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Carboxylic monolayer formation for observation of intracellular structures in HeLa cells with direct electron beam excitation-assisted fluorescence microscopy

机译:羧酸单层形成用于直接电子束激发辅助荧光显微镜观察HeLa细胞的细胞内结构

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摘要

Intracellular structures of HeLa cells are observed using a direct electron beam excitation-assisted fluorescence (D-EXA) microscope. In this microscope, a silicon nitride membrane is used as a culture plate, which typically has a low biocompatibility between the sample and the silicon nitride surface to prevent the HeLa cells from adhering strongly to the surface. In this work, the surface of silicon nitride is modified to allow strong cell attachment, which enables high-resolution observation of intracellular structures and an increased signal-to-noise ratio. In addition, the penetration depth of the electron beam is evaluated using Monte Carlo simulations. We can conclude from the results of the observations and simulations that the surface modification technique is promising for the observation of intracellular structures using the D-EXA microscope.
机译:使用直接电子束激发辅助荧光(D-EXA)显微镜观察HeLa细胞的细胞内结构。在该显微镜中,氮化硅膜用作培养板,通常在样品和氮化硅表面之间具有较低的生物相容性,以防止HeLa细胞牢固粘附在表面上。在这项工作中,对氮化硅的表面进行了修饰,以实现牢固的细胞附着,从而可以高分辨率观察细胞内结构并提高信噪比。另外,使用蒙特卡洛模拟评估电子束的穿透深度。我们可以从观察和模拟的结果得出结论,表面修饰技术有望用于使用D-EXA显微镜观察细胞内结构。

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