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使用离子淌度-质谱联用技术(IM-MS)对衍生化甾体激素异构体进行改进分析。

Improved analysis of derivatized steroid hormone isomers using ion mobility-mass spectrometry (IM-MS).

作者信息

Neal Shon P, Hodges Walker N, Velosa Diana C, Aderorho Ralph, Lucas Shadrack Wilson, Chouinard Christopher D

机构信息

Chemistry Program, Department of Biomedical and Chemical Engineering and Sciences, Florida Institute of Technology, Melbourne, FL, 32901, USA.

Department of Chemistry, Clemson University, 211 S. Palmetto Blvd, Clemson, SC, 29634, USA.

出版信息

Anal Bioanal Chem. 2023 Nov;415(27):6757-6769. doi: 10.1007/s00216-023-04953-8. Epub 2023 Sep 23.

Abstract

Over the last decade, applications of ion mobility-mass spectrometry (IM-MS) have exploded due primarily to the widespread commercialization of robust instrumentation from several vendors. Unfortunately, the modest resolving power of many of these platforms (~40-60) has precluded routine separation of constitutional and stereochemical isomers. While instrumentation advances have pushed resolving power to >150 in some cases, chemical approaches offer an alternative for increasing resolution with existing IM-MS instrumentation. Herein we explore the utility of two reactions, derivatization by Girard's reagents and 1,1-carbonyldiimidazole (CDI), for improving IM separation of steroid hormone isomers. These reactions are fast (≤30 min), simple (requiring only basic lab equipment/expertise), and low-cost. Notably, these reactions are structurally selective in that they target carbonyl and hydroxyl groups, respectively, which are found in all naturally occurring steroids. Many steroid hormone isomers differ only in the number, location, and/or stereochemistry of these functional groups, allowing these reactions to "amplify" subtle structural differences and improve IM resolution. Our results show that resolution was significantly improved amongst CDI-derivatized isomer groups of hydroxyprogesterone (two-peak resolution of R = 1.10 between 21-OHP and 11B-OHP), deoxycortisone (R = 1.47 between 11-DHC and 21-DOC), and desoximetasone (R = 1.98 between desoximetasone and fluocortolone). Moreover, characteristic collision cross section (CCS) measurements can be used to increase confidence in the identification of these compounds in complex biological mixtures. To demonstrate the feasibility of analyzing the derivatized steroids in complex biological matrixes, the reactions were performed following steroid extraction from urine and yielded similar results. Additionally, we applied a software-based approach (high-resolution demultiplexing) that further improved the resolving power (>150). Overall, our results suggest that targeted derivatization reactions coupled with IM-MS can significantly improve the resolution of challenging isomer groups, allowing for more accurate and efficient analysis of complex mixtures.

摘要

在过去十年中,离子淌度质谱(IM-MS)的应用呈爆发式增长,这主要得益于多家供应商的强大仪器实现了广泛商业化。不幸的是,许多此类平台的分辨能力适中(约40-60),这使得结构异构体和立体化学异构体无法常规分离。虽然仪器技术的进步在某些情况下已将分辨能力提高到>150,但化学方法为利用现有IM-MS仪器提高分辨率提供了一种替代方案。在此,我们探讨了两种反应,即吉拉德试剂衍生化反应和1,1-羰基二咪唑(CDI)反应,用于改善甾体激素异构体的IM分离。这些反应速度快(≤30分钟)、操作简单(仅需基本实验室设备/专业知识)且成本低。值得注意的是,这些反应具有结构选择性,因为它们分别针对羰基和羟基,而这些基团存在于所有天然甾体中。许多甾体激素异构体仅在这些官能团的数量、位置和/或立体化学上有所不同,这使得这些反应能够“放大”细微的结构差异并提高IM分辨率。我们的结果表明,在羟基孕酮的CDI衍生化异构体组(21-OHP和11B-OHP之间的双峰分辨率R = 1.10)、脱氧皮质酮(11-DHC和21-DOC之间的R = 1.47)以及地索奈德(地索奈德和氟轻松之间的R = 1.98)中,分辨率得到了显著提高。此外,特征性碰撞截面(CCS)测量可用于增强在复杂生物混合物中鉴定这些化合物的可信度。为了证明在复杂生物基质中分析衍生化甾体的可行性,在从尿液中提取甾体后进行了这些反应,并得到了类似的结果。此外,我们应用了一种基于软件的方法(高分辨率解复用),进一步提高了分辨能力(>150)。总体而言,我们的结果表明,靶向衍生化反应与IM-MS相结合可以显著提高具有挑战性的异构体组的分辨率,从而实现对复杂混合物更准确、高效的分析。

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