Simultaneous quantification of atropine and scopolamine in infusions of herbal tea and Solanaceae plant material by matrix‐assisted laser desorption/ionization time‐of‐flight (tandem) mass spectrometry

化学 东莨菪碱 色谱法 质谱法 串联质谱法 阿托品 串联 基质(化学分析) 药理学 麻醉 医学 复合材料 材料科学
作者
Harald John,Michael Rychlik,Horst Thiermann,Christian Schmidt
出处
期刊:Rapid Communications in Mass Spectrometry [Wiley]
卷期号:32 (22): 1911-1921 被引量:18
标识
DOI:10.1002/rcm.8264
摘要

Atropine (Atr) and scopolamine (Scp) are toxic secondary plant metabolites of species within the Solanaceae genus that can accidentally or intentionally reach the food store chain by inaccurate harvesting of any plant material, e.g. for herbal tea infusions. Ingestion may cause severe anticholinergic poisoning thus requiring risk-oriented determination in food and beverages. The suitability of matrix-assisted laser desorption/ionization time-of-flight (tandem) mass spectrometry, MALDI-TOF MS(/MS), should be characterized for simultaneous analysis.We herein present the first MALDI-TOF MS(/MS) procedure for quantitative determination of both alkaloids in herbal tea infusions and Solanaceae plant material. A standard additions procedure using triply deuterated Atr as internal standard was developed and validated.Tropane alkaloids were detected without interferences and the standard additions procedure allowed reliable quantification. Intraday and interday precision were less than 17% and corresponding accuracies were between 77% and 112%. Limits of detection in the spotting solution were found at 5 ng/mL (Atr) and 0.5 ng/mL (Scp). The assay was applied to diverse tea infusions as well as to berries and leaves of deadly nightshade and angel's trumpet.The usefulness of MALDI-TOF MS(/MS) for investigations of plant-derived samples to prove contaminations by small basic compounds was demonstrated. The elaborate procedure is reliable but quite laborious to obtain quantitative results, but MALDI-TOF MS(/MS) was also shown to be a valuable tool for rapid qualitative screening for Atr and Scp in plant extracts.
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