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大气扫描电子显微镜通过氮化硅膜观察开放介质中的细胞和组织。

Atmospheric scanning electron microscope observes cells and tissues in open medium through silicon nitride film.

机构信息

Advanced Technology Division, JEOL Ltd., Musashino 3-1-2, Akishima, Tokyo 196-8558, Japan.

出版信息

J Struct Biol. 2010 Mar;169(3):438-49. doi: 10.1016/j.jsb.2010.01.005. Epub 2010 Jan 15.

Abstract

Direct observation of subcellular structures and their characterization is essential for understanding their physiological functions. To observe them in open environment, we have developed an inverted scanning electron microscope with a detachable, open-culture dish, capable of 8 nm resolution, and combined with a fluorescence microscope quasi-simultaneously observing the same area from the top. For scanning electron microscopy from the bottom, a silicon nitride film window in the base of the dish maintains a vacuum between electron gun and open sample dish while allowing electrons to pass through. Electrons are backscattered from the sample and captured by a detector under the dish. Cells cultured on the open dish can be externally manipulated under optical microscopy, fixed, and observed using scanning electron microscopy. Once fine structures have been revealed by scanning electron microscopy, their component proteins may be identified by comparison with separately prepared fluorescence-labeled optical microscopic images of the candidate proteins, with their heavy-metal-labeled or stained ASEM images. Furthermore, cell nuclei in a tissue block stained with platinum-blue were successfully observed without thin-sectioning, which suggests the applicability of this inverted scanning electron microscope to cancer diagnosis. This microscope visualizes mesoscopic-scale structures, and is also applicable to non-bioscience fields including polymer chemistry.

摘要

直接观察亚细胞结构及其特征对于理解它们的生理功能至关重要。为了在开放环境中观察它们,我们开发了一种具有可拆卸、开放式培养皿的倒置扫描电子显微镜,能够达到 8nm 的分辨率,并结合荧光显微镜,从顶部准同时观察同一区域。对于从底部进行的扫描电子显微镜,培养皿底部的氮化硅薄膜窗口在电子枪和开放式样品培养皿之间保持真空,同时允许电子通过。电子从样品中背散射,并被培养皿下方的探测器捕获。在光学显微镜下可以对外置于开放式培养皿上培养的细胞进行操作,对其进行固定,并使用扫描电子显微镜进行观察。一旦通过扫描电子显微镜揭示了精细结构,可以通过与候选蛋白的单独制备的荧光标记光学显微镜图像进行比较,识别其组成蛋白,以及用重金属标记或染色的 ASEM 图像。此外,成功观察到未经薄切片处理的用铂蓝染色的组织块中的细胞核,这表明这种倒置扫描电子显微镜适用于癌症诊断。该显微镜可视化介观尺度结构,也适用于包括聚合物化学在内的非生物科学领域。

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