Anatune Limited, Wellbrook Court, Girton Road, Cambridge CB3 0NA, United Kingdom.
Syft Technologies Limited, 3 Craft Place, Christchurch 8024, New Zealand.
Anal Chem. 2021 Jun 22;93(24):8386-8392. doi: 10.1021/acs.analchem.1c01310. Epub 2021 Jun 8.
Analysis of volatile organic compounds (VOCs) in water is conventionally conducted using gas chromatography (GC)-based methods, for which sample preparation demands are relatively high and throughput is relatively low due to the time taken to achieve chromatographic separation. Direct mass spectrometry (DMS) techniques such as selected ion flow tube mass spectrometry (SIFT-MS) have potential to analyze water headspace (HS) at high sensitivity with minimal sample preparation, eliminating preconcentration/purging and/or water management steps. However, the dearth of guidance for validation of DMS methods is an impediment to their adoption in routine analysis. This study applies and adapts an internationally recognized pharmaceutical industry guidance document for method validation to a prototypical SIFT-MS headspace analysis method for 17 toxic VOCs in water. The approach to validation is, however, applicable to any routine analysis conducted using SIFT-MS, and very likely to any methods developed using other DMS techniques. For the method developed and validated here, linearities (as measured by the linear regression coefficient, R) were better than 0.990 for all compounds. Repeatability (measured using relative standard deviation, RSD) was less than 10% for all compounds. Similar method performance was observed for accuracy and recovery. The performance criteria achieved by this HS-SIFT-MS method suggest it has potential application in environmental and pharmaceutical routine analyses, perhaps as a rapid screening tool.
传统上,采用基于气相色谱(GC)的方法分析水中的挥发性有机化合物(VOCs),由于达到色谱分离所需的时间,因此样品制备要求相对较高,并且通量相对较低。直接质谱(DMS)技术,如选择离子流管质谱(SIFT-MS),具有在最小样品制备的情况下以高灵敏度分析水顶空(HS)的潜力,无需预浓缩/吹扫和/或水管理步骤。然而,缺乏 DMS 方法验证的指南是阻碍其在常规分析中采用的一个因素。本研究应用并改编了一份国际认可的制药行业方法验证指南,用于对水中 17 种有毒 VOC 的典型 SIFT-MS 顶空分析方法进行验证。然而,这种验证方法适用于使用 SIFT-MS 进行的任何常规分析,并且很可能适用于使用其他 DMS 技术开发的任何方法。对于这里开发和验证的方法,所有化合物的线性度(通过线性回归系数 R 测量)均优于 0.990。所有化合物的重复性(通过相对标准偏差 RSD 测量)均小于 10%。对于准确性和回收率,也观察到了类似的方法性能。这种 HS-SIFT-MS 方法的性能标准表明,它可能具有在环境和制药常规分析中的潜在应用,例如作为快速筛选工具。