Takata K, Arii T, Yamagishi S, Hirano H
Histochemistry. 1984;81(5):441-4. doi: 10.1007/BF00489747.
Concanavalin A (Con A)-binding sites were labeled with colloidal gold (CG), stained with ruthenium red, and observed under a high-voltage electron microscope. Mouse peritoneal macrophages were labeled by the indirect Con A/CG labeling method at 0 degree C. After washing, some of the cells were incubated in phosphate-buffered saline (PBS) at 37 degrees C. The specimens were then stained with ruthenium red, to enhance the contrast of the cell surface, and embedded in Epon. Sections (0.3 approximately 3 micron thick) were cut and examined by high-voltage electron microscopy at accelerating voltages of 200 approximately 1,000 kV. Staining with ruthenium red provided a strong contrast of the cell surface and the invaginating tubules beneath it against the cytoplasm; in thick sections, both of them were clearly seen by stereomicroscopy. CG particles which represented Con A-binding sites were also sufficiently electron dense to be recognized by high-voltage electron microscopy of thick sections. The two- and three-dimensional distribution of CG particles on the ruthenium-red-positive cell surface was clearly visualized. At 0 degree C, Con A-binding sites were randomly distributed on the cell surface. The redistribution and endocytosis of Con A-binding sites were seen at 37 degrees C. The three-dimensional organization of membrane invagination, which represented the process of endocytosis, was clearly seen by stereomicroscopy. The combination of CG labeling and ruthenium red staining is a useful method for high-voltage electron microscopic analysis of the two- and three-dimensional distribution of CG-labeled ligands on the cell surface in thick sections.
伴刀豆球蛋白A(Con A)结合位点用胶体金(CG)标记,用钌红染色,然后在高压电子显微镜下观察。小鼠腹腔巨噬细胞在0℃下用间接Con A/CG标记法进行标记。洗涤后,将部分细胞在37℃的磷酸盐缓冲盐水(PBS)中孵育。然后将标本用钌红染色,以增强细胞表面的对比度,再包埋在环氧树脂中。切成厚度约为0.3至3微米的切片,在200至1000 kV的加速电压下用高压电子显微镜检查。钌红染色使细胞表面及其下方的内陷小管与细胞质形成强烈对比;在厚切片中,通过立体显微镜都能清楚地看到它们。代表Con A结合位点的CG颗粒在厚切片的高压电子显微镜下也具有足够的电子密度,易于识别。CG颗粒在钌红阳性细胞表面的二维和三维分布清晰可见。在0℃时,Con A结合位点随机分布在细胞表面。在37℃时可观察到Con A结合位点的重新分布和内吞作用。代表内吞过程的膜内陷的三维结构通过立体显微镜清晰可见。CG标记和钌红染色相结合是一种用于在厚切片中对细胞表面CG标记配体的二维和三维分布进行高压电子显微镜分析的有用方法。