Zierold K, Schäfer D
Max-Planck-Institut für Systemphysiologie, Dortmund, FRG.
Scanning Microsc. 1988 Sep;2(3):1775-90.
Various electron microscopical preparation techniques are compared with regard to the preservation of the intracellular element distribution as determined by X-ray microanalysis in scanning and scanning transmission electron microscopy. By use of chemical agents for fixation and dehydration ions are redistributed and washed out. This is also true for freeze-substitution. Whole cells are prepared by cryofixation followed by freeze-drying. Interference of intracellular measurements by extracellular elements can be avoided by appropriate washing the cells before cryofixation. The washing medium has to be carefully selected in order to avoid distortions of the original intracellular element content. These problems are circumvented by the preparation of freeze-dried cryosections from cryofixed cells. This is demonstrated by data of the intracellular elemental composition in cultured cells (fibroblasts, Staphylococcus aureus bacteria) and in cells isolated from rat tissue (kidney papillary collecting duct and liver). Cryofixation of a single cell in a defined functional state is illustrated by results obtained from streaming Amoeba proteus cells, cryofixed under light microscopical control. The main conclusion is that X-ray microanalysis of cells in functional states requires cryofixation and cryopreparation techniques which have to be adapted to the particular cell biological problem to be investigated.
针对扫描电子显微镜和扫描透射电子显微镜中通过X射线微分析测定的细胞内元素分布的保存情况,对各种电子显微镜制备技术进行了比较。使用化学试剂进行固定和脱水时,离子会重新分布并被洗出。冷冻置换也是如此。通过冷冻固定随后冷冻干燥来制备完整细胞。在冷冻固定前对细胞进行适当洗涤,可以避免细胞外元素对细胞内测量的干扰。必须仔细选择洗涤介质,以避免原始细胞内元素含量的扭曲。通过从冷冻固定的细胞制备冷冻干燥的冰冻切片,可以规避这些问题。这一点在培养细胞(成纤维细胞、金黄色葡萄球菌)以及从大鼠组织分离的细胞(肾乳头集合管和肝脏)的细胞内元素组成数据中得到了证明。在光学显微镜控制下冷冻固定的流动变形虫细胞所获得的结果,说明了在特定功能状态下对单个细胞进行冷冻固定的情况。主要结论是,对处于功能状态的细胞进行X射线微分析需要冷冻固定和冷冻制备技术,这些技术必须根据要研究的特定细胞生物学问题进行调整。