Zierold K
Max-Planck-Institut für Systemphysiologie, Dortmund, Germany.
J Microsc. 1991 Feb;161(Pt 2):357-66. doi: 10.1111/j.1365-2818.1991.tb03096.x.
Electron probe microanalysis data on the intracellular content and distribution of electrolyte ions depends critically on the functional state of the cells at the moment of cryofixation. Whereas tissue specimens often require special in-situ freezing techniques, isolated and cultured cells can be frozen within their environmental medium under physiologically controlled conditions. Thus, they represent a feasible system to study functional ion-related intracellular parameters such as the K/Na ratio. Specifically modified freezing devices allow the study of ion shifts related to dynamic processes in cells, for example, locomotion and exocytosis. The time resolution achieved by time-controlled cryofixation is approximately 1 ms.
关于电解质离子在细胞内的含量和分布的电子探针微分析数据,严重依赖于冷冻固定瞬间细胞的功能状态。组织标本通常需要特殊的原位冷冻技术,而分离培养的细胞可以在生理控制条件下于其环境介质中冷冻。因此,它们是研究与功能离子相关的细胞内参数(如钾/钠比)的可行系统。经过特殊改良的冷冻装置能够研究与细胞动态过程(如移动和胞吐作用)相关的离子转移。通过时间控制冷冻固定实现的时间分辨率约为1毫秒。