Voorhout W, van Genderen I, van Meer G, Geuze H
Department of Cell Biology, Medical School, University of Utrecht, The Netherlands.
Scanning Microsc Suppl. 1991;5(4):S17-24; discussion S24-5.
The success of post-embedding immunocytochemistry depends largely on the preparation methods. The requirements for structural preservation and immunocytochemistry are in some cases contradictory. This is especially the case in the study of lipid-rich structures and the localization of lipid components. Earlier work on freeze-substitution has shown that this method is very promising for the preservation of lipids and the immunocytochemical localization of lipids at the electron microscopical level. In this study we show that freeze-substitution in combination with low temperature embedding in Lowicryl HM20 has fulfilled this promise. Lamellar bodies in alveolar type II cells contain about 90% lipids and are very difficult to preserve in ultrathin cryosections. Lowicryl sections of freeze-substituted lung tissue shows excellent preservation of lamellar bodies in combination with immunogold localization of a hydrophobic surfactant protein. With an antibody against the Forssman glycolipid we demonstrate a highly reproducible intracellular localization of this glycolipid with high specificity and resolution. This method results in the retention of lipids and glycolipids and allows postembedding immunogold labeling.
包埋后免疫细胞化学的成功很大程度上取决于制备方法。在某些情况下,结构保存和免疫细胞化学的要求是相互矛盾的。在富含脂质结构的研究以及脂质成分的定位方面尤其如此。早期关于冷冻置换的研究表明,这种方法对于在电子显微镜水平上保存脂质和脂质的免疫细胞化学定位非常有前景。在本研究中,我们表明冷冻置换与低温包埋在Lowicryl HM20中相结合实现了这一前景。肺泡II型细胞中的板层小体含有约90%的脂质,在超薄冰冻切片中很难保存。冷冻置换的肺组织的Lowicryl切片显示板层小体保存良好,同时结合了疏水表面活性蛋白的免疫金定位。用抗福斯曼糖脂的抗体,我们证明了这种糖脂在细胞内高度可重复的定位,具有高特异性和分辨率。这种方法能保留脂质和糖脂,并允许进行包埋后免疫金标记。