Schulte E K, Wittekind D H
Anatomische Anstalt, München, FRG.
Anal Cell Pathol. 1990 Apr;2(3):149-57.
The purpose of the present study was to investigate the influence of chromatin compactness on the kinetics of acid hydrolysis in the Feulgen reaction in cytology. Tissue imprints of rabbit liver, of human bronchial carcinoma and of human blood smears, fixed with alcohol, formaldehyde or with Böhm's solution with and without prior air drying, were stained with a standardized pararosanilin-Feulgen reagent. The time for hydrolysis varied between 7.5 and 120 min. The integrated optical density (IOD) of the cell nuclei was measured with an image analyzer (IBAS 2000). Cells with condensed chromatin (lymphocytes, small cell carcinoma, formaldehyde fixed cells) showed a slow increase of staining intensity and late plateau phase as compared with cells with decondensed chromatin. DNA in condensed nuclei was less susceptible to acid hydrolysis. The degree of chromatin compactness which determines the sensitivity of DNA to hydrolysis is influenced by the type of fixation, cell type and by the functional status of the cell. The conclusion is that Feulgen staining intensities of cells with different degrees of chromatin compactness cannot be compared unless measured in the respective plateau phases of the relevant hydrolysis curves which must be determined individually for each cell type.
本研究的目的是探讨细胞学中福尔根反应中染色质紧密程度对酸水解动力学的影响。用酒精、甲醛或含或不含预先空气干燥的博姆氏溶液固定的兔肝、人支气管癌组织印片和人血涂片,用标准化的副品红 - 福尔根试剂染色。水解时间在7.5至120分钟之间变化。用图像分析仪(IBAS 2000)测量细胞核的积分光密度(IOD)。与染色质解聚的细胞相比,染色质凝聚的细胞(淋巴细胞、小细胞癌、甲醛固定的细胞)染色强度增加缓慢且平台期出现较晚。凝聚核中的DNA对酸水解的敏感性较低。决定DNA对水解敏感性的染色质紧密程度受固定类型、细胞类型和细胞功能状态的影响。结论是,除非在相关水解曲线各自的平台期进行测量,否则不能比较不同染色质紧密程度细胞的福尔根染色强度,而每条水解曲线必须针对每种细胞类型单独确定。