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用于红外离子光谱的强大平台的开发:增强代谢物结构解析分析工具包的新成员。

Development of a Robust Platform for Infrared Ion Spectroscopy: A New Addition to the Analytical Toolkit for Enhanced Metabolite Structure Elucidation.

作者信息

van Wieringen Teun, Lubin Arnaud, van Outersterp Rianne, Martens Jonathan, van Beelen Eric, Oomens Jos, Cuyckens Filip, Berden Giel

机构信息

Radboud University, Institute for Molecules and Materials, FELIX Laboratory, Toernooiveld 7, Nijmegen 6525 ED, The Netherlands.

Drug Metabolism & Pharmacokinetics, Johnson & Johnson, Turnhoutseweg 30, Beerse B-2340, Belgium.

出版信息

Anal Chem. 2025 Aug 12;97(31):17216-17223. doi: 10.1021/acs.analchem.5c03593. Epub 2025 Jul 31.

Abstract

Metabolite identification is essential in drug metabolism and pharmacokinetics (DMPK) studies and plays a pivotal role throughout the drug development process, from informing drug design to evaluating safety and efficacy. Mass spectrometry (MS) is the analytical technique of choice for characterizing metabolites due to its selectivity and sensitivity, particularly when paired with chromatographic methods. However, MS encounters challenges in structural characterization. This study employs infrared ion spectroscopy (IRIS) to differentiate isomeric compounds and demonstrates the robustness of a newly developed IRIS platform. We showcase applications in metabolite identification by determining the site of glucuronidation and phase I oxidation in selected drug molecules. Employing density functional theory for spectral prediction, IRIS decreases reliance on reference standards and alleviates the time-consuming purification processes typically associated with metabolite analysis. The newly developed platform integrates a high-power, high-repetition-rate infrared laser and ion trap MS. This setup is very robust, as evidenced by the highly reproducible IRIS spectra recorded over a one-year period without any instrument readjustment or recalibration. Moreover, the high power and high repetition rate of the laser provide a large dynamic range that is necessary to resolve all spectral features. These results leverage IRIS toward a transformative tool in analytical chemistry, with potential applications expanding across various fields, such as impurity analysis and forensics. The introduction of a compact IRIS setup in an industrial setting not only confirms its practical applicability but also emphasizes its potential for integration into routine analytical workflows.

摘要

代谢物鉴定在药物代谢和药代动力学(DMPK)研究中至关重要,并且在整个药物开发过程中都发挥着关键作用,从为药物设计提供信息到评估安全性和有效性。由于质谱(MS)具有选择性和灵敏度,特别是与色谱方法结合使用时,它是表征代谢物的首选分析技术。然而,MS在结构表征方面面临挑战。本研究采用红外离子光谱(IRIS)来区分同分异构体化合物,并展示了新开发的IRIS平台的稳健性。我们通过确定选定药物分子中的葡萄糖醛酸化位点和I相氧化位点,展示了IRIS在代谢物鉴定中的应用。利用密度泛函理论进行光谱预测,IRIS减少了对参考标准的依赖,并减轻了通常与代谢物分析相关的耗时的纯化过程。新开发的平台集成了高功率、高重复率的红外激光和离子阱质谱。这种设置非常稳健,在一年时间内记录的高度可重复的IRIS光谱证明了这一点,无需任何仪器重新调整或重新校准。此外,激光的高功率和高重复率提供了一个大的动态范围,这是解析所有光谱特征所必需的。这些结果使IRIS成为分析化学中的一种变革性工具,其潜在应用扩展到各个领域,如杂质分析和法医学。在工业环境中引入紧凑的IRIS设置不仅证实了其实际适用性,还强调了其集成到常规分析工作流程中的潜力。

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