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A method for quantification of absolute amounts of nucleic acids by (RT)–PCR and a new mathematical model for data analysis

机译:(RT)–PCR定量核酸绝对量的方法和数据分析的新数学模型

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摘要

Accurate quantification of nucleic acids by competitive (RT)–PCR requires a valid internal standard, a reference for data normalization and an adequate mathematical model for data analysis. We report here an effective procedure for the generation of homologous RNA internal standards and a strategy for synthesizing and using a reference target RNA in quantification of absolute amounts of nucleic acids. Further, a new mathematical model describing the general kinetic features of competitive PCR was developed. The model extends the validity of quantitative competitive (RT)–PCR beyond the exponential phase. The new method eliminates the errors arising from different amplification efficiencies of the co-amplified sequences and from heteroduplex formation in the system. The high accuracy (relative error <2%) is comparable to the recently developed real time detection 5′-nuclease PCR. Also, corresponding computer software has been devised for practical data analysis.
机译:通过竞争性(RT)-PCR进行核酸的准确定量需要有效的内标,数据标准化的参考和适当的数据分析数学模型。我们在这里报告了产生同源RNA内部标准品的有效程序,以及在定量核酸绝对量时合成和使用参考靶RNA的策略。此外,开发了描述竞争性PCR总体动力学特征的新数学模型。该模型将定量竞争(RT)-PCR的有效性扩展到了指数期以外。该新方法消除了由于共扩增序列的不同扩增效率和系统中异源双链体形成而引起的错误。高精度(相对误差<2%)与最近开发的实时检测5'核酸酶PCR相当。而且,已经设计出相应的计算机软件来进行实际数据分析。

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