Department of Environmental Chemistry, IDAEA-CSIC, Jordi Girona 18-26, 08034 Barcelona, Catalonia, Spain.
J Chromatogr A. 2013 Feb 8;1276:78-94. doi: 10.1016/j.chroma.2012.12.031. Epub 2012 Dec 24.
Cytostatic compounds used in the treatment of cancer have emerged as a new generation of water contaminants due to the continuous amounts administered to patients and to the fact that a variable proportion is excreted unchanged. In this study, we have evaluated the performance of liquid-chromatography-tandem mass spectrometry (LC-MS/MS) and high resolution mass spectrometry using an Orbitrap analyzer (LC-HRMS) for the multiresidue determination of multi-class cytostatic compounds. In a first step, ionization conditions were tested in positive electrospray mode and optimum fragmentation patterns were determined. For LC-MS/MS, two selected reaction monitoring (SRM) transitions were optimized and for LC-HRMS, the molecular ion with 5 ppm error and two product ions were defined. Following, the chromatographic conditions were optimized considering that compounds analyzed have a very different chemical structure and chromatographic behavior. The best performance was obtained with a Luna C18 column, which permitted the separation of the 26 compounds in 15 min. Finally, the performance of LC-MS/MS and LC-HRMS was compared in terms of linearity, sensitivity, intra and inter-day precision and overall robustness. While LC-MS/MS provided good identification capabilities due to selective SRM transitions, LC-Orbitrap proved to be 100 times more sensitive. This study provides a comprehensive overview on the MS conditions to determine the outmost used cytostatic compounds and provides a spectral library to be used for the identification of these compounds in water or biological matrices.
由于癌症治疗中使用的细胞抑制剂化合物不断被给予患者,并且有一部分会不变地排泄,因此它们已成为新一代的水污染物质。在这项研究中,我们评估了液相色谱-串联质谱(LC-MS/MS)和使用轨道阱分析仪(LC-HRMS)的高性能分辨率质谱法在多类细胞抑制剂化合物的多残留测定中的性能。在第一步中,我们在正电喷雾模式下测试了离子化条件,并确定了最佳的碎裂模式。对于 LC-MS/MS,我们优化了两个选择反应监测(SRM)转换,对于 LC-HRMS,我们定义了分子离子和 5 ppm 误差以及两个产物离子。接着,考虑到分析的化合物具有非常不同的化学结构和色谱行为,我们优化了色谱条件。在 Luna C18 柱上获得了最佳性能,该柱可在 15 分钟内分离 26 种化合物。最后,我们从线性、灵敏度、日内和日间精密度以及整体稳健性方面比较了 LC-MS/MS 和 LC-HRMS 的性能。虽然 LC-MS/MS 提供了由于选择性 SRM 转换而具有良好的鉴定能力,但 LC-Orbitrap 的灵敏度要高 100 倍。本研究全面概述了确定最常用细胞抑制剂化合物的 MS 条件,并提供了一个光谱库,可用于在水或生物基质中鉴定这些化合物。