Kavvalakis Matthaios P, Stivaktakis Polychronis D, Tzatzarakis Manolis N, Kouretas Dimitrios, Liesivuori Jyrki, Alegakis Athanasios K, Vynias Dionysios, Tsatsakis Aristidis M
Center of Toxicology Science & Research, Division of Morphology, Medical School, University of Crete, Voutes Campus, Heraklion 71003, Crete, Greece.
Department of Biochemistry and Biotechnology, University of Thessaly, Larissa 41221, Greece.
J Anal Toxicol. 2015 May;39(4):262-9. doi: 10.1093/jat/bkv002. Epub 2015 Feb 13.
The electronic cigarette (e-cig) is an invention of the past few years and its popularity is rapidly growing all over the world. A rapid multicomponent analytical protocol for the analysis of the replacement liquids (e-liquids) of e-cig was developed using gas (GC) and liquid chromatography (LC)-mass spectrometry (MS). GC-MS-based methods were developed for the determination of the main humectants and polycyclic aromatic hydrocarbons (PAHs). For the determination and quantification of nicotine (NIC) and nitrosamines, appropriate LC-MS-based methods were developed. The approbated methods were applied for the analysis of 263 e-liquid samples obtained from the Greek market. The instruments response was linear; the limits of quantification ranged from 0.003 μg/mL for three PAHs to 1.187 μg/mL for glycerol. The precision was <16% for all analytes, while the mean accuracy ranged from 99.1% for NIC to 106.6% for the flavor 2,5-dimethylpyrazine. The measured concentrations of NIC were correlated with the theoretical concentrations as reported by the manufacturers. An analog relation between the concentration of the glycerol and of propylene glycol was noticed. The frequency of detection of flavors ranged from 30.4% for the methyl cyclopentenolone to 5.3% for 3.4-dimethoxybenzaldehyde. Nitrosamines and PAHs were not detected in any sample. Because a similar analytical protocol was not available from the existing literature so far, our study offers the advantage of complete analytical methods for rapid and simultaneous multicomponent identification.
电子烟是过去几年的一项发明,其在全球的受欢迎程度正在迅速增长。利用气相色谱(GC)和液相色谱(LC)-质谱(MS)技术,开发了一种用于分析电子烟替代液体(电子烟液)的快速多组分分析方法。基于GC-MS的方法用于测定主要保湿剂和多环芳烃(PAH)。为了测定和定量尼古丁(NIC)和亚硝胺,开发了合适的基于LC-MS的方法。将认可的方法应用于分析从希腊市场获得的263个电子烟液样品。仪器响应呈线性;定量限范围从三种多环芳烃的0.003μg/mL到甘油的1.187μg/mL。所有分析物的精密度均<16%,而平均准确度范围从尼古丁的99.1%到风味剂2,5-二甲基吡嗪的106.6%。所测得的尼古丁浓度与制造商报告的理论浓度相关。注意到甘油和丙二醇浓度之间存在类似关系。风味剂的检测频率范围从甲基环戊烯醇酮的30.4%到3,4-二甲氧基苯甲醛的5.3%。在任何样品中均未检测到亚硝胺和多环芳烃。由于目前现有文献中没有类似的分析方法,我们的研究提供了完整的分析方法,可用于快速同时进行多组分鉴定。