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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Quantitative data analysis methods for bead-based DNA hybridization assays using generic flow cytometry platforms
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Quantitative data analysis methods for bead-based DNA hybridization assays using generic flow cytometry platforms

机译:使用通用流式细胞仪平台进行基于珠子的DNA杂交测定的定量数据分析方法

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Bead-based assays are in demand for rapid genomic and proteomic assays for both research and clinical purposes. Standard quantitative procedures addressing raw data quality and analysis are required to ensure the data are consistent and reproducible across laboratories independent of flow platform. Quantitative procedures have been introduced spanning raw histogram analysis through to absolute target quantitation. These included models developed to estimate the absolute number of sample molecules bound per bead (Langmuir isotherm), relative quantitative comparisons (two-sided t-tests), and statistical analyses investigating the quality of raw fluorescence data. The absolute target quantitation method revealed a concentration range (below probe saturation) of Cy5-labeled synthetic cytokeratin 19 (K19) RNA of c.a. 1 x 10(4) to 500 x 10(4) molecules/bead, with a binding constant of c.a. 1.6 nM. Raw hybridization frequency histograms were observed to be highly reproducible across 10 triplex assay replicates and only three assay replicates were required to distinguish overlapping peaks representing small sequence mismatches. This study provides a quantitative scheme for determining the absolute target concentration in nucleic acid hybridization reactions and the equilibrium binding constants for individual probe/target pairs. It is envisaged that such studies will form the basis of standard analytical procedures for bead-based cytometry assays to ensure reproducibility in inter- and intra-platform comparisons of data between laboratories.
机译:为了研究和临床目的,需要基于珠的测定法用于快速的基因组和蛋白质组测定法。需要采用标准的定量程序来处理原始数据的质量和分析,以确保数据在独立于Flow平台的各个实验室之间是一致且可复制的。引入了定量程序,从原始直方图分析到绝对目标定量。这些包括开发的模型用于估计每个珠子结合的样品分子的绝对数量(Langmuir等温线),相对定量比较(双向t检验)和统计分析,以研究原始荧光数据的质量。绝对目标定量方法显示Cy.a的Cy5标记的合成细胞角蛋白19(K19)RNA的浓度范围(低于探针饱和度)。 1 x 10(4)至500 x 10(4)分子/珠子,结合常数为c.a. 1.6 nM。观察到原始杂交频率直方图在10个三重测定重复测定中具有很高的重现性,仅需三个重复测定即可区分代表小序列错配的重叠峰。这项研究提供了一种定量方案,用于确定核酸杂交反应中的绝对靶标浓度以及各个探针/靶标对的平衡结合常数。可以设想,这些研究将成为基于珠子的细胞计数法的标准分析程序的基础,以确保实验室之间平台间和平台内数据比较的可重复性。

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