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Investigation of direct counting and sizing of DNA fragments in flow applying an improved data analysis and correction method

机译:利用改进的数据分析和校正方法研究直接计数和确定流动中DNA片段的大小

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Direct detection of single stained DNA fragments in flow is a very sensitive method for nucleic acid detection which does not need any amplification process. We have developed an instrument for direct counting and sizing of single DNA fragments (single or double stranded DNA) in flow with integrated sample volume measurement for concentration determination. As the method is a potential reference method for DNA quantification, processes affecting the measurement uncertainty are of major interest. Additionally, comparison of this method to the orthogonal method of digital PCR is useful with the restriction of low specificity of the direct detection method. In this study, we analysed raw detector signals and the sizing performance for target identification and the effect of coincidence detection concerning concentration measurements. We present data of purified artificial DNA samples measured with the home-built setup. Main emphasis was to develop an improved data analysis method to gain insight into and carefully correct for coincident detection of DNA fragments and for estimation of the amount of fragment dimers.
机译:直接检测流动中的单个染色DNA片段是一种非常灵敏的核酸检测方法,不需要任何扩增过程。我们开发了一种仪器,用于直接计数和确定流动中的单个DNA片段(单链或双链DNA)的大小,并通过集成的样品体积测量来确定浓度。由于该方法是DNA定量的潜在参考方法,因此影响测量不确定度的过程尤为重要。另外,在直接检测方法特异性低的限制下,将该方法与数字PCR的正交方法进行比较非常有用。在这项研究中,我们分析了原始检测器信号以及用于目标识别的选型性能以及与浓度测量有关的重合检测的效果。我们提供使用自制设备测量的纯化人工DNA样品的数据。主要重点是开发一种改进的数据分析方法,以洞悉并仔细纠正DNA片段的同时检测以及片段二聚体的数量的估计。

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