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Evaluation of Nicotine and the Components of e-Liquids Generated from e-Cigarette Aerosols

机译:电子烟气雾中尼古丁和电子液体成分的评估

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摘要

Electronic cigarettes (e-cigs) deliver nicotine in an aerosol to the user that simulates the smoke of traditional cigarettes purportedly without the pathology of inhaling tobacco smoke due to the absence of combustion. Advanced versions of e-cigs enable the user to potentially moderate the concentration of drug in the aerosol by selecting from a range of voltages on the power supply. A method was developed to trap the aerosol produced by a KangerTech AeroTank, 1.8 Ω preassembled atomizer in order to analyze the concentration of nicotine and to evaluate the constituents of the aerosol at various voltages on the power supply. A 12-mg/mL formulation of nicotine in 50:50 propylene glycol (PG):vegetable glycerin (VG) was used to produce aerosol at 3.9, 4.3 and 4.7 V. The aerosol was trapped in a simple glass assemblage and analyzed by a 3200 Q Trap HPLC–MS-MS. The dose of nicotine delivered in the aerosol at 3.9, 4.3 and 4.7 V was determined to be 88 ± 12 μg, 91 ± 15 μg and 125 ± 22 μg. The average recovery of nicotine in the trap across the voltages was 99.8%. The glass trap system was an effective device for collecting the aerosol for analysis and an increase in drug yield was observed with increasing voltage from the power supply on the e-cig. The glass trap system was also used in combination with a 100-μm solid-phase microextraction fiber to capture the aerosol and analyze it via DART–MS and GC–MS. Four commercial e-liquids labeled to contain nicotine were aerosolized at 4.3 V. The pharmacologically active ingredient, nicotine, as well as PG, VG and a number of flavoring agents found in these formulations were identified.
机译:电子香烟(e-cigs)以气雾的形式向用户输送尼古丁,据称模拟了传统香烟的烟气,由于没有燃烧,因此没有吸入烟草烟气的病态。电子烟的高级版本使用户可以通过从电源上的一系列电压中进行选择来潜在地调节药物在气雾剂中的浓度。开发了一种方法来捕获由KangerTech AeroTank 1.8Ω预组装雾化器产生的气雾剂,以便分析尼古丁的浓度并评估电源上各种电压下的气雾剂成分。尼古丁在50:50丙二醇(PG):植物甘油(VG)中的12 mg / mL制剂用于生产3.9、4.3和4.7 V的气雾剂。将该气雾剂捕获在简单的玻璃组件中并通过3200 Q阱HPLC-MS-MS。分别以3.9、4.3和4.7 V的气雾剂形式输送的尼古丁剂量确定为88±12μg,91±15μg和125±22μg。跨越电压,捕集阱中尼古丁的平均回收率为99.8%。玻璃阱系统是用于收集气溶胶进行分析的有效设备,并且随着来自e-cig上电源电压的增加,观察到药物产量的增加。玻璃阱系统也与100μm固相微萃取纤维结合使用,以捕获气溶胶并通过DART-MS和GC-MS对其进行分析。在4.3 V下对四种标记为包含尼古丁的市售电子液体进行雾化。鉴定了这些制剂中发现的药理活性成分尼古丁以及PG,VG和许多调味剂。

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