Processing of gene expression data generated by quantitative real-time RT-PCR.

计算机科学 软件 定量分析(化学) 数据挖掘 吞吐量 实验数据 统计分析 Microsoft excel 计算生物学 统计 生物 数学 操作系统 电信 化学 程序设计语言 无线 色谱法
作者
Patrick Muller,Harald Janovjak,André R. Miserez,Zuzana Dobbie
出处
期刊:PubMed 卷期号:32 (6): 1372-9 被引量:1403
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Quantitative real-time PCR represents a highly sensitive and powerful technique for the quantitation of nucleic acids. It has a tremendous potential for the high-throughput analysis of gene expression in research and routine diagnostics. However, the major hurdle is not the practical performance of the experiments themselves but rather the efficient evaluation and the mathematical and statistical analysis of the enormous amount of data gained by this technology, as these functions are not included in the software provided by the manufacturers of the detection systems. In this work, we focus on the mathematical evaluation and analysis of the data generated by quantitative real-time PCR, the calculation of the final results, the propagation of experimental variation of the measured values to the final results, and the statistical analysis. We developed a Microsoft Excel-based software application coded in Visual Basic for Applications, called Q-Gene, which addresses these points. Q-Gene manages and expedites the planning, performance, and evaluation of quantitative real-time PCR experiments, as well as the mathematical and statistical analysis, storage, and graphical presentation of the data. The Q-Gene software application is a tool to cope with complex quantitative real-time PCR experiments at a high-throughput scale and considerably expedites and rationalizes the experimental setup, data analysis, and data management while ensuring highest reproducibility.

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