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吉姆萨显带机制。II. G显带中的吉姆萨成分及其他变量。

Mechanisms of Giemsa banding. II. Giemsa components and other variables in G-banding.

作者信息

Wyandt H E, Anderson R S, Patil S R, Hecht F

出版信息

Hum Genet. 1980 Feb;53(2):211-5. doi: 10.1007/BF00273498.

Abstract

We investigated the capability of individual thiazins in Giemsa mixture (methylene blue and azures A, B, and C) and of two related dyes (toluidine blue and thionin) to produce G-banding. We further tested the effects of variations of buffer composition and concentration, dye concentration, and staining time. G-banding was produced by all of the dyes at low concentrations, although differences were noted. Overall, methylene blue and azure B produced the best banding, azures A, C, and toluidine blue produced moderately good banding, and thionin produced poor banding. This order did not appear to be altered essentially by different treatments. The optimal conditions for G-banding for all dyes and treatments included the use of (1) 0.025-0.05 M phosphate buffer, (2) dye concentrations of 0.002%--0.005%, and (3) staining times of 6--15 min.

摘要

我们研究了吉姆萨混合染液(亚甲蓝与天青A、B、C)中的各噻嗪类染料以及两种相关染料(甲苯胺蓝和硫堇)产生G带的能力。我们还进一步测试了缓冲液组成与浓度、染料浓度以及染色时间变化所产生的影响。尽管存在差异,但所有染料在低浓度时均能产生G带。总体而言,亚甲蓝和天青B产生的带纹最佳,天青A、C和甲苯胺蓝产生的带纹中等良好,而硫堇产生的带纹较差。不同处理似乎并未从根本上改变这一顺序。所有染料和处理产生G带的最佳条件包括使用(1)0.025 - 0.05 M磷酸盐缓冲液,(2)0.002% - 0.005%的染料浓度,以及(3)6 - 15分钟的染色时间。

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