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揭示气相中离子的行为,以预测同系物甾体化合物的离子迁移率分离。

Uncovering the behaviour of ions in the gas-phase to predict the ion mobility separation of isomeric steroid compounds.

机构信息

Maastricht Multimodal Molecular Imaging (M4i) Institute, Division of Imaging Mass Spectrometry Maastricht University, Universiteitssingel 50, 6229ER, Maastricht, the Netherlands.

Maastricht Multimodal Molecular Imaging (M4i) Institute, Division of Imaging Mass Spectrometry Maastricht University, Universiteitssingel 50, 6229ER, Maastricht, the Netherlands.

出版信息

Anal Chim Acta. 2022 Apr 1;1200:339617. doi: 10.1016/j.aca.2022.339617. Epub 2022 Feb 16.

Abstract

Bile acids are steroid compounds involved in biological mechanisms of neurodegenerative diseases making them potential biomarkers for diagnosis or treatment. These compounds exist as structural and conformational isomers, which hinder distinguishing them in physiological processes. We aimed to develop tandem mass spectrometry-ion mobility spectrometry (MS/MS-IMS) methodologies to explore and understand the behaviour of isomeric steroids in the gas-phase and rapidly separate them. Unlike previously published ion mobility data, various isomers were investigated in mixtures to better mimic complex (pre-) clinical samples. The experimental collision cross sections (CCS)s were compared to the theoretical CCS values for an in-depth analysis of isomeric ions' behaviour in the gas-phase. Based on density-functional theory, we identified the impact of adduct positioning on the 3D conformation of enantiomers, diastereomers and structural isomers. The curling of the large side chains hedged the small differences among the isomers and lowered the CCS values. On the other hand, fragmenting off the identical side branches as well as imposing the bending of the steroid ring resulted in ion mobility differentiation. Careful data evaluation revealed the tendency of isomers to form homo-cluster in the mixture solutions and assist the separation. Our fundamental and experimental findings enable the ion mobility separation of isomeric steroids to be predicted. The introduced rapid and optimal MS/MS-IMS analytical methodology can be applied to distinguish isomeric bile acids both in a solution and potentially in patients' tissue samples, and consequently, reveal their molecular pathways.

摘要

胆汁酸是参与神经退行性疾病生物机制的甾体化合物,使它们成为潜在的诊断或治疗生物标志物。这些化合物存在结构和构象异构体,这使得它们在生理过程中难以区分。我们旨在开发串联质谱-离子淌度谱(MS/MS-IMS)方法来探索和了解气相中异构体类固醇的行为,并快速分离它们。与以前发表的离子淌度数据不同,我们在混合物中研究了各种异构体,以更好地模拟复杂的(前)临床样本。实验碰撞截面(CCS)与理论 CCS 值进行了比较,以深入分析气相中异构体离子的行为。基于密度泛函理论,我们确定了加合物定位对立体异构体、非对映异构体和结构异构体 3D 构象的影响。大侧链的卷曲掩盖了异构体之间的微小差异,并降低了 CCS 值。另一方面,使相同的侧支断裂以及使甾体环弯曲导致离子淌度的差异。仔细的数据评估揭示了异构体在混合物溶液中形成同型簇的趋势,并有助于分离。我们的基础和实验结果使我们能够预测异构体类固醇的离子淌度分离。所引入的快速和最佳的 MS/MS-IMS 分析方法可用于区分溶液中的异构体胆汁酸,并且可能在患者的组织样本中,从而揭示它们的分子途径。

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