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Rapid contrast evaluation method based on affinity beads and backscattered electron imaging for the screening of electron stains

机译:基于亲和力珠和反向散射电子成像的快速对比度评估方法用于电子污渍的筛选

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摘要

Uranyl salts are toxic and radioactive; therefore, several studies have been conducted to screen for substitutes of electron stains. In this regard, the contrast evaluation process is time consuming and the results obtained are inconsistent. In this study, we developed a novel contrast evaluation method using affinity beads and a backscattered electron image (BSEI), obtained using scanning electron microscopy. The contrast ratios of BSEI in each electron stain treatment were correlated with those of transmission electron microscopic images. The affinity beads bound to cell components independently. Protein and DNA samples were enhanced by image contrast treated with electron stains; however, this was not observed for sugars. Protein-conjugated beads showed an additive effect of image contrast when double-stained with lead. However, additive effect of double staining was not observed in DNA-conjugated beads. The varying chemical properties of oligo- peptides showed differences in image contrast when treated with each electron stain. This BSEI-based evaluation method not only enables screening for alternate electron stains, but also helps analyze the underlying mechanisms of electron staining of cellular structures.
机译:铀酰盐具有毒性和放射性;因此,已经进行了一些研究来筛选电子污渍的替代物。在这方面,对比度评估过程很耗时,并且获得的结果不一致。在这项研究中,我们开发了一种新的对比度评估方法,该方法使用亲和力珠和通过扫描电子显微镜获得的反向散射电子图像(BSEI)。 BSEI在每个电子污渍处理中的对比度均与透射电子显微镜图像的对比度相关。亲和珠独立地结合到细胞组分。通过电子染料处理的图像对比增强了蛋白质和DNA样品;然而,对于糖而言,这并未观察到。当与铅双重染色时,蛋白质缀合的磁珠显示出图像对比度的加和效应。然而,在DNA缀合的珠子中未观察到双重染色的加和作用。当用每种电子染料处理时,低聚肽的不同化学性质显示出图像对比度的差异。这种基于BSEI的评估方法不仅可以筛选其他电子污点,还有助于分析细胞结构电子污点的潜在机制。

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