Department of Cell and Developmental Biology, Institut de Génétique et de Biologie Moléculaire et Cellulaire , 67400 Illkirch, France.
Biol Cell. 2009 Dec 4;102(2):121-32. doi: 10.1042/BC20090096.
CLEM (correlative live cell and electron microscopy) seeks to bridge the data acquired with different imaging strategies, typically between light microscopy and electron microscopy. It has been successfully applied in cell cultures, although its use in multicellular systems is hampered by difficulties in locating the ROI (region of interest).
We developed a CLEM technique that enables easy processing of small model animals and is adequate both for morphology and immunoelectron-microscopic specimen preparations. While this method has been initially developed for Caenorhabditis elegans samples, we found that it works equally well for Drosophila samples. It enables handling and observation of single animals of any complex genotype in real time, fixation by high-pressure freezing and flat embedding. Our major improvement has been the development of a precise mapping system that considerably simplifies and speeds up the retrospective location of the ROI within 1 mum distance. This method can be successfully used when correlative microscopy is required, as well as to facilitate the treatment of non-correlative TEM procedures. Our improvements open the possibility to treat statistically significant numbers of animals processed by electron microscopy and considerably simplifies electron-microscopic protocols, making them more accessible to a wider range of researchers.
We believe that this technique will contribute to correlative studies in multicellular models and will facilitate the time-demanding procedure of specimen preparation for any kind of TEM.
共聚焦显微镜(correlative live cell and electron microscopy,CLEM)旨在弥合不同成像策略(通常是在光学显微镜和电子显微镜之间)所获得的数据之间的差距。它已成功应用于细胞培养物中,尽管在多细胞系统中的应用受到难以定位 ROI(感兴趣区域)的阻碍。
我们开发了一种 CLEM 技术,可轻松处理小型模式动物,并且非常适合形态学和免疫电子显微镜标本制备。虽然该方法最初是为秀丽隐杆线虫样本开发的,但我们发现它对果蝇样本同样有效。它可以实时处理和观察任何复杂基因型的单个动物,通过高压冷冻和平面包埋进行固定。我们的主要改进是开发了一种精确的映射系统,大大简化和加快了在 1 微米距离内回溯 ROI 位置的速度。当需要相关显微镜时,这种方法可以成功使用,也可以方便地处理非相关 TEM 程序。我们的改进为处理通过电子显微镜处理的具有统计学意义数量的动物提供了可能性,并大大简化了电子显微镜方案,使更广泛的研究人员更容易使用。
我们相信,这项技术将有助于多细胞模型的相关研究,并将简化任何类型 TEM 所需的耗时标本制备过程。