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首页> 外文期刊>Journal of Microscopy >Backscattered electron image of osmium-impregnated/macerated tissues as a novel technique for identifying the cis-face of the Golgi apparatus by high-resolution scanning electron microscopy
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Backscattered electron image of osmium-impregnated/macerated tissues as a novel technique for identifying the cis-face of the Golgi apparatus by high-resolution scanning electron microscopy

机译:浸渍/浸渍组织的背向散射电子图像,这是一种通过高分辨率扫描电子显微镜识别高尔基体顺式表面的新技术

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摘要

The osmium maceration method with scanning electron microscopy (SEM) enabled to demonstrate directly the three-dimensional (3D) structure of membranous cell organelles. However, the polarity of the Golgi apparatus (that is, the cis-trans axis) can hardly be determined by SEM alone, because there is no appropriate immunocytochemical method for specific labelling of its cis- or trans-faces. In the present study, we used the osmium impregnation method, which forms deposits of reduced osmium exclusively in the cis-Golgi elements, for preparation of specimens for SEM. The newly developed procedure combining osmium impregnation with subsequent osmium maceration specifically visualised the cis-elements of the Golgi apparatus, with osmium deposits that were clearly detected by backscattered electron-mode SEM. Prolonged osmication by osmium impregnation (2% OsO4 solution at 40 degrees C for 40 h) and osmium maceration (0.1% OsO4 solution at 20 degrees C for 24 h) did not significantly impair the 3D ultrastructure of the membranous cell organelles, including the Golgi apparatus. This novel preparation method enabled us to determine the polarity of the Golgi apparatus with enough information about the surrounding 3D ultrastructure by SEM, and will contribute to our understanding of the global organisation of the entire Golgi apparatus in various differentiated cells.
机译:使用扫描电子显微镜(SEM)的mac浸渍法能够直接证明膜细胞器的三维(3D)结构。但是,高尔基体的极性(即顺反轴)很难仅通过SEM来确定,因为没有合适的免疫细胞化学方法对其顺式或反面进行特异性标记。在本研究中,我们使用the浸渍法(仅在顺式高尔基体中形成还原的沉积物)来制备SEM标本。新开发的程序结合了imp浸渍和随后的eration浸渍,可以使高尔基体装置的顺式元素特别形象化,并且back沉积物可以通过反向散射电子模式SEM清楚地检测到。浸渍(40%的2%OsO4溶液40 h)和浸渍(20%的0.1%OsO4溶液24 h)长时间渗透不会明显损害包括高尔基体在内的膜细胞器的3D超微结构。仪器。这种新颖的制备方法使我们能够通过SEM确定有关周围3D超微结构的足够信息,从而确定高尔基体的极性,并将有助于我们理解整个高尔基体在各种分化细胞中的整体组织。

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