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Utilization of Digital PCR in Quantity Verification of Plasmid Standards Used in Quantitative PCR

机译:数量验证数量验证数量PCR的数量验证

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Quantitative PCR (qPCR) is a widely used method for nucleic acid quantification of various pathogenic microorganisms. For absolute quantification of microbial load by qPCR, it is essential to create a calibration curve from accurately quantified quantification standards, from which the number of pathogens in a sample is derived. Spectrophotometric measurement of absorbance is a routine method for estimating nucleic acid concentration, however, it may be affected by presence of other potentially contaminating nucleic acids or protein and salts. Therefore, absorbance measurement is not reliable for estimating the concentration of stock solutions of quantification standards, based on which they are subsequently diluted. In this study, we utilized digital PCR (dPCR) for absolute quantification of qPCR plasmid standards and thus detecting possible discrepancies in the determination of the plasmid DNA number of standards derived from UV spectrophotometry. The concept of dPCR utilization for quantification of standards was applied on 45 qPCR assays using droplet-based and chip-based dPCR platforms. Using dPCR, we found that spectrophotometry overestimated the concentrations of standard stock solutions in the majority of cases. Furthermore, batch-to-batch variation in standard quantity was revealed, as well as quantitative changes in standards over time. Finally, it was demonstrated that droplet-based dPCR is a suitable tool for achieving defined quantity of quantification plasmid standards and ensuring the quantity over time, which is crucial for acquiring homogenous, reproducible and comparable quantitative data by qPCR.
机译:定量PCR(QPCR)是各种致病微生物的核酸定量的广泛使用的方法。对于通过QPCR的微生物载荷的绝对定量,必须从准确定量的定量标准中创建校准曲线,从中衍生出样品中的病原体的数量。光度测量的吸光度测量是用于估计核酸浓度的常规方法,然而,它可能受到其他可能污染的核酸或蛋白质和盐的存在影响。因此,对于估计定量标准的储备溶液的浓度,吸光度测量不可靠,基于随后稀释它们。在该研究中,我们利用了数字PCR(DPCR)以进行QPCR质粒标准的绝对定量,从而检测测定衍生自UV分光光度法的质粒DNA数量的可能差异。使用基于液滴和基于芯片的DPCR平台的45 QPCR测定,应用用于定量标准的DPCR利用的概念。使用DPCR,我们发现分光光度法高估了大多数情况下的标准储备溶液的浓度。此外,揭示了标准量的分批变化,以及随时间的标准的定量变化。最后,证明基于液滴的DPCR是用于实现定义量的定量质粒标准的合适工具,并确保随时间的量,这对于通过QPCR获取均匀,可重复和可比较的定量数据至关重要。

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