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在蓝宝石盖玻片上对上皮细胞进行高压冷冻。

High-pressure freezing of epithelial cells on sapphire coverslips.

作者信息

Reipert S, Fischer I, Wiche G

机构信息

Institute of Biochemistry and Molecular Cell Biology, University of Vienna, Vienna Biocenter, 1030 Vienna, Austria.

出版信息

J Microsc. 2004 Jan;213(1):81-5. doi: 10.1111/j.1365-2818.2004.01260.x.

Abstract

Rapid freezing of cell monolayers at ambient pressure is limited regarding the thickness of ice crystal damage-free freezing. The specific freezing conditions of the cells under investigation are decisive for the success of such methods. Improved reproducibility of results could be expected by cryoimmobilization at high pressure because this achieves a greater thickness of adequate freezing. In a novel approach, we tested the suitability of sapphire discs as cell substrata for high-pressure freezing. Frozen samples on sapphire were subjected to freeze-substitution while in the same flat sample holders as used for high-pressure freezing. We obtained cells that displayed an excellent preservation of fine structure. Because sapphire is a tissue culture substratum suitable for light microscopy, its use in combination with high-pressure freezing could become a powerful tool in correlative studies of cell dynamics at light and electron microscopic levels.

摘要

在常压下对细胞单层进行快速冷冻时,冰晶无损伤冷冻的厚度有限。所研究细胞的特定冷冻条件对于此类方法的成功至关重要。通过高压冷冻固定有望提高结果的重现性,因为这能实现更大厚度的适宜冷冻。在一种新方法中,我们测试了蓝宝石盘作为高压冷冻细胞基质的适用性。置于蓝宝石上的冷冻样品在与用于高压冷冻相同的扁平样品架中进行冷冻置换。我们获得了细胞结构保存极佳的结果。由于蓝宝石是适用于光学显微镜的组织培养基质,将其与高压冷冻结合使用可能成为在光学和电子显微镜水平进行细胞动力学相关研究的有力工具。

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