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首页> 外文期刊>Progress in Histochemistry and Cytochemistry >Low Voltage Transmission Electron Microscopy in Cell Biology
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Low Voltage Transmission Electron Microscopy in Cell Biology

机译:低压透射电子显微镜在细胞生物学中的应用

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摘要

Low voltage transmission electron microscopy (LVTEM) was employed to examine biological tissues with accelerating voltages as low as 5 kV. Tissue preparation was modified to take advantage of the low-voltage techniques. Treatments with heavy metals, such as post-fixation with osmium tetroxide, on block and counterstaining were omitted. Sections (40 nm) were thinner than usual and generated highly contrasted images. General appearance of the cells remains similar to that of conventional TEM. New features were however revealed. The matrix of the pancreatic granules displays heterogeneity with partitions that may correspond to the inner-segregation of their secretory proteins. Mitochondria revealed the presence of the ATP synthase granules along their cristea. The nuclear dense chromatin displayed a honeycomb organization while distinct beads, nucleosomes, aligned along thin threads were seen in the dispersed chromatin. Nuclear pore protein complexes revealed their globular nature. The intercalated disks in cardiac muscle displayed their fine structural organization. These features correlate well with data described or predicted by cell and molecular biology. These new aspects are not revealed when thicker and conventionally osmicated tissue sections were examined by LVTEM, indicating that major masking effects are associated with standard TEM techniques. lmmunogold was adapted to LVTEM further enhancing its potential in cell biology. (C) 2015 Elsevier GmbH. All rights reserved.
机译:低压透射电子显微镜(LVTEM)用于检查生物组织,其加速电压低至5 kV。组织制备进行了修改,以利用低压技术的优势。省略了重金属处理,例如四氧化的后固定,块状和复染。切片(40 nm)比平时薄,并生成高对比度的图像。电池的总体外观与常规TEM相似。然而,新功能被揭示。胰腺颗粒的基质显示出异质性,其分区可能对应于其分泌蛋白的内部分离。线粒体揭示了其脆皮中存在ATP合酶颗粒。核密集的染色质显示出蜂窝状组织,而在分散的染色质中看到沿着细线排列的不同的珠子,核小体。核孔蛋白复合物显示其球状性质。心肌中插入的椎间盘显示出良好的结构组织。这些特征与细胞和分子生物学描述或预测的数据密切相关。当通过LVTEM检查较厚的和常规渗透的组织切片时,这些新方面没有被发现,这表明主要的掩盖效果与标准TEM技术有关。 lmmunogold已适应LVTEM,进一步增强了其在细胞生物学中的潜力。 (C)2015 Elsevier GmbH。版权所有。

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