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用于解冻冰冻切片相关显微镜检查的新型对比和标记程序。

Novel contrasting and labeling procedures for correlative microscopy of thawed cryosections.

机构信息

Faculty of Science, Utrecht University, the Netherlands.

出版信息

J Histochem Cytochem. 2013 Mar;61(3):236-47. doi: 10.1369/0022155412473756. Epub 2012 Dec 20.

Abstract

One of the major challenges for correlative microscopy is the preparation of the sample; the protocols for transmission electron microscopy (TEM) and fluorescence microscopy (FM) often prove to be incompatible. Here, we introduce 2+Staining: an improved contrasting procedure for Tokuyasu sections that yields both excellent positive membrane contrast in the TEM and bright fluorescence of the probe labeled on the section. 2+Staining involves the contrasting of the immunolabeled sections with 1% osmium tetroxide, 2% uranyl acetate and lead citrate in sequential steps, followed by embedding in 1.8% methyl cellulose. In addition, we demonstrate an amplification of the fluorescent signal by introducing additional antibody incubation steps to the immunolabeling procedure. The methods were validated using the integrated laser and electron microscope (iLEM), a novel tool for correlative microscopy combining FM and TEM in a single setup. The approaches were tested on HL-60 cells labeled for lysosomal-associated membrane protein 2 (LAMP-2) and on sections of muscle from a facioscapulohumeral dystrophy mouse model. Yielding excellent results and greatly expediting the workflow, the methods are of great value for those working in the field of correlative microscopy and indispensible for future users of integrated correlative microscopy.

摘要

共聚焦显微镜面临的主要挑战之一是样品制备;透射电子显微镜(TEM)和荧光显微镜(FM)的方案通常证明是不兼容的。在这里,我们介绍了 2+染色:一种改进的 Tokuyasu 切片对比程序,可在 TEM 中产生出色的阳性膜对比,并使探针在切片上的标记产生明亮的荧光。2+染色包括用 1%锇四氧化物、2%醋酸铀酰和柠檬酸铅在连续步骤中对比免疫标记的切片,然后用 1.8%甲基纤维素包埋。此外,我们通过向免疫标记程序引入额外的抗体孵育步骤来证明荧光信号的放大。该方法使用集成激光和电子显微镜(iLEM)进行了验证,这是一种用于共聚焦显微镜的新型工具,可在单个设置中结合 FM 和 TEM。该方法在标记溶酶体相关膜蛋白 2(LAMP-2)的 HL-60 细胞和 facioscapulohumeral 肌营养不良症小鼠模型的切片上进行了测试。该方法产生了出色的结果,并大大加快了工作流程,对于共聚焦显微镜领域的工作者具有重要价值,对于未来集成共聚焦显微镜的使用者来说是不可或缺的。

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