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Droplet Volume Variability and Impact on Digital PCR Copy Number Concentration Measurements

机译:液滴体积变异性和对数字PCR拷贝数浓度测量的影响

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Digital polymerase chain reaction (dPCR) is increasingly being adopted by reference material producers and metrology institutes for value assignment, and for homogeneity and stability studies of nucleic acid reference materials. A reference method procedure should fulfill several requirements, and the uncertainty and biases should be completely understood. A bias in target concentration when inaccurate droplet volume is used in the droplet dPCR measurement equation has previously been documented. In this study, we characterize both intrawell and interwell droplet volume variability using optical microscopy and determine the impact of these two sources of variability on target concentration estimates. A small optical distortion across the image was measured which, without correction, biased droplet volume measurements. Longitudinal monitoring of interwell droplet volume over 39 weeks using several lots of Mastermix demonstrated a mean droplet volume of 0.786 nL and intermediate precision of 1.7%. The frequency distribution of intrawell droplet volumes varied. Some wells displayed a skewed distribution which resulted in a small bias in estimated target concentration for a simulated dPCR with target concentrations of between 62 and 8000 copies mu L-1. The size and direction of this bias was influenced by the distribution pattern of the droplet volumes within the well. The proportion of Mastermix in dPCR mix affected droplet volume. A pipetting error of 10% during mixing of the premix and Mastermix resulted in a 2.6% change in droplet volume and, consequently, a bias in concentration measurements highlighting the advantages of gravimetric preparation of dPCR mixes for high accuracy measurements.
机译:参考材料生产商和计量机构的价值分配和核酸参考材料的均匀性和稳定性研究越来采用数字聚合酶链反应(DPCR)。参考方法程序应符合若干要求,应完全理解不确定性和偏见。在液滴DPCR测量方程中使用时,目标浓度的偏差先前已被记录。在这项研究中,我们使用光学显微镜表征intrawell和Interwell液滴体积变异性,并确定这两个可变异源对目标浓度估计的影响。测量图像跨越图像的小光学失真,没有校正,偏置液滴体积测量。使用几次大量MasterMix的纵向监测39周超过39周,显示平均液滴体积为0.786 NL,中间精度为1.7%。 Intrawell Droplet Volumes的频率分布变化。一些孔显示出偏斜的分布,其导致估计的靶浓度小的偏差,用于模拟DPCR,其目标浓度在62和8000拷贝MU L-1之间。该偏置的尺寸和方向受井内液滴体积的分布图案的影响。 DPCR混合中的MasterMix的比例受影响的液滴体积。液滴体积混合期间,在混合过程中10%的移液误差导致液滴体积的2.6%,因此浓缩测量中的偏差突出了DPCR混合的重量谱准备进行高精度测量的优点。

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