Clausen Frederik Banch, Urhammer Emil, Rieneck Klaus, Krog Grethe Risum, Nielsen Leif Kofoed, Dziegiel Morten Hanefeld
Department of Clinical Immunology, Copenhagen University Hospital, Copenhagen, Denmark.
Department of Development and Planning, Aalborg University, Copenhagen, Denmark.
APMIS. 2015 Sep;123(9):731-9. doi: 10.1111/apm.12405. Epub 2015 May 25.
High sensitivity of PCR-based detection of very low copy number DNA targets is crucial. Much focus has been on design of PCR primers and optimization of the amplification conditions. Very important are also the criteria used for determining the outcome of a PCR assay, e.g. how many replicates are needed and how many of these should be positive or what amount of template should be used? We developed a mathematical model to obtain a simple tool for quick PCR assay evaluation before laboratory optimization and validation procedures. The model was based on the Poisson distribution and the Binomial distribution describing parameters for singleplex real-time PCR-based detection of low-level DNA. The model was tested against experimental data of diluted cell-free foetal DNA. Also, the model was compared with a simplified formula to enable easy predictions. The model predicted outcomes that were not significantly different from experimental data generated by testing of cell-free foetal DNA. Also, the simplified formula was applicable for fast and accurate assay evaluation. In conclusion, the model can be applied for evaluation of sensitivity of real-time PCR-based detection of low-level DNA, and may also assist in design of new assays before standard laboratory optimization and validation is initiated.
基于PCR检测极低拷贝数DNA靶标的高灵敏度至关重要。人们一直非常关注PCR引物的设计和扩增条件的优化。用于确定PCR检测结果的标准也非常重要,例如需要多少个重复样本,其中应有多少个呈阳性,或者应使用多少量的模板?我们开发了一个数学模型,以获得一个简单的工具,用于在实验室优化和验证程序之前快速评估PCR检测。该模型基于泊松分布和二项分布,描述了基于单重实时PCR检测低水平DNA的参数。该模型针对稀释的游离胎儿DNA的实验数据进行了测试。此外,该模型还与一个简化公式进行了比较,以便进行简单预测。该模型预测的结果与通过检测游离胎儿DNA产生的实验数据没有显著差异。此外,简化公式适用于快速准确的检测评估。总之,该模型可用于评估基于实时PCR检测低水平DNA的灵敏度,也可在标准实验室优化和验证开始之前协助设计新的检测方法。