首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Development of a method for the quantitative metabolite profiling of pharmaceutical drugs using HPLC-ICP-MS following pre-column derivatization of their amino and hydroxyl groups using 4-aminopyridine as a model compound
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Development of a method for the quantitative metabolite profiling of pharmaceutical drugs using HPLC-ICP-MS following pre-column derivatization of their amino and hydroxyl groups using 4-aminopyridine as a model compound

机译:使用4-氨基吡啶作为模型化合物,使用HPLC-ICP-MS使用HPLC-ICP-MS进行药物药物定量析出谱分析的方法

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摘要

Chemical derivatization allows the introduction of an " ICP-MS accessible" element into pharmaceuticals and their metabolites, thus extending the application range of HPLC-ICP-MS in pharmaceutical applications. In this study, such a pre-column derivatization approach was developed with the aim of using HPLC-ICP-MS for the quantitative metabolite profiling of pharmaceutical drugs in human plasma samples. We targeted the amino and hydroxyl groups, two of the most abundant functional groups present in drugs, and used 4-aminopyridine and 3-hydroxy-4-aminopyridine as model compounds. 4Iodobenzoyl chloride was used as a commercially available and multi-functional derivatization reagent to introduce iodine (I) as an element that can be quantified using ICP-MS with high sensitivity. This reagent reacts readily with the amino group present in 4-aminopyridine and the amino and hydroxyl groups present in its metabolite 3-hydroxy-4-aminopyridine. The reaction conditions were systematically optimized to guarantee quantitative formation of the target derivatives. Baseline separation of the target derivatives from one another and from also derivatized endogenous compounds was achieved using reversed phase UHPLC and gradient elution. Accuracy (recovery between 95 and 107%) and precision (repeatability # 6.9% RSD) were fit-for-purpose for both 4-aminopyridine and 3-hydroxy-4aminopyridine. The limit of quantification (LOQ) is 10 mu g L-1 for I, corresponding to 7.5 mu g L-1 of 4-aminopyridine and 5.8 mu g L-1 of 3-hydroxy-4-aminopyridine, respectively.
机译:化学衍生化允许将“ICP-MS可访问”元素引入药物和代谢物中,从而在药物应用中延长了HPLC-ICP-MS的应用范围。在该研究中,这种预柱衍生化方法是通过使用HPLC-ICP-MS用于人血浆样品中药物的定量代谢物分析的目的。我们靶向氨基和羟基,药物中存在的两种最丰富的官能团,并使用4-氨基吡啶和3-羟基-4-氨基吡啶作为模型化合物。将4-碘苯甲酰氯作为市售和多功能衍生化试剂,以将碘(I)引入可以使用具有高灵敏度的ICP-MS量化的元素。该试剂随着4-氨基吡啶中存在的氨基和存在于其代谢物3-羟基-4-氨基吡啶中的氨基和羟基的氨基反应。系统地优化反应条件,以保证靶衍生物的定量形成。使用反相UHPLC和梯度洗脱,实现了靶衍生物的基线分离彼此和衍生的内源化合物。精度(95到107%之间的恢复)和精度(可重复性#6.9%RSD)适用于4-氨基吡啶和3-羟基-4氨基吡啶的适合用途。定量限(LOQ)的限度为10μg,对于I,对应于4-氨基吡啶的7.5μgL-1和3-羟基-4-氨基吡啶的5.8μg1-1。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2019年第4期|708-715|共8页
  • 作者单位

    Univ Ghent Dept Chem Atom & Mass Spectrometry A&MS Res Unit Campus Sterre Krijgslaan 281-S12 B-9000 Ghent Belgium;

    Janssen R&D Drug Metab & Pharmacokinet Turnhoutseweg 30 B-2340 Beerse Belgium;

    Univ Ghent Dept Organ & Macromol Chem Separat Sci Grp Campus Sterre Krijgslaan 281-S4 Bis B-9000 Ghent Belgium;

    Univ Ghent Dept Chem Atom & Mass Spectrometry A&MS Res Unit Campus Sterre Krijgslaan 281-S12 B-9000 Ghent Belgium;

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