首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Generation of flow cytometry data files with a potentially infinite number of dimensions
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Generation of flow cytometry data files with a potentially infinite number of dimensions

机译:流式细胞术数据文件的生成可能具有无限数量的维度

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Immunophenotypic characterization of B-cell chronic lymphoproliferative disorders (B-CLPD) is associated with the use of increasingly larger panels of multiple combinations of 3 to >= 6 monoclonal antibodies (Mab), data analysis being separately performed for each of the different stained sample aliquots. Here, we describe and validate an automated method for calculation of flow cytometric data from several multicolor stainings of the same cell sample-i.e., the merging of data from different aliquots stained with partially overlapping combinations of Mab reagents (focusing on >= 1 cell populations)-into one data file as if it concerned a single "super" multicolor staining. Evaluation of the performance of the method described was done in a group of 60 B-CLPD studied at diagnosis with 18 different reagents in a panel containing six different 3- and 4-color stainings, which systematically contained CD19 for the identification of B-cells. Our results show a high degree of correlation and agreement between originally measured and calculated data about cell surface stainings, providing a basis for the use of this approach for the generation of flow cytometric data files containing information about a virtually infinite number of stainings for each individual cellular event measured in a sample, using a limited number of fluorochrome stainings. (C) 2008 International Society for Advancement of Cytometry.
机译:B细胞慢性淋巴组织增生性疾病(B-CLPD)的免疫表型表征与使用越来越多的3到> = 6单克隆抗体(Mab)的多种组合的面板有关,分别对每个不同的染色样品进行数据分析等分试样。在这里,我们描述并验证了一种自动方法,该方法可用于计算来自同一细胞样品的几种多色染色的流式细胞术数据,即合并来自不同等分试样的数据,并用部分重叠的Mab试剂组合染色(集中于> = 1个细胞群体) )到一个数据文件中,就好像它涉及单个“超级”多色染色一样。在一组60种B-CLPD的诊断中研究了上述方法的性能,该B-CLPD是在诊断时使用18种不同试剂进行检测的,一组包含6种不同的3色和4色染色,这些染色系统地包含CD19以鉴定B细胞。我们的结果表明,最初测量的和计算得出的有关细胞表面染色的数据之间具有高度的相关性和一致性,这为使用此方法生成流式细胞仪数据文件提供了基础,该文件包含有关每个个体几乎无限次染色的信息使用有限数量的荧光染料在样品中测得的细胞事件。 (C)2008国际细胞计数学会。

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