首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Three-dimensional Super Resolution Microscopy of F-actin Filaments by Interferometric PhotoActivated Localization Microscopy (iPALM)
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Three-dimensional Super Resolution Microscopy of F-actin Filaments by Interferometric PhotoActivated Localization Microscopy (iPALM)

机译:F-肌动蛋白丝的三维超分辨显微镜的干涉光活化定位显微镜(iPALM)

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摘要

Fluorescence microscopy enables direct visualization of specific biomolecules within cells. However, for conventional fluorescence microscopy, the spatial resolution is restricted by diffraction to ~ 200 nm within the image plane and > 500 nm along the optical axis. As a result, fluorescence microscopy has long been severely limited in the observation of ultrastructural features within cells. The recent development of super resolution microscopy methods has overcome this limitation. In particular, the advent of photoswitchable fluorophores enables localization-based super resolution microscopy, which provides resolving power approaching the molecular-length scale. Here, we describe the application of a three-dimensional super resolution microscopy method based on single-molecule localization microscopy and multiphase interferometry, called interferometric PhotoActivated Localization Microscopy (iPALM). This method provides nearly isotropic resolution on the order of 20 nm in all three dimensions. Protocols for visualizing the filamentous actin cytoskeleton, including specimen preparation and operation of the iPALM instrument, are described here. These protocols are also readily adaptable and instructive for the study of other ultrastructural features in cells.
机译:荧光显微镜可以直接观察细胞内特定的生物分子。但是,对于常规的荧光显微镜,空间分辨率受衍射限制在像平面内〜200 nm且沿光轴> 500 nm。结果,长期以来,荧光显微镜在观察细胞内超微结构特征方面一直受到严重限制。超分辨率显微镜方法的最新发展已经克服了这一限制。特别地,光可切换的荧光团的出现使得能够进行基于定位的超分辨率显微镜,其提供了接近分子尺度的分辨能力。在这里,我们描述了基于单分子定位显微镜和多相干涉法的三维超分辨率显微镜方法的应用,称为干涉光激活定位显微镜(iPALM)。该方法在所有三个维度上提供的近似各向同性的分辨率约为20 nm。此处介绍了可视化丝状肌动蛋白细胞骨架的方案,包括样品制备和iPALM仪器的操作。这些协议对于研究细胞中其他超微结构特征也很容易适应和指导。

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