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通过非共价复合物形成对最新一代假冒抗疟药物进行反应性解吸电喷雾电离线性离子阱质谱分析。

Reactive desorption electrospray ionization linear ion trap mass spectrometry of latest-generation counterfeit antimalarials via noncovalent complex formation.

作者信息

Nyadong Leonard, Green Michael D, De Jesus Victor R, Newton Paul N, Fernández Facundo M

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.

出版信息

Anal Chem. 2007 Mar 1;79(5):2150-7. doi: 10.1021/ac062205h. Epub 2007 Feb 1.

Abstract

Desorption electrospray ionization mass spectrometry (DESI MS) is rapidly becoming accepted as a powerful surface characterization tool for a wide variety of samples in the open air. Besides its well-established high-throughput capabilities, a unique feature of DESI is that chemical reactions between the charged spray microdroplets and surface molecules can be exploited to enhance ionization. Here, we present a rapid screening assay for artesunate antimalarials based on reactive DESI. Artesunate is a vital therapy for Plasmodium falciparum malaria, but artesunate tablets have been counterfeited on a very large scale in SE Asia, and more recently in Africa. For this reason, faster and more sensitive screening tests are urgently needed. The proposed DESI assay is based on the formation of stable noncovalent complexes between linear alkylamines dissolved in the DESI spray solution and artesunate molecules exposed on the tablet surface. We found that, depending on amine type and concentration, a sensitivity gain of up to 170x can be obtained, in comparison to reagent-less DESI. Hexylamine (Hex), dodecylamine (DDA), and octadecylamine (ODA) produced proton-bound noncovalent complexes with gas-phase stabilities, increasing in the order [M + Hex + H]+ < [M + DDA + H]+ < [M + ODA + H]+. Tandem MS experiments revealed that complex formation occurred by hydrogen bonding between the amine nitrogen and the ether-like moieties within the artesunate lactone ring. After the reactive DESI assay was fully characterized, it was applied to a set of recently collected suspicious artesunate tablets purchased in shops and pharmacies in SE Asia. Not only did we find that these samples were counterfeits, but we also detected the presence of several wrong active ingredients. Of particular concern was the positive detection of artesunate traces in the surface of one of the samples, which we quantified with standard chromatographic techniques.

摘要

解吸电喷雾电离质谱法(DESI MS)正迅速成为一种被广泛认可的、用于在空气中对各种样品进行表面表征的强大工具。除了其已确立的高通量能力外,DESI的一个独特特点是,带电喷雾微滴与表面分子之间的化学反应可被用于增强电离。在此,我们展示了一种基于反应性DESI的青蒿琥酯抗疟药物快速筛选测定法。青蒿琥酯是治疗恶性疟原虫疟疾的重要药物,但在东南亚,最近在非洲,青蒿琥酯片剂被大规模伪造。因此,迫切需要更快、更灵敏的筛选测试。所提出的DESI测定法基于溶解在DESI喷雾溶液中的线性烷基胺与片剂表面暴露的青蒿琥酯分子之间形成稳定的非共价复合物。我们发现,与无试剂DESI相比,根据胺的类型和浓度,灵敏度可提高多达170倍。己胺(Hex)、十二烷基胺(DDA)和十八烷基胺(ODA)产生了具有气相稳定性的质子结合非共价复合物,其稳定性顺序为[M + Hex + H]+ < [M + DDA + H]+ < [M + ODA + H]+。串联质谱实验表明,复合物的形成是通过胺氮与青蒿琥酯内酯环内类似醚的部分之间的氢键作用实现的。在对反应性DESI测定法进行全面表征后,将其应用于最近在东南亚的商店和药店购买的一组可疑青蒿琥酯片剂。我们不仅发现这些样品是伪造品,还检测到了几种错误的活性成分。特别令人担忧的是,在其中一个样品表面检测到了青蒿琥酯痕迹,我们用标准色谱技术对其进行了定量。

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