首页> 外文期刊>Cytometry: The Journal of the Society for Analytical Cytology >Comparative analysis of different flow cytometry-based immunophenotypic methods for the analysis of CD59 and CD55 expression on major peripheral blood cell subsets
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Comparative analysis of different flow cytometry-based immunophenotypic methods for the analysis of CD59 and CD55 expression on major peripheral blood cell subsets

机译:基于流式细胞术的免疫表型分析方法在主要外周血亚群上CD59和CD55表达分析的比较分析

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Background: Flow cytometry-based immunophenotypic techniques for the analysis of CD55 and CD59 expression on the major cell populations present in blood are the preferred method for the diagnostic screening of paroxysmal nocturnal hemoglobinuria (PNH). Methods: In the present study, we comparatively analyze the effects of stain-lyse-and-then-wash techniques and lyse-wash-and-then-stain procedures on the detection of both CD55 and CD59 expression on the major peripheral blood (PB) leucocyte subsets, as analyzed by flow cytometry. Our major goal was to establish the minimum amounts of anti-CD55 and anti-CD59 reagents required to be added to a minimum volume of blood, which would allow an optimal staining for both antigens on red cells, platelets, and leucocytes present in a single tube. Results: Our results show that upon comparing stain-lyse-and-then-wash techniques with lyse-wash-and-then-stain protocols, the presence of important amounts of red cells at the time peripheral blood leucocytes are stained for CD55 and CD59 is associated with a significantly (P < 0.01) lower and more heterogeneous pattern of antigen expression on almost all major PB leucocyte subsets, supporting the need to use red cell lysing procedures prior to the staining of leucocytes. Identical, optimal patterns of antigen staining for CD55 and CD59 were obtained upon incubating 3 muL of blood with 10 muL of each of these monoclonal antibody (mAb) reagents (protein concentration of 0.05 mug/muL and 0.2 mug/muL respectively) for 30 min (room temperature [RT]) using a non-lyse-non-wash sample preparation procedure. This latter procedure allowed for the simultaneous analysis of CD55 and CD59 expression on red cells, platelets, neutrophils, monocytes, and lymphocytes present in the sample through the combined staining of CD55 and CD59 with CD64-fluorescein isothiocyante (FITC) plus CD61-peridinin chlorophyll protein (PerCP) and CD45-PerCP. Conclusions: In summary, our results show that the sample preparation protocol has a significant impact on the quality of the staining obtained for the CD55 and CD59 antigens on the major PB leucocyte subsets; additionally, we propose a simple and reliable stain-non-lyse-non-wash method for the simultaneous analysis of CD55 and CD59 expression on PB red cells, platelets, neutrophils, monocytes, and lymphocytes, which could be reached through the use of two triple stainings. (C) 2002 Wiley-Liss, Inc. [References: 29]
机译:背景:基于流式细胞仪的免疫表型技术可分析血液中主要细胞群上的CD55和CD59表达,是诊断性阵发性夜间血红蛋白尿(PNH)的诊断性筛选的首选方法。方法:在本研究中,我们比较分析了染色-洗-洗-洗技术和洗-洗-洗-染方法对检测主要外周血(PB)CD55和CD59表达的影响。 )流式细胞仪分析的白细胞亚群。我们的主要目标是确定添加到最小血液量中的最小量的抗CD55和抗CD59试剂,从而可以对单个细胞中存在的红细胞,血小板和白细胞上的两种抗原进行最佳染色管。结果:我们的结果表明,将“先漂洗再漂洗”技术与“先漂洗再漂洗”方案进行比较,在外周血白细胞对CD55和CD59进行染色时,存在大量的红细胞与几乎所有主要PB白细胞亚群上抗原表达的显着(P <0.01)更低和更多的异质性模式相关,支持在白细胞染色之前需要使用红细胞裂解程序。将3μL血液与10μL每种单克隆抗体(mAb)试剂(分别为0.05杯/μL和0.2杯/μL的蛋白质浓度)孵育30分钟后,可获得与CD55和CD59相同的最佳抗原染色模式。 (室温[RT]),使用非裂解非洗涤样品制备程序。后面的步骤通过同时用CD64和异硫氰酸荧光素(FITC)加上CD61-芹菜素叶绿素对CD55和CD59进行染色,可以同时分析样品中存在的红细胞,血小板,中性粒细胞,单核细胞和淋巴细胞上CD55和CD59的表达。蛋白(PerCP)和CD45-PerCP。结论:总而言之,我们的结果表明,样品制备方案对主要PB白细胞亚群中CD55和CD59抗原的染色质量有重大影响。此外,我们提出了一种简单可靠的染色-非裂解-非洗涤方法,用于同时分析PB红细胞,血小板,嗜中性粒细胞,单核细胞和淋巴细胞上的CD55和CD59表达,这可以通过使用两种方法来实现三重染色。 (C)2002 Wiley-Liss,Inc. [参考:29]

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