McDonald Kent L
Electron Microscope Laboratory, University of California, Berkeley, CA 94720, USA.
Microsc Microanal. 2014 Feb;20(1):152-63. doi: 10.1017/S1431927613013846. Epub 2013 Nov 19.
A variety of specimens including bacteria, ciliates, choanoflagellates (Salpingoeca rosetta), zebrafish (Danio rerio) embryos, nematode worms (Caenorhabditis elegans), and leaves of white clover (Trifolium repens) plants were high pressure frozen, freeze-substituted, infiltrated with either Epon, Epon-Araldite, or LR White resins, and polymerized. Total processing time from freezing to blocks ready to section was about 6 h. For epoxy embedding the specimens were freeze-substituted in 1% osmium tetroxide plus 0.1% uranyl acetate in acetone. For embedding in LR White the freeze-substitution medium was 0.2% uranyl acetate in acetone. Rapid infiltration was achieved by centrifugation through increasing concentrations of resin followed by polymerization at 100°C for 1.5-2 h. The preservation of ultrastructure was comparable to standard freeze substitution and resin embedding methods that take days to complete. On-section immunolabeling results for actin and tubulin molecules were positive with very low background labeling. The LR White methods offer a safer, quicker, and less-expensive alternative to Lowicryl embedding of specimens processed for on-section immunolabeling without traditional aldehyde fixatives.
多种样本,包括细菌、纤毛虫、领鞭毛虫(玫瑰领鞭虫)、斑马鱼(斑马丹鱼)胚胎、线虫(秀丽隐杆线虫)以及白三叶草(白车轴草)植株的叶子,经过高压冷冻、冷冻置换、用环氧树脂、环氧树脂 - 阿拉尔代特树脂或低粘度LR White树脂渗透,然后聚合。从冷冻到准备好切片的整个处理时间约为6小时。对于环氧树脂包埋,样本在含有1%四氧化锇和0.1%醋酸铀的丙酮中进行冷冻置换。对于LR White树脂包埋,冷冻置换介质是含0.2%醋酸铀的丙酮。通过在逐渐增加浓度的树脂中离心实现快速渗透,随后在100°C下聚合1.5 - 2小时。超微结构的保存情况与需要数天才能完成的标准冷冻置换和树脂包埋方法相当。肌动蛋白和微管蛋白分子的切片后免疫标记结果呈阳性,背景标记非常低。LR White方法为在不使用传统醛类固定剂的情况下进行切片后免疫标记处理的样本提供了一种更安全、更快且成本更低的替代低粘度丙烯酸树脂包埋的方法。