。我们的方法在扩展的样品中提供了高达七倍的荧光信号强度增加,从而可以使用商用显微镜的最大耗尽强度进行 STED 成像,其强度约为 GW·cm 。我们通过使用生物素化抗体和遗传掺入方法来证明该方法,该方法允许将生物素定位在特定的分子或细胞器中。

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