CIL-ExPMRM:一个超灵敏的化学同位素标记辅助伪mrm平台,以加速暴露性可疑筛选

IF 11.3 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Jie Zheng, Junjie Yang, Fanrong Zhao, Bo Peng, Yulan Wang* and Mingliang Fang*, 
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引用次数: 0

摘要

暴露体是下一代环境健康的未来,旨在建立环境暴露与疾病之间的联系。然而,由于暴露的化学品浓度低,暴露体由于缺乏有效的分析平台来表征其成分而受到阻碍。本研究结合化学同位素标记和伪多反应监测(CIL-pseudo-MRM)的优点,通过同位素标记尿暴露生物标志物,开发了一个高灵敏度、高通量的平台(CIL-ExPMRM)。用氯化丹酰(DnsCl)、n -甲基苯基乙胺(MPEA)及其同位素标记形式分别衍生极性羟基和羧基化合物。我们编写了一系列的脚本来优化MRM转换参数,管理MRM数据库(>70,000个化合物),预测准确的保留时间(RT),并自动化动态MRM。接下来是自动MRM峰分配、峰对齐和统计分析。计算管道最终被整合到一个用户友好的网站界面中,名为CIL-ExPMRM (http://www.exposomemrm.com/)。该平台的性能已被验证,在仪器平台上的假阳性率相对较低(10.7%)。CIL-ExPMRM在一定程度上系统地克服了暴露体研究的关键瓶颈,并且由于其独立于MS/MS可用性、准确的RT预测和碰撞能量优化,以及基于超灵敏度和自动化鲁棒强度的量化,在一定程度上优于以往的方法。综上所述,CIL-ExPMRM在基于尿液生物标志物的暴露体研究中具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

CIL-ExPMRM: An Ultrasensitive Chemical Isotope Labeling Assisted Pseudo-MRM Platform to Accelerate Exposomic Suspect Screening

CIL-ExPMRM: An Ultrasensitive Chemical Isotope Labeling Assisted Pseudo-MRM Platform to Accelerate Exposomic Suspect Screening

Exposome is the future of next-generation environmental health to establish the association between environmental exposure and diseases. However, due to low concentrations of exposure chemicals, exposome has been hampered by lacking an effective analytical platform to characterize its composition. In this study, by combining the benefit of chemical isotope labeling and pseudo-multiple reaction monitoring (CIL-pseudo-MRM), we have developed one highly sensitive and high-throughput platform (CIL-ExPMRM) by isotope labeling urinary exposure biomarkers. Dansyl chloride (DnsCl), N-methylphenylethylamine (MPEA), and their isotope-labeled forms were used to derivatize polar hydroxyl and carboxyl compounds, respectively. We have programmed a series of scripts to optimize MRM transition parameters, curate the MRM database (>70,000 compounds), predict accurate retention time (RT), and automize dynamic MRMs. This was followed by an automated MRM peak assignment, peak alignment, and statistical analysis. A computational pipeline was eventually incorporated into a user-friendly website interface, named CIL-ExPMRM (http://www.exposomemrm.com/). The performance of this platform has been validated with a relatively low false positive rate (10.7%) across instrumental platforms. CIL-ExPMRM has systematically overcome key bottlenecks of exposome studies to some extent and outperforms previous methods due to its independence of MS/MS availability, accurate RT prediction, and collision energy optimization, as well as the ultrasensitivity and automated robust intensity-based quantification. Overall, CIL-ExPMRM has great potential to advance the exposomic studies based on urinary biomarkers.

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来源期刊
环境科学与技术
环境科学与技术 环境科学-工程:环境
CiteScore
17.50
自引率
9.60%
发文量
12359
审稿时长
2.8 months
期刊介绍: Environmental Science & Technology (ES&T) is a co-sponsored academic and technical magazine by the Hubei Provincial Environmental Protection Bureau and the Hubei Provincial Academy of Environmental Sciences. Environmental Science & Technology (ES&T) holds the status of Chinese core journals, scientific papers source journals of China, Chinese Science Citation Database source journals, and Chinese Academic Journal Comprehensive Evaluation Database source journals. This publication focuses on the academic field of environmental protection, featuring articles related to environmental protection and technical advancements.
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