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用于扫描透射电子断层扫描的改进 3D 超微结构的冷冻固定细胞的制备。

Preparation of cryofixed cells for improved 3D ultrastructure with scanning transmission electron tomography.

机构信息

Electron Microscopy Facility, Ulm University, Ulm, Germany.

出版信息

Histochem Cell Biol. 2011 Jan;135(1):1-9. doi: 10.1007/s00418-010-0765-z. Epub 2010 Nov 27.

Abstract

Scanning transmission electron tomography offers enhanced contrast compared to regular transmission electron microscopy, and thicker samples, up to 1 μm or more, can be analyzed, since the depth of focus and inelastic scattering are not limitations. In this study, we combine this novel imaging approach with state of the art specimen preparation by using novel light transparent sapphire specimen carrier for high-pressure freezing and a freeze substitution protocol for better contrast of membranes. This combination allows for imaging membranes and other subcellular structures with unsurpassed quality. This is demonstrated with mitochondria, where the inner and outer mitochondrial membranes as well as the membranes in the cristae appear in very close apposition with a minimal intermembrane space. These findings correspond well with old observations using freeze fracturing. In 880-nm thick sections of hemophagocytes, the three-dimensional structure of membrane sheets could be observed in the virtual sections of the tomogram. Microtubules, actin and intermediate filaments could be visualized within one sample. Intermediate filaments, however, could even be better observed in 3D using surface scanning electron tomography.

摘要

扫描透射电子断层成像术(Scanning transmission electron tomography)与常规的透射电子显微镜(Transmission electron microscopy)相比,具有更高的对比度,并且可以分析更厚的样品,厚度可达 1μm 甚至更厚,因为其景深和非弹性散射不受限制。在这项研究中,我们将这种新颖的成像方法与最先进的标本制备相结合,使用新型透光蓝宝石标本载体进行高压冷冻,并采用冷冻替代协议以更好地对比膜。这种组合可以实现具有无与伦比质量的膜和其他亚细胞结构的成像。这一点通过线粒体得到了证明,其中内外膜以及嵴中的膜以非常接近的方式出现,膜间隙极小。这些发现与使用冷冻断裂的旧观察结果非常吻合。在噬血细胞的 880nm 厚切片中,可以在断层图像的虚拟切片中观察到膜片的三维结构。在一个样本中可以观察到微管、肌动蛋白和中间丝。然而,使用表面扫描电子断层成像术可以更好地观察到中间丝的 3D 结构。

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