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通过冷冻固定和冷冻置换提高培养细胞中膜的分辨率。

Enhanced resolution of membranes in cultured cells by cryoimmobilization and freeze-substitution.

作者信息

Wild P, Schraner E M, Adler H, Humbel B M

机构信息

Laboratory for Electron Microscopy, Institute of Veterinary Anatomy, University of Zürich, Zürich, Switzerland.

出版信息

Microsc Res Tech. 2001 May 15;53(4):313-21. doi: 10.1002/jemt.1098.

Abstract

Investigations of cellular processes demand immediate arresting of the process at any given time and excellent retention of cellular material and excellent visibility of membranes. To achieve this goal we used cryofixation to arrest cellular processes instantly and tested diverse freeze-substitution protocols. Madin-Darby kidney cells and Vero cells were grown on carbon-coated sapphire disks. For cryofixation the sapphire disks covered with a cell monolayer were injected with the aid of a guillotine into liquid propane or ethane or a mixture of both cooled by liquid nitrogen. Freezing of the cryogen was prevented by using a partially insulated cylinder and by vigorous stirring that results in a substantial decrement of the freezing point of the cryogen. Cell monolayers can be cryofixed successfully using the guillotine in a safety hood at ambient temperature and humidity or at 37 degrees C and 45% humidity. The freezing unit can also be placed in a laminar flow for working under biohazard conditions. For visualizing cell membranes at high contrast and high resolution, cells were substituted in the presence of various concentrations of glutaraldehyde and osmium tetroxide and the temperature was raised to diverse final temperatures. Substitution for 4 hours at -90 degrees C in anhydrous acetone containing 0.25% anhydrous glutaraldehyde and 0.5% osmium tetroxide followed by a temperature rise of 5 degrees C/hour to 0 degrees C and final incubation for 1 hour at 0 degrees C resulted in high contrast and excellent visibility of subcellular components at the level of the membrane bilayer. The high spatial and temporal resolution makes this methodology an excellent tool for studying cell membrane-bound processes, such as virus-cell interactions.

摘要

对细胞过程的研究要求在任何给定时间立即停止该过程,并能出色地保留细胞物质以及使细胞膜具有良好的可视性。为实现这一目标,我们采用冷冻固定法来立即停止细胞过程,并测试了多种冷冻置换方案。将Madin-Darby肾细胞和Vero细胞培养在涂有碳的蓝宝石圆盘上。对于冷冻固定,借助断头台将覆盖有细胞单层的蓝宝石圆盘注入液氮冷却的液态丙烷或乙烷或两者的混合物中。通过使用部分隔热的圆柱体和剧烈搅拌来防止冷冻剂结冰,剧烈搅拌会使冷冻剂的冰点大幅降低。在环境温度和湿度或37摄氏度和45%湿度条件下,可在安全柜中使用断头台成功地对细胞单层进行冷冻固定。冷冻装置也可放置在层流中以在生物危害条件下工作。为了以高对比度和高分辨率观察细胞膜,在存在不同浓度戊二醛和四氧化锇的情况下对细胞进行置换,并将温度升至不同的最终温度。在含有0.25%无水戊二醛和0.5%四氧化锇的无水丙酮中于-90摄氏度置换4小时,然后以每小时5摄氏度的速度升温至0摄氏度,并在0摄氏度最终孵育1小时,这使得在膜双层水平上亚细胞成分具有高对比度和良好的可视性。高空间和时间分辨率使该方法成为研究细胞膜相关过程(如病毒 - 细胞相互作用)的出色工具。

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