Research Institute for Pesticides and Water, University Jaume I, E-12071 Castellón, Spain.
Rapid Commun Mass Spectrom. 2011 Jan 30;25(2):355-69. doi: 10.1002/rcm.4860.
Hybrid quadrupole time-of-flight mass spectrometry (QTOF MS) has gained wide acceptance in many fields of chemistry, for example, proteomics, metabolomics and small molecule analysis. This has been due to the numerous technological advances made to this mass analyser in recent years. In the environmental field, the instrument has proven to be one of the most powerful approaches for the screening of organic pollutants in different matrices due to its high sensitivity in full acquisition mode and mass accuracy measurements. In the work presented here, the optimum experimental conditions for the creation of an empirical TOF MS spectra library have been evaluated. For this model we have used a QTOF Premier mass spectrometer and investigated its functionalities to obtain the best MS data, mainly in terms of mass accuracy, dynamic range and sensitivity. Different parameters that can affect mass accuracy, such as lock mass, ion abundance, spectral resolution, instrument calibration or matrix effect, have also been carefully evaluated using test compounds (mainly pesticides and antibiotics). The role of ultra-high-pressure liquid chromatography (UHPLC), especially when dealing with complex matrices, has also been tested. In addition to the mass accuracy measurements, this analyser allows the simultaneous acquisition of low and high collision energy spectra. This acquisition mode greatly enhances the reliable identification of detected compounds due to the useful (de)protonated molecule and fragment ion accurate mass information obtained when working in this mode. An in-house empirical spectral library was built for approximately 230 organic pollutants making use of QTOF MS in MS(E) mode. All the information reported in this paper is made available to the readers to facilitate screening and identification of relevant organic pollutants by QTOF MS.
混合四极杆飞行时间质谱(QTOF MS)在化学的许多领域,例如蛋白质组学、代谢组学和小分子分析中,已经得到了广泛的认可。这是由于近年来对这种质量分析仪进行了许多技术改进。在环境领域,由于该仪器在全采集模式下具有高灵敏度和质量精度测量,因此已被证明是筛选不同基质中有机污染物的最有力方法之一。在本研究中,我们评估了创建经验飞行时间质谱谱库的最佳实验条件。为此模型,我们使用了 QTOF Premier 质谱仪,并研究了其功能,以获得最佳的 MS 数据,主要是在质量精度、动态范围和灵敏度方面。还使用测试化合物(主要是农药和抗生素)仔细评估了可能影响质量精度的不同参数,例如锁质量、离子丰度、光谱分辨率、仪器校准或基质效应。超高效液相色谱(UHPLC)的作用,特别是在处理复杂基质时,也进行了测试。除了质量精度测量外,该分析仪还允许同时采集低和高碰撞能量谱。这种采集模式由于在这种模式下工作时获得的有用(去)质子化分子和碎片离子精确质量信息,极大地增强了检测化合物的可靠鉴定。利用 QTOF MS 在 MS(E)模式下,构建了一个大约 230 种有机污染物的内部经验谱库。本文中报告的所有信息都提供给读者,以方便通过 QTOF MS 筛选和鉴定相关有机污染物。