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原子力显微镜在固定和包埋细胞的超微结构及组织化学研究中的应用。

Application of atomic force microscopy to ultrastructural and histochemical studies of fixed and embedded cells.

作者信息

Yamashina S, Shigeno M

机构信息

Department of Anatomy, Kitasato University School of Medicine, Sagamihara, Japan.

出版信息

J Electron Microsc (Tokyo). 1995 Dec;44(6):462-6.

PMID:8991923
Abstract

Various methods of sample preparation were used to study the cellular ultrastructure with an atomic force microscope (AFM). A rather satisfactory fine structure of cellular cross section, that was comparable to low to medium magnification electron micrographs, was obtained when ultrathin sections of epoxy embedded materials cut with a diamond knife were examined by use of a non-contact mode. No surface treatment was necessary to image the surface contour of ultrathin sections. According to this method, cellular membranes appeared as an elevation in contrast to depression of the intercellular space and cytoplasm. The chromatin and nucleolus showed an elevated image against the depression of nucleoplasm, resulting in the formation of images comparable to those obtained by conventional transmission electron microscopy. In the section treated for post-embedding immunohistochemical reaction, colloidal gold particles larger than 10-15 nm in diameter could be detected as elevations. By means of Kelvin force probe microscopy (KFM), enhancement of the surface potential was detected at exactly the same location as topographically detected gold particles. Application of KFM is expected to become a valuable tool for novel histochemistry with the use of AFM.

摘要

采用多种样品制备方法,利用原子力显微镜(AFM)研究细胞超微结构。当使用非接触模式检查用金刚石刀切割的环氧树脂包埋材料的超薄切片时,获得了相当令人满意的细胞横截面精细结构,可与低到中等放大倍数的电子显微镜照片相媲美。对超薄切片的表面轮廓进行成像无需进行表面处理。根据这种方法,细胞膜呈现为凸起,与细胞间隙和细胞质的凹陷形成对比。染色质和核仁相对于核质的凹陷呈现出凸起的图像,从而形成了与传统透射电子显微镜获得的图像相当的图像。在经过包埋后免疫组织化学反应处理的切片中,直径大于10 - 15 nm的胶体金颗粒可被检测为凸起。通过开尔文力探针显微镜(KFM),在与地形学检测到的金颗粒完全相同的位置检测到表面电位增强。预计KFM的应用将成为利用AFM进行新型组织化学的有价值工具。

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