Nicolas G
Laboratoire de Technologie Appliquée à la Microscopie Electronique, C.N.R.S., Paris, France.
J Electron Microsc Tech. 1991 Aug;18(4):395-405. doi: 10.1002/jemt.1060180408.
The use of fast-freeze fixation (FFF) followed by freeze-substitution (FS) has supplied new data in a variety of domains due to the rapidity of this fixation compared to the slow process of the conventional chemical fixation. FFF completely arrests all the cell's biological reactions, and physically immobilizes most molecules within a few milliseconds. This review deals with the main results we obtained concerning the preservation of organelles particularly sensitive to osmotic shock, the maintenance in situ of soluble or depolymerizable cell components, the visualization of brief transient events, and the opening up of new prospects in the field of immunocytochemical labeling.
与传统化学固定的缓慢过程相比,快速冷冻固定(FFF)随后进行冷冻置换(FS)因其固定速度快,已在多个领域提供了新数据。FFF能在几毫秒内完全停止细胞的所有生物反应,并使大多数分子物理固定。本综述讨论了我们获得的主要结果,涉及对渗透压休克特别敏感的细胞器的保存、可溶性或可解聚细胞成分的原位维持、短暂瞬态事件的可视化以及免疫细胞化学标记领域新前景的开拓。