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在生物安全防护设施内制备用于超微结构分析的病毒样本:使用创新型处理胶囊进行负染色

Preparation of viral samples within biocontainment for ultrastructural analysis: Utilization of an innovative processing capsule for negative staining.

作者信息

Monninger Mitchell K, Nguessan Chrystal A, Blancett Candace D, Kuehl Kathleen A, Rossi Cynthia A, Olschner Scott P, Williams Priscilla L, Goodman Steven L, Sun Mei G

机构信息

Pathology Division, United States Army Medical Research Institute of Infectious Diseases (USAMRIID), 1425 Porter Street, Fort Detrick, MD, 21702, United States.

Diagnostic Systems Division, United States Army Medical Research Institute of Infectious Diseases (USAMRIID), 1425 Porter Street, Fort Detrick, MD, 21702, United States.

出版信息

J Virol Methods. 2016 Dec;238:70-76. doi: 10.1016/j.jviromet.2016.10.005. Epub 2016 Oct 14.

Abstract

Transmission electron microscopy can be used to observe the ultrastructure of viruses and other microbial pathogens with nanometer resolution. In a transmission electron microscope (TEM), the image is created by passing an electron beam through a specimen with contrast generated by electron scattering from dense elements in the specimen. Viruses do not normally contain dense elements, so a negative stain that places dense heavy metal salts around the sample is added to create a dark border. To prepare a virus sample for a negative stain transmission electron microscopy, a virus suspension is applied to a TEM grid specimen support, which is a 3mm diameter fragile specimen screen coated with a few nanometers of plastic film. Then, deionized (dI) water rinses and a negative stain solution are applied to the grid. All infectious viruses must be handled in a biosafety cabinet (BSC) and many require a biocontainment laboratory environment. Staining viruses in biosafety levels (BSL) 3 and 4 is especially challenging because the support grids are small, fragile, and easily moved by air currents. In this study we evaluated a new device for negative staining viruses called mPrep/g capsule. It is a capsule that holds up to two TEM grids during all processing steps and for storage after staining is complete. This study reports that the mPrep/g capsule method is valid and effective to negative stain virus specimens, especially in high containment laboratory environments.

摘要

透射电子显微镜可用于以纳米分辨率观察病毒和其他微生物病原体的超微结构。在透射电子显微镜(TEM)中,图像是通过使电子束穿过标本而形成的,标本中的致密元素产生电子散射从而形成对比度。病毒通常不含致密元素,因此要添加一种负染剂,在样品周围放置致密的重金属盐以形成深色边界。为了制备用于负染透射电子显微镜的病毒样品,将病毒悬液应用于TEM网格标本支架上,该支架是一个直径3毫米的易碎标本筛网,上面涂有几纳米厚的塑料薄膜。然后,用去离子水冲洗并将负染剂溶液应用于网格。所有传染性病毒都必须在生物安全柜(BSC)中处理,许多病毒需要生物防护实验室环境。在生物安全3级和4级环境中对病毒进行染色尤其具有挑战性,因为支撑网格很小、易碎且容易被气流移动。在本研究中,我们评估了一种名为mPrep/g胶囊的新型病毒负染装置。它是一种胶囊,在所有处理步骤中可容纳多达两个TEM网格,并在染色完成后用于储存。本研究报告称,mPrep/g胶囊法对病毒标本进行负染是有效且可行的,尤其是在高防护实验室环境中。

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