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Spatially and Temporally Synchronized Atomic Force and Total Internal Reflection Fluorescence Microscopy for Imaging and Manipulating Cells and Biomolecules

机译:时空同步原子力和全内反射荧光显微镜用于成像和操纵细胞和生物分子

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摘要

The atomic force microscope is a high-resolution scanning-probe instrument which has become an important tool for cellular and molecular biophysics in recent years but lacks the time resolution and functional specificities offered by fluorescence microscopic techniques. To exploit the advantages of both methods, here we developed a spatially and temporally synchronized total internal reflection fluorescence and atomic force microscope system. The instrument, which we hereby call STIRF-AFM, is a stage-scanning device in which the mechanical and optical axes are coaligned to achieve spatial synchrony. At each point of the scan the sample topography (atomic force microscope) and fluorescence (photon count or intensity) information are simultaneously recorded. The tool was tested and validated on various cellular (monolayer cells in which actin filaments and intermediate filaments were fluorescently labeled) and biomolecular (actin filaments and titin molecules) systems. We demonstrate that with the technique, correlated sample topography and fluorescence images can be recorded, soft biomolecular systems can be mechanically manipulated in a targeted fashion, and the fluorescence of mechanically stretched titin can be followed with high temporal resolution.
机译:原子力显微镜是一种高分辨率的扫描探针仪器,近年来已成为细胞和分子生物物理学的重要工具,但缺乏荧光显微镜技术提供的时间分辨率和功能特异性。为了利用这两种方法的优势,在这里我们开发了一个时空同步的全内反射荧光和原子力显微镜系统。该仪器,我们在此称为STIRF-AFM,是一种阶段扫描设备,其中机械轴和光轴相互对齐以实现空间同步。在扫描的每个点,同时记录样品的形貌(原子力显微镜)和荧光(光子计数或强度)信息。该工具已在各种细胞(荧光素标记肌动蛋白丝和中间丝的单层细胞)和生物分子(肌动蛋白丝和肌动蛋白分子)系统上进行了测试和验证。我们证明,利用该技术,可以记录相关的样品形貌和荧光图像,可以以有针对性的方式对柔软的生物分子系统进行机械操作,并且可以以较高的时间分辨率跟踪机械拉伸的钛蛋白的荧光。

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