Department of Bio-Analytical Science , University of Science and Technology , 217 Gajeong-ro , Yuseong-gu, Daejeon 34113 , Republic of Korea.
Anal Chem. 2019 Mar 19;91(6):3936-3943. doi: 10.1021/acs.analchem.8b04940. Epub 2019 Mar 7.
Conventional DNA quantification methods require a DNA purification step that limits their reliability in estimating the original DNA amount, especially in complex matrix. To overcome this limitation, we developed a method to calibrate the variable DNA extraction efficiencies during the purification process, allowing for the accurate quantification of DNA in complex matrix. This method is based on isotope dilution-liquid chromatography-mass spectrometry using stable isotope labeled DNA (SILD) as an internal standard. Steps include spiking prepared SILD into samples, purification, enzymatic hydrolysis, and detection of DNA monomers via mass spectrometry, where the spiked SILD is expected to behave the same as the target DNA throughout the entire procedure. We show that the mean recoveries of four different DNA purification kits were dramatically improved by using the SILD internal standard, both for Escherichia coli and human genomic DNA. As standards for calibration, deoxyribonucleoside monophosphates and purified genomic DNA were tested, with genomic DNA from corresponding species found to calibrate the variable extraction efficiencies more effectively. With this successful calibration, our newly developed procedure enables International System of Units-traceable quantification of total DNA in complex matrix.
传统的 DNA 定量方法需要进行 DNA 纯化步骤,这限制了它们在估计原始 DNA 含量方面的可靠性,尤其是在复杂基质中。为了克服这一限制,我们开发了一种方法来校准纯化过程中可变的 DNA 提取效率,从而能够准确地定量复杂基质中的 DNA。该方法基于使用稳定同位素标记的 DNA(SILD)作为内标进行同位素稀释-液相色谱-质谱分析。步骤包括将制备好的 SILD 掺入样品中,进行纯化、酶解,然后通过质谱检测 DNA 单体,预计掺入的 SILD 在整个过程中与目标 DNA 表现相同。我们表明,通过使用 SILD 内标,四种不同的 DNA 纯化试剂盒的平均回收率得到了显著提高,无论是大肠杆菌还是人类基因组 DNA 都是如此。脱氧核苷一磷酸和纯化的基因组 DNA 被用作校准标准,结果发现来自相应物种的基因组 DNA 能够更有效地校准可变的提取效率。通过这种成功的校准,我们新开发的程序能够在复杂基质中进行基于国际单位制的总 DNA 的可追踪定量。