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Quantitative karyotyping of human chromosomes by dual beam flow cytometry.

机译:通过双束流式细胞仪定量人类染色体核型。

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摘要

Dual beam flow cytometry of chromosomes stained with Hoechst 33258 and chromomycin A3 has been proposed as a method for quantitative classification of human chromosomes (bivariate flow karyotyping). In this paper we investigate the sources and magnitudes of variability in the mean fluorescence intensities of each chromosome group resolved in bivariate flow karyotypes and study the impact of this variability on chromosome classification. Replicate bivariate flow karyotypes of chromosomes isolated from lymphocytes from 10 individuals demonstrated that person-to-person variability was significantly greater than run-to-run variability. The total variability was sufficiently small that it did not interfere with classification of normal chromosome types except chromosomes 9 through 12 and chromosomes 14 and 15. Furthermore, the variability was generally smaller than 1/600th of the mitotic genome, so that one-band rearrangements should be detectable in bivariate flow karyotypes.
机译:有人提出用Hoechst 33258和chromomycin A3染色的染色体的双光束流式细胞术作为对人类染色体进行定量分类的方法(双变量流核型)。在本文中,我们研究了在双变量流型核型中解析的每个染色体组的平均荧光强度的变异性的来源和大小,并研究了这种变异性对染色体分类的影响。从10个个体的淋巴细胞中分离出的染色体的重复双变量流核型表明,人与人之间的变异性显着大于批次之间的变异性。总变异性足够小,以至于不会干扰正常染色体类型的分类,除了第9至12号染色体以及第14和15号染色体。此外,变异性通常小于有丝分裂基因组的1/600,因此单带重排在双变量流核型中应该是可检测的。

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