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使用液相色谱-淌度分辨-飞行时间质谱法在血浆中发现和靶向监测多氯联苯代谢物

Discovery and targeted monitoring of polychlorinated biphenyl metabolites in blood plasma using LC-TIMS-TOF MS.

作者信息

Adams Kendra J, Smith Natalie F, Ramirez Cesar E, Fernandez-Lima Francisco

机构信息

Department of Chemistry and Biochemistry, Florida International University, Miami, FL 33199, United States.

Biomolecular Sciences Institute, Florida International University, Miami, FL 33199, United States.

出版信息

Int J Mass Spectrom. 2018 Apr;427:133-140. doi: 10.1016/j.ijms.2017.11.009. Epub 2017 Nov 21.

Abstract

In the present work, the potential for rapid, targeted analysis of hydroxylated metabolites of polychlorinated biphenyls (OH-PCBs) in diluted human blood plasma using liquid chromatography coupled with trapped ion mobility spectrometry and TOF high resolution mass spectrometry (LC-TIMS-TOF MS) was evaluated. Experimental OH-PCB collisional cross section (CCS) and gas-phase candidate structures (<3% error) are reported for the first time and used, in addition to the LC retention time and accurate /, as OH-PCB identification features in order to increase the detection selectivity. The proposed LC-TIMS-TOF MS workflow combines a "dilute-and-shoot" sample preparation strategy, a robust liquid chromatography step, a high-resolving power mobility separation (R ~ 150-250) and high-resolution mass spectrometry (R ~ 30-40k) for the separation, identification and quantification of common OH-PCB isomers with limits of detection comparable to traditional workflows (e.g., LOD and LOQ of ~10 pg/mL and ~50 pg/mL, respectively). The higher selectivity and low detection limits provides multiple advantages compared to current methodologies that typically require long, labor-intensive preparation and/or derivatization steps prior to gas or liquid chromatography-mass spectrometry.

摘要

在本研究中,评估了使用液相色谱与阱式离子淌度质谱联用和飞行时间高分辨率质谱(LC-TIMS-TOF MS)对稀释人血浆中多氯联苯羟基化代谢物(OH-PCBs)进行快速、靶向分析的潜力。首次报道了实验性OH-PCB的碰撞截面(CCS)和气相候选结构(误差<3%),并将其与LC保留时间和精确质量一起用作OH-PCB的鉴定特征,以提高检测选择性。所提出的LC-TIMS-TOF MS工作流程结合了“稀释进样”样品制备策略、稳健的液相色谱步骤、高分辨能力的淌度分离(R150-250)和高分辨率质谱(R30-40k),用于分离、鉴定和定量常见的OH-PCB异构体,其检测限与传统工作流程相当(例如,LOD和LOQ分别约为10 pg/mL和50 pg/mL)。与目前通常需要在气相或液相色谱-质谱分析之前进行冗长、劳动密集型样品制备和/或衍生化步骤的方法相比,更高的选择性和低检测限具有多个优势。

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