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理解罗曼诺夫斯基染色。I:血涂片的罗曼诺夫斯基-吉姆萨效应。

Understanding Romanowsky staining. I: The Romanowsky-Giemsa effect in blood smears.

作者信息

Horobin R W, Walter K J

出版信息

Histochemistry. 1987;86(3):331-6. doi: 10.1007/BF00490267.

Abstract

Normal blood smears were stained by the standardised azure B-eosin Y Romanowsky procedure recently introduced by the ICSH, and the classical picture resulted. The effects of varying the times and temperature of staining, the composition of the solvent (buffer concentration, methanol content, & pH), the concentration of the dyes, and the mode of fixation were studied. The results are best understood in terms of the following staining mechanism. Initial colouration involves simple acid and basic dyeing. Eosin yields red erythrocytes and eosinophil granules. Azure B very rapidly gives rise to blue stained chromatin, neutrophil specific granules, platelets and ribosome-rich cytoplasms; also to violet basophil granules. Subsequently the azure B in certain structures combines with eosin to give purple azure B-eosin complexes, leaving other structures with their initial colours. The selectivity of complex formation is controlled by rate of entry of eosin into azure B stained structures. Only faster staining structures (i.e. chromatin, neutrophil specific granules, and platelets) permit formation of the purple complex in the standard method. This staining mechanism illuminates scientific problems (e.g. the nature of 'toxic' granules) and assists technical trouble-shooting (e.g. why nuclei sometimes stain blue, not purple).

摘要

正常血涂片采用国际血液学标准化委员会(ICSH)最近推出的标准化天青B-伊红Y罗曼诺夫斯基染色法进行染色,得到了典型的染色结果。研究了改变染色时间和温度、溶剂组成(缓冲液浓度、甲醇含量和pH值)、染料浓度以及固定方式的影响。根据以下染色机制,最能理解这些结果。初始染色涉及简单的酸性和碱性染色。伊红使红细胞和嗜酸性粒细胞颗粒呈红色。天青B能非常迅速地使染色质、中性粒细胞特异性颗粒、血小板和富含核糖体的细胞质呈蓝色;也能使嗜碱性粒细胞颗粒呈紫色。随后,某些结构中的天青B与伊红结合形成紫色的天青B-伊红复合物,而其他结构则保持其初始颜色。复合物形成的选择性由伊红进入天青B染色结构的速率控制。在标准方法中,只有染色较快的结构(即染色质、中性粒细胞特异性颗粒和血小板)才能形成紫色复合物。这种染色机制阐明了一些科学问题(如“毒性”颗粒的性质),并有助于解决技术问题(如为什么细胞核有时染成蓝色而不是紫色)。

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