Department of Biomolecular Imaging, Institute of Biomembranes, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
J Microsc. 2010 Feb;237(2):208-20. doi: 10.1111/j.1365-2818.2009.03329.x.
Aclar, a copolymer film with properties very similar to those of tissue culture plastic, is a versatile substrate to grow cells for light (including fluorescence) and electron microscopic applications in combination with both chemical fixation and cryoimmobilization. In this paper, we describe complete procedures to perform correlative light and electron microscopy using Aclar as substrate for the culture of cell monolayers to be finally embedded in plastic. First, we developed straightforward, efficient and flexible ways to mark the surface of the Aclar to create substrates to locate cells first at the light microscopy and then the electron microscopy level. All the methods enable the user to self-design gridded Aclar pieces, according to the purpose of the experiments, and create a large number of substrates in a short time. Second, we confirmed that marked Aclar supports the normal growth and morphology of cells. Third, we validated the correlative light and electron microscopy procedure using Aclar. This validation was done for the high-resolution analysis of endothelial cells using transmission electron microscopy and focused ion beam-scanning electron microscopy in combination with the use of fluorescence, phase contrast and/or bright field microscopy to map areas of interest at low resolution. The methods that we present are diverse, easy to implement and highly reproducible, and emphasize the versatility of Aclar as a cell growth substrate for diverse microscopic applications.
Aclar 是一种共聚物薄膜,其性质与组织培养塑料非常相似,是一种多功能的基质,可以用于培养细胞,适用于光(包括荧光)和电子显微镜应用,结合化学固定和冷冻固定。在本文中,我们描述了使用 Aclar 作为细胞单层培养的基质进行共相关光镜和电子显微镜的完整程序,最终将其嵌入塑料中。首先,我们开发了简单、高效和灵活的方法来标记 Aclar 的表面,以创建用于在光显微镜和电子显微镜水平上定位细胞的基质。所有方法都使用户能够根据实验目的自行设计网格状 Aclar 片,并在短时间内创建大量基质。其次,我们证实了标记的 Aclar 支持细胞的正常生长和形态。第三,我们使用 Aclar 验证了共相关光镜和电子显微镜程序。这一验证是通过使用透射电子显微镜和聚焦离子束扫描电子显微镜对内皮细胞进行高分辨率分析来完成的,结合使用荧光、相差和/或明场显微镜在低分辨率下对感兴趣区域进行映射。我们提出的方法多种多样,易于实施且高度可重复,强调了 Aclar 作为用于各种显微镜应用的细胞生长基质的多功能性。