Center for Food Safety and Applied Nutrition, U.S. Food and Drug Administration, 5001 Campus Drive, College Park, Maryland 20740, United States.
Anal Chem. 2021 Jan 26;93(3):1596-1603. doi: 10.1021/acs.analchem.0c04036. Epub 2020 Dec 4.
Nontargeted (NTA) and suspect screening analyses (SSA) aim to detect and identify unknown compounds of interest from a given sample. The complexity and diversity of NTA and SSA methodologies necessitate the use of a comprehensive quality control standard mixture to determine if methods are fit for purpose, but to our knowledge, such a standard has not been developed that can be used by multiple disciplines, nor is one readily available. This work describes the development and analysis of a proposed nontargeted standard/quality control mixture for NTA and SSA applications using liquid chromatography/electrospray ionization-high resolution-mass spectrometry. Considerations in its development included achieving diversity of compounds with respect to elemental composition, molecular weight, retention time, and ionization in positive and/or negative ion modes, which resulted in the inclusion of 89 compounds. The utility of the standard mixture was applied on our own NTA and SSA workflows where sample preparation efficiency and potential sources of error due to instrumental and data processing methods were evaluated. Some areas in need of improvement were identified, such as hydrophilic compound detection and molecular formula generation for compounds containing fluorine. However, our overall methodology was found to be fit for purpose and we were able to establish thresholds to increase reliability and throughput of reported results.
非靶向(NTA)和疑似筛查分析(SSA)旨在从给定样品中检测和识别感兴趣的未知化合物。NTA 和 SSA 方法的复杂性和多样性需要使用全面的质量控制标准混合物来确定方法是否符合目的,但据我们所知,尚未开发出一种可被多个学科使用的标准混合物,也没有现成的标准混合物。本工作描述了一种使用液相色谱/电喷雾电离-高分辨质谱进行 NTA 和 SSA 应用的拟议非靶向标准/质量控制混合物的开发和分析。在其开发过程中考虑了实现元素组成、分子量、保留时间和正离子和/或负离子模式下的电离多样性的考虑因素,这导致了 89 种化合物的纳入。该标准混合物的实用性已应用于我们自己的 NTA 和 SSA 工作流程中,评估了样品制备效率和由于仪器和数据处理方法引起的潜在误差源。确定了一些需要改进的领域,例如含有氟的化合物的亲水化合物检测和分子公式生成。然而,我们的整体方法被认为是符合目的的,我们能够建立阈值来提高报告结果的可靠性和通量。