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可再填充电子烟烟雾的在线化学成分分析——尼古丁和烟碱的测量

On-Line Chemical Composition Analysis of Refillable Electronic Cigarette Aerosol-Measurement of Nicotine and Nicotyrine.

作者信息

Martinez Raul E, Dhawan Steven, Sumner Walton, Williams Brent J

机构信息

School of Engineering and Applied Science, Washington University in St. Louis, St. Louis, MO;

School of Medicine, Washington University in St. Louis, St. Louis, MO.

出版信息

Nicotine Tob Res. 2015 Oct;17(10):1263-9. doi: 10.1093/ntr/ntu334. Epub 2014 Dec 26.

Abstract

INTRODUCTION

Electronic cigarettes (e-cigs) generate aerosols that users inhale. Analyses of e-liquids inconsistently report nicotyrine, a nicotine analog that could impede nicotine metabolism, raising questions about nicotyrine formation.

METHODS

E-cig aerosols were analyzed on-line using a Thermal Desorption Aerosol Gas Chromatograph. Three e-liquids were tested: an unflavored solution in propylene glycol (PG); an unflavored solution in PG and vegetable glycerin (VG), and a flavored solution in PG and VG. A heating duration experiment determined the nicotyrine to nicotine ratio (NNR) in particle phase as a function of the duration of e-cig activation. An aging experiment determined the NNR in e-liquids and aerosols as a function of time since initial exposure to air and storage condition.

RESULTS

Nicotine and nicotyrine were quantified in all 3 e-liquids and aerosols. Duration of e-cig activation was inversely related to NNR (NNR = 0.04 with 3-s activation, 0.26 with 0.5 s). Aging influenced both e-liquid NNR and aerosol NNR. On average, the e-liquid NNR increased from 0.03 at 11 days after opening to 0.08 after 60 days. For similar heating durations, aerosol NNR increased from 0.05 at 11 days to 0.23 after 60 days. Storage conditions had little effect on NNR.

CONCLUSIONS

E-cig aerosols have variable nicotyrine quantities. Aerosol NNR depends on vaping technique and time elapsed since the e-liquid was exposed to air. It is hypothesized that aerosolized nicotyrine could facilitate nicotine absorption, inhibit the metabolism of nicotine, and reduce a user's urge to smoke.

摘要

引言

电子烟会产生供使用者吸入的气溶胶。对电子烟烟液的分析结果显示,对于烟碱(一种可能阻碍尼古丁代谢的尼古丁类似物)的报告并不一致,这引发了关于烟碱形成的疑问。

方法

使用热脱附气溶胶气相色谱仪对电子烟气溶胶进行在线分析。测试了三种电子烟烟液:丙二醇(PG)中的无味溶液;PG和植物甘油(VG)中的无味溶液;以及PG和VG中的调味溶液。一项加热持续时间实验确定了颗粒相中烟碱与尼古丁的比例(NNR)随电子烟激活持续时间的变化情况。一项老化实验确定了电子烟烟液和气溶胶中的NNR随自初次暴露于空气后的时间以及储存条件的变化情况。

结果

在所有三种电子烟烟液和气溶胶中均对尼古丁和烟碱进行了定量分析。电子烟激活的持续时间与NNR呈负相关(激活3秒时NNR = 0.04,激活0.5秒时NNR = 0.26)。老化对电子烟烟液的NNR和气溶胶的NNR均有影响。平均而言,电子烟烟液的NNR从开封后11天的0.03增加到60天后的0.08。对于相似的加热持续时间,气溶胶的NNR从11天的0.05增加到60天后的0.23。储存条件对NNR影响不大。

结论

电子烟气溶胶中的烟碱含量各不相同。气溶胶的NNR取决于 vaping 技术以及电子烟烟液暴露于空气后经过的时间。据推测,雾化的烟碱可能会促进尼古丁的吸收、抑制尼古丁的代谢,并减少使用者的吸烟欲望。

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