Using elemental staining and mapping techniques for simultaneous visualization of biological structures in the nucleus by multichannel electron microscopy.

Hilmar Strickfaden, Natnael Abate, Christian Förster, Frank Wuest, D Alan Underhill, Michael J Hendzel
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Abstract

Transmission electron microscopy (TEM) has been essential in defining the structural organization of the cell due to its ability to image cell structures at molecular resolution. However, the absence of colour has made it very difficult to compare the distributions and relationships of two or more types of biomolecules simultaneously if they lack clear morphological distinctions. Furthermore, single-channel information limits functional analysis, particularly in the nucleoplasm, where fibrillar material could be chromatin, ribonucleic acid or protein. Where specific stains exist to discriminate among these molecules, they cannot be combined because conventional TEM is a single-channel technology. A potential path around this barrier is through electron spectroscopic imaging (ESI). ESI can map the distributions of chemical elements within an ultrathin section. Here, we present methods to stain specific molecules with elements that ESI can visualize to enable multichannel electron microscopy.

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利用元素染色和绘图技术,通过多通道电子显微镜同时可视化细胞核中的生物结构。
透射电子显微镜(TEM)由于其在分子分辨率上成像细胞结构的能力,在定义细胞的结构组织方面是必不可少的。然而,如果两种或两种以上的生物分子缺乏明确的形态区别,那么颜色的缺失使得同时比较它们的分布和关系变得非常困难。此外,单通道信息限制了功能分析,特别是在核质中,其中纤维物质可能是染色质,核糖核酸或蛋白质。由于传统的透射电镜是一种单通道技术,因此存在特定的染色剂来区分这些分子,它们不能结合在一起。绕过这一屏障的一个潜在途径是通过电子光谱成像(ESI)。ESI可以绘制出超薄切片中化学元素的分布。在这里,我们提出了用ESI可以可视化的元素染色特定分子的方法,以启用多通道电子显微镜。
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