Medical Mycology Research Center, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba, 260-8673, Japan.
Marine Works Japan, Ltd., 3-54-1 Oppamahigashi, Yokosuka 237-0063, Japan.
Microscopy (Oxf). 2022 Oct 6;71(5):289-296. doi: 10.1093/jmicro/dfac031.
Sandwich freezing is a method of rapid freezing by sandwiching specimens between two metal disks and has been used for observing exquisite the close-to-native ultrastructure of living yeast and bacteria. Recently, this method has been found to be useful for preserving cell images of glutaraldehyde-fixed animal and human tissues. In the present study, this method was applied to observe the fine structure of mouse glomerular capillary loops. Morphometry was then performed, and the results were compared with the data obtained by an in vivo cryotechnique, which may provide the closest ultrastructure to the native state of living tissue. The results show that the ultrastructure of glomerular capillary loops obtained by sandwich freezing-freeze-substitution after glutaraldehyde fixation was close to that of the ultrastructure obtained by in vivo cryotechnique not only in the quality of cell image but also in quantitative morphometry. They indicate that the ultrastructure obtained by sandwich freezing-freeze-substitution after glutaraldehyde fixation may more closely reflect the living state of cells and tissues than conventional chemical fixation and dehydration at room temperature and conventional rapid freezing-freeze-substitution of excised tissues without glutaraldehyde fixation. Sandwich freezing-freeze-substitution techniques should be used routinely as a standard method for observing the close-to-native ultrastructure of biological specimens.
夹层冷冻是一种快速冷冻的方法,即将标本夹在两个金属盘之间,已被用于观察活酵母和细菌的接近自然状态的超微结构。最近,这种方法被发现对保存戊二醛固定的动物和人体组织的细胞图像有用。在本研究中,该方法被应用于观察小鼠肾小球毛细血管袢的精细结构。然后进行形态计量学分析,并将结果与体内 cryotechnique 获得的数据进行比较,体内 cryotechnique 可能提供最接近活组织自然状态的超微结构。结果表明,戊二醛固定后夹层冷冻-冷冻置换获得的肾小球毛细血管袢的超微结构,无论是在细胞图像质量还是在定量形态计量学方面,都与体内 cryotechnique 获得的超微结构非常接近。这些结果表明,与传统的室温化学固定和脱水以及未经戊二醛固定的切除组织的传统快速冷冻-冷冻置换相比,戊二醛固定后夹层冷冻-冷冻置换获得的超微结构可能更能反映细胞和组织的存活状态。夹层冷冻-冷冻置换技术应作为观察生物标本接近自然状态超微结构的标准方法常规使用。