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基于高分辨质谱匹配和保留时间预测的仪器间简化 MRM 方法转移。

Streamlined MRM method transfer between instruments assisted with HRMS matching and retention-time prediction.

机构信息

School of Civil and Environmental Engineering, Nanyang Technological University, 639798, Singapore; Environmental Chemistry and Materials Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, 637141, Singapore.

Nanyang Environment and Water Research Institute, Nanyang Technological University, 637141, Singapore.

出版信息

Anal Chim Acta. 2020 Mar 1;1100:88-96. doi: 10.1016/j.aca.2019.12.002. Epub 2019 Dec 3.

Abstract

Multiple reaction monitoring (MRM) mode using liquid-chromatography tandem mass spectrometry (e.g., LC-QqQ-MS/MS) has been extensively employed in the small molecule analysis with trace levels in complex samples owing to its high sensitivity. However, most of the reported MRM methods are developed using authentic standards, which are often costly yet not readily available. To address this question, a practical platform for the MRM method transfer between different LC-QqQ-MS/MS instruments, assisted by the high-resolution mass spectrometry (LC-HRMS) and retention time (RT) prediction, has been developed in this study. The reported platform can take advantage of both the high sensitivity of LC-MRM method and ion transition pairs from the previous publications. LC-HRMS can provide the accurate mass measurement of the compounds, though high-quality MS/MS fragments are usually difficult to obtain for chemicals at trace levels. Retention time matching and peaks matching between both instrumental platforms rule out isobaric candidates. With an additional retention time prediction filter from quantitative structure retention relationship (QSRR) model based on random forest feature selection (Pearson r = 0.63), identification of small molecules is achieved at a high confidence level without using authentic standards. The developed platform has been validated with robustness by examining spiked environmental chemicals in sludge water samples, biological urine, and cell extracts.

摘要

多反应监测(MRM)模式结合液质联用(LC-QqQ-MS/MS),因其灵敏度高,在痕量复杂样品的小分子分析中得到了广泛应用。然而,大多数报道的 MRM 方法都是使用昂贵且不易获得的标准品开发的。为了解决这个问题,本研究开发了一个实用的平台,通过高分辨质谱(LC-HRMS)和保留时间(RT)预测,实现了不同 LC-QqQ-MS/MS 仪器之间的 MRM 方法转移。该平台可以充分利用 LC-MRM 方法的高灵敏度和先前文献中的离子转换对。LC-HRMS 可以提供化合物的精确质量测量,但对于痕量化学物质,通常难以获得高质量的 MS/MS 碎片。在两个仪器平台之间进行保留时间匹配和峰匹配,可以排除同重离子候选物。通过基于随机森林特征选择(Pearson r=0.63)的定量结构保留关系(QSRR)模型的额外保留时间预测过滤器,可以在不使用标准品的情况下,以高置信度实现小分子的鉴定。该平台已通过对污泥水样、生物尿液和细胞提取物中添加的环境化学物质进行稳健性检验得到验证。

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