Institute of Clinical Pharmacology, School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou 510080, China.
Guangdong RangerBio Technologies Co., Ltd., Dongguan 523000, China.
Anal Chem. 2020 Jun 2;92(11):7690-7698. doi: 10.1021/acs.analchem.0c00633. Epub 2020 May 20.
The present project studied the signal drift in liquid chromatography tandem mass spectrometry (LC-MS/MS) and proposed a strategy for compensating such drift. In the study, four 4-component groups were repeatedly run on different LC-MS/MS systems for over 12 h to investigate the dependence of signal drift on time and hardware systems. The 4-component groups each consisted of (1) an analyte, (2) a stable isotope labeled analyte, (3) a compound with similar structure to the analyte, and (4) a compound with dissimilar structure. All of the species showed significant signal drift, generally more than 25% over 12 h. The analyte and its stable isotope labeled analog always have the same drifting pattern including the trends and direction from one LC-MS/MS system to another. Signal drift was also found to be concentration dependent. Our experiments further proved that a conventional stable isotope labeled internal standard in LC-MS/MS quantification would not compensate the variations caused by concentration-dependent signal drift. An ideal internal standard for LC-MS/MS has both identical structure and similar concentration to the analyte. For that, we proposed a new internal standard strategy, pseudo internal standard (Pseudo IS), for LC-MS/MS quantification. Pseudo IS could effectively compensate signal drift in spite of its significant time, system, and concentration dependencies.
本研究考察了液相色谱串联质谱(LC-MS/MS)中的信号漂移,并提出了一种补偿这种漂移的策略。在研究中,4 个 4 组分组在不同的 LC-MS/MS 系统上重复运行超过 12 小时,以研究信号漂移对时间和硬件系统的依赖性。4 个 4 组分组分别由(1)分析物、(2)稳定同位素标记的分析物、(3)与分析物结构相似的化合物和(4)结构不同的化合物组成。所有的物质都表现出明显的信号漂移,一般在 12 小时内超过 25%。分析物及其稳定同位素标记的类似物总是具有相同的漂移模式,包括从一个 LC-MS/MS 系统到另一个系统的趋势和方向。信号漂移也与浓度有关。我们的实验进一步证明,LC-MS/MS 定量中的常规稳定同位素标记内标不能补偿浓度依赖性信号漂移引起的变化。对于 LC-MS/MS 来说,理想的内标应具有与分析物相同的结构和相似的浓度。为此,我们提出了一种新的 LC-MS/MS 定量内标策略,即伪内标(Pseudo IS)。Pseudo IS 可以有效地补偿信号漂移,尽管它具有显著的时间、系统和浓度依赖性。