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使用高分辨率质谱法对伊维菌素电化学反应和光化学反应生成的转化产物进行结构注释。

Structural annotation of electro- and photochemically generated transformation products of moxidectin using high-resolution mass spectrometry.

机构信息

Department of Analytical Chemistry and Reference Materials, Bundesanstalt für Materialforschung und -prüfung (BAM), Richard-Willstätter-Straße 11, 12489, Berlin, Germany.

School of Chemical and Pharmaceutical Sciences, Technological University Dublin (TU Dublin), Kevin Street, Dublin 8, Ireland.

出版信息

Anal Bioanal Chem. 2020 May;412(13):3141-3152. doi: 10.1007/s00216-020-02572-1. Epub 2020 Mar 14.

Abstract

Moxidectin (MOX) is a widely used anthelmintic drug for the treatment of internal and external parasites in food-producing and companion animals. Transformation products (TPs) of MOX, formed through metabolic degradation or acid hydrolysis, may pose a potential environmental risk, but only few were identified so far. In this study, we therefore systematically characterized electro- and photochemically generated MOX TPs using high-resolution mass spectrometry (HRMS). Oxidative electrochemical (EC) TPs were generated in an electrochemical reactor and photochemical (PC) TPs by irradiation with UV-C light. Subsequent HRMS measurements were performed to identify accurate masses and deduce occurring modification reactions of derived TPs in a suspected target analysis. In total, 26 EC TPs and 59 PC TPs were found. The main modification reactions were hydroxylation, (de-)hydration, and derivative formation with methanol for EC experiments and isomeric changes, (de-)hydration, and changes at the methoxime moiety for PC experiments. In addition, several combinations of different modification reactions were identified. For 17 TPs, we could predict chemical structures through interpretation of acquired MS/MS data. Most modifications could be linked to two specific regions of MOX. Some previously described metabolic reactions like hydroxylation or O-demethylation were confirmed in our EC and PC experiments as reaction type, but the corresponding TPs were not identical to known metabolites or degradation products. The obtained knowledge regarding novel TPs and reactions will aid to elucidate the degradation pathway of MOX which is currently unknown. Graphical abstract.

摘要

莫昔克丁(MOX)是一种广泛用于治疗食用动物和伴侣动物内外寄生虫的驱虫药。MOX 的转化产物(TPs)通过代谢降解或酸水解形成,可能构成潜在的环境风险,但迄今为止仅鉴定出少数几种。在这项研究中,我们使用高分辨率质谱(HRMS)系统地对电和光化学产生的 MOX TPs 进行了表征。在电化学反应器中生成氧化电化学(EC)TPs,通过 UV-C 光照射生成光化学(PC)TPs。随后进行 HRMS 测量,以确定准确质量并推断出可疑目标分析中衍生 TP 的发生修饰反应。总共发现了 26 个 EC TP 和 59 个 PC TP。主要的修饰反应是 EC 实验中的羟化、(去)脱水和与甲醇的衍生化,以及 PC 实验中的同分异构变化、(去)脱水和甲肟部分的变化。此外,还鉴定了几种不同修饰反应的组合。对于 17 个 TP,我们可以通过解释获得的 MS/MS 数据来预测化学结构。大多数修饰可以与 MOX 的两个特定区域相关联。一些先前描述的代谢反应,如羟化或 O-去甲基化,在我们的 EC 和 PC 实验中被确认为反应类型,但相应的 TP 与已知的代谢物或降解产物并不完全相同。获得的关于新型 TP 和反应的知识将有助于阐明目前未知的 MOX 降解途径。

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