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首页> 外文期刊>Journal of Electron Microscopy >A useful method for observing intracellular structures of free and cultured cells by scanning electron microscopy
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A useful method for observing intracellular structures of free and cultured cells by scanning electron microscopy

机译:通过扫描电子显微镜观察游离和培养细胞的胞内结构的有用方法

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Scanning electron microscopy (SEM) using osmium-maceration methods has been used for analyzing the three-dimensional structure of cell organelles in tissue samples, but it has been quite difficult to observe free and cultured cells with this technique. The present study was performed to develop a method that can be applied to free and cultured cells for SEM studies of intracellular structures after osmium maceration. The method was also applied to light microscopy (LM) and to transmission electron microscopy (TEM). HeLa cells and human leukocytes were fixed with a mixture of 0.5% paraformaldehyde and 0.5% glutaraldehyde followed by an additional fixation with 1% osmium tetroxide. These cells were embedded in low-melting-point agarose. A temperature-responsive dish was also used for collection of cultured cells before embedding. For LM and TEM, the cell-embedded agarose was further embedded in epoxy resin, and semi- and ultrathin sections were examined conventionally. For SEM, the agarose was freeze-fractured in 50% dimethyl sulfoxide, processed for osmium maceration and observed in a high-resolution SEM. Low-melting-point agarose was useful as an embedding medium for SEM, because it was well preserved during prolonged osmication for SEM. Thus, the fine structure of cell organelles was clearly analyzed by SEM after osmium-maceration treatment. These SEM images could also be compared with those of LM and TEM of the agarose-embedded tissues.
机译:使用浸渍法的扫描电子显微镜(SEM)已用于分析组织样品中细胞器的三维结构,但是用这种技术很难观察到游离和培养的细胞。进行本研究以开发一种方法,该方法可用于游离和培养的细胞,用于浸后细胞内结构的SEM研究。该方法还应用于光学显微镜(LM)和透射电子显微镜(TEM)。将HeLa细胞和人白细胞用0.5%多聚甲醛和0.5%戊二醛的混合物固定,然后再用1%四氧化os固定。这些细胞被包埋在低熔点琼脂糖中。在嵌入之前,温度响应皿也用于收集培养的细胞。对于LM和TEM,将细胞包埋的琼脂糖进一步包埋在环氧树脂中,并按常规检查半薄和超薄切片。对于SEM,将琼脂糖在50%二甲亚砜中冷冻破碎,进行for浸处理,然后在高分辨率SEM中观察。低熔点琼脂糖可用作SEM的包埋介质,因为它在SEM的长时间渗透过程中得到了很好的保存。因此,在进行了-浸渍处理之后,通过SEM清楚地分析了细胞器的精细结构。这些SEM图像也可以与琼脂糖包埋组织的LM和TEM图像进行比较。

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