Soini Aleksi E, Kuusisto Ari, Meltola Niko J, Soini Erkki, Seveus Lahja
Laboratory of Biophysics, Institute of Biomedicine, University of Turku, 20521 Turku, Finland.
Microsc Res Tech. 2003 Dec 1;62(5):396-407. doi: 10.1002/jemt.10389.
In this report, we describe luminescence imaging microscopy using five different photoluminescent dyes in a single specimen. We combined the long decay time luminophores, europium(III) chelate, terbium(III) chelate, palladium(II) coproporphyrin, and platinum(II) coproporphyrin, with a green nuclear stain, Syto 25 trade mark, that emits conventional fast decaying fluorescence. The luminescence emissions from the five different luminophores were separated from each other by the differences in spectra and decay times using time-resolved detection. Applicability of this dye-combination for multiparameter analysis of a biological object was verified in a mixed population of peripheral blood leukocytes. Leukocyte cytocentrifugates were incubated in one step with a cocktail of luminophore-conjugated antibodies recognizing neutrophil- and lymphocyte-specific markers, followed by rapid staining with a mixture of nuclear stain and Pt-porphyrin as an eosinophil stain. The results show that multiple luminescent dyes with long decay time can be used together, and in combination with a conventional fluorophore. The separation of the signals of the long decay time labels was distinctive and enabled reliable identification of different leukocyte types, as well as an automated cell count. The long decay time luminophores together with time-resolved luminescence imaging microscopy (TR-LIM) provide a unique tool for studies of simultaneous expression of multiple antigens at the level of a single cell. In comparison with other multiparameter imaging techniques, the described technique offers increased accuracy of results, simplification of preparation procedure, and dramatic shortening of the total processing time. To our knowledge, this is the first time that simultaneous fivefold labeling/staining and analysis in a single specimen has been performed in the field of immunocytochemistry.
在本报告中,我们描述了在单个样本中使用五种不同光致发光染料的发光成像显微镜技术。我们将长衰变时间发光体铕(III)螯合物、铽(III)螯合物、钯(II)原卟啉和铂(II)原卟啉与一种绿色核染色剂Syto 25商标相结合,该染色剂发出传统的快速衰变荧光。利用时间分辨检测,通过光谱和衰变时间的差异将五种不同发光体的发光发射彼此分离。这种染料组合在混合的外周血白细胞群体中验证了其对生物对象进行多参数分析的适用性。白细胞细胞离心涂片与识别中性粒细胞和淋巴细胞特异性标志物的发光体偶联抗体混合物一步孵育,然后用核染色剂和作为嗜酸性粒细胞染色剂的铂卟啉混合物进行快速染色。结果表明,多种长衰变时间的发光染料可以一起使用,并与传统荧光团结合使用。长衰变时间标记信号的分离是独特的,能够可靠地识别不同的白细胞类型,并实现自动细胞计数。长衰变时间发光体与时间分辨发光成像显微镜(TR-LIM)一起为在单细胞水平研究多种抗原的同时表达提供了一种独特的工具。与其他多参数成像技术相比,所描述的技术提高了结果的准确性,简化了制备程序,并显著缩短了总处理时间。据我们所知,这是免疫细胞化学领域首次在单个样本中进行同时五重标记/染色和分析。