Reipert Siegfried, Kotisch Harald, Wysoudil Bhuma, Wiche Gerhard
Department of Molecular Cell Biology, Max F. Perutz Laboratories, Dr. Bohr-Gasse 9, University of Vienna, A-1030 Vienna, Austria.
J Histochem Cytochem. 2008 Jul;56(7):697-709. doi: 10.1369/jhc.7A7370.2008. Epub 2008 Apr 14.
Microwave (MW) fixation has been suggested as a method to rapidly immobilize cellular dynamics for fine structural studies in the electron microscope. To show its suitability for studies on cell monolayers, one has to apply MW fixation systematically in correlation with samples on the light microscopy level. Examples for MW fixation of cell monolayers, however, are still rare. MW-accelerated fixation for relatively long periods of time (1-2 min) has been reported without showing its suitability at the fine structural level. Here, we provide a rapid MW fixation protocol for cell monolayers on a subminute time scale. The impact of the MW-accelerated glutaraldehyde fixation on temperature-sensitive cytoskeletal components such as microtubules was evaluated. For testing the effectiveness of MW-assisted primary fixation, saponin treatment of the monolayers was included. Simultaneous MW-accelerated fixation and extraction by saponin was necessary to achieve a gradual improvement in visualization of cytoskeletal aspects in association with cell junctions, mitochondria, and centrioles. To establish a valuable routine program for fine structural studies of resin-embedded cell models on substrata, a protocol combining MW fixation with automatic processing in a tissue processor is provided.
微波(MW)固定已被提议作为一种快速固定细胞动力学以用于电子显微镜精细结构研究的方法。为了证明其适用于细胞单层研究,必须将MW固定与光学显微镜水平的样本相关联地系统应用。然而,细胞单层MW固定的实例仍然很少。已有报道称MW加速固定相对较长时间(1 - 2分钟),但未表明其在精细结构水平的适用性。在此,我们提供了一种在亚分钟时间尺度上对细胞单层进行快速MW固定的方案。评估了MW加速戊二醛固定对温度敏感的细胞骨架成分(如微管)的影响。为了测试MW辅助初次固定的有效性,对单层细胞进行了皂素处理。MW加速固定与皂素提取同时进行对于逐步改善与细胞连接、线粒体和中心粒相关的细胞骨架方面的可视化是必要的。为了建立一个用于在基质上对树脂包埋的细胞模型进行精细结构研究的有价值的常规程序,提供了一种将MW固定与组织处理仪中的自动处理相结合的方案。