European Commission, Directorate General Joint Research Centre, Institute for Reference Materials and Measurements , Retieseweg 111, B-2440 Geel, Belgium.
Anal Chem. 2016 Jun 21;88(12):6500-8. doi: 10.1021/acs.analchem.6b01241. Epub 2016 May 27.
Fast market penetration of electronic cigarettes is leading to an exponentially growing number of electronic refill liquids with different nicotine contents and an endless list of flavors. Therefore, rapid and simple methods allowing a fast screening of these products are necessary to detect harmful substances which can negatively impact the health of consumers. In this regard, the present work explores the capabilities of differential ion mobility spectrometry coupled to tandem mass spectrometry for high-throughput analysis of nicotine and 11 related compounds in commercial refill liquids for electronic cigarettes. The influence of main factors affecting the ion mobility separation, such as modifier types and concentration, separation voltage, and temperature, was systematically investigated. Despite small molecular weight differences among the studied compounds, a good separation was achieved in the ion mobility cell under the optimized conditions, which involved the use of ethanol as a polar gas-phase chemical modifier. Indeed, differential ion mobility was able to resolve (resolution >4) nicotine from its structural isomer anabasine without the use of any chromatographic separation. The quantitative performance of the proposed method was then evaluated, showing satisfactory precision (RSD ≤ 16%) and recoveries ranging from 85 to 100% for nicotine, and from 84 to 126% for the rest of the target analytes. Several commercial electronic cigarette refill liquids were analyzed to demonstrate the applicability of the method. In some cases, significant differences were found between labeled and measured levels of nicotine. Anatabine, cotinine, myosmine, and nornicotine were also found in some of the analyzed samples.
电子烟的快速市场渗透导致不同尼古丁含量和无尽口味的电子烟补充液数量呈指数级增长。因此,需要快速且简单的方法来快速筛选这些产品,以检测可能对消费者健康造成负面影响的有害物质。在这方面,本工作探讨了差分离子淌度谱法与串联质谱联用在电子烟商业补充液中尼古丁和 11 种相关化合物高通量分析中的应用。系统研究了影响离子淌度分离的主要因素,如修饰剂类型和浓度、分离电压和温度等。尽管研究化合物的分子量差异较小,但在优化条件下,即在离子淌度池中使用乙醇作为极性气相化学修饰剂,实现了良好的分离。实际上,差分离子淌度无需任何色谱分离即可将尼古丁与其结构异构体假木贼碱(anabasine)分辨开(分辨率>4)。然后评估了所提出方法的定量性能,结果表明尼古丁的精密度良好(RSD≤16%),回收率在 85%至 100%之间,其余目标分析物的回收率在 84%至 126%之间。分析了几种商业电子烟补充液以证明该方法的适用性。在某些情况下,尼古丁的标签含量和测量含量之间存在显著差异。在一些分析样品中还发现了假木贼碱、可替宁、肌氨酸和降烟碱。