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基于扩增兼容性测试的定量 PCR 质量控制。

Quality control for quantitative PCR based on amplification compatibility test.

机构信息

Technical University Munich, Physiology Weihenstephan, Weihenstephaner Berg 3, 85354 Freising-Weihenstephan, Germany.

出版信息

Methods. 2010 Apr;50(4):308-12. doi: 10.1016/j.ymeth.2010.01.028. Epub 2010 Jan 28.

Abstract

Quantitative qPCR is a routinely used method for the accurate quantification of nucleic acids. Yet it may generate erroneous results if the amplification process is obscured by inhibition or generation of aberrant side-products such as primer dimers. Several methods have been established to control for pre-processing performance that rely on the introduction of a co-amplified reference sequence, however there is currently no method to allow for reliable control of the amplification process without directly modifying the sample mix. Herein we present a statistical approach based on multivariate analysis of the amplification response data generated in real-time. The amplification trajectory in its most resolved and dynamic phase is fitted with a suitable model. Two parameters of this model, related to amplification efficiency, are then used for calculation of the Z-score statistics. Each studied sample is compared to a predefined reference set of reactions, typically calibration reactions. A probabilistic decision for each individual Z-score is then used to identify the majority of inhibited reactions in our experiments. We compare this approach to univariate methods using only the sample specific amplification efficiency as reporter of the compatibility. We demonstrate improved identification performance using the multivariate approach compared to the univariate approach. Finally we stress that the performance of the amplification compatibility test as a quality control procedure depends on the quality of the reference set.

摘要

实时定量 qPCR 是一种常用于核酸精确定量的方法。然而,如果扩增过程受到抑制或产生异常的副产物(如引物二聚体)的干扰,可能会产生错误的结果。已经建立了几种方法来控制预处理性能,这些方法依赖于引入共扩增的参考序列,但是目前没有一种方法可以在不直接修改样品混合物的情况下可靠地控制扩增过程。在这里,我们提出了一种基于实时扩增反应数据的多元分析的统计方法。在最具分辨率和动态的扩增阶段,对扩增轨迹进行拟合,以适合的模型。然后,使用该模型的两个与扩增效率相关的参数来计算 Z 分数统计量。将每个研究样本与预定义的参考反应集(通常是校准反应)进行比较。然后,使用每个个体 Z 分数的概率决策来识别我们实验中大多数受抑制的反应。我们将这种方法与仅使用样本特异性扩增效率作为兼容性报告的单变量方法进行比较。我们证明了与单变量方法相比,多元方法可以提高识别性能。最后,我们强调,扩增兼容性测试作为质量控制程序的性能取决于参考集的质量。

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