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The Effect of Electronic Cigarette User Modifications and E-liquid Adulteration on the Particle Size Profile of an Aerosolized Product

机译:电子烟的用户修改和E-液体掺杂对雾化产品的粒度曲线的影响

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Electronic cigarettes (e-cigarettes) are an alternate nicotine delivery system that generate a condensation aerosol to be inhaled by the user. The size of the droplets formed in the aerosol can vary and contributes to drug deposition and ultimate bioavailability in the lung. The growing popularity of e-cigarette products has caused an increase in internet sources promoting the use of drugs other than nicotine (DOTNs) in e-cigarettes. The purpose of this study was to determine the effect of various e-cigarette and e-liquid modifications, such as coil resistance, battery voltage, and glycol and drug formulation, on the aerosol particle size. E-liquids containing 12?mg/mL nicotine prepared in glycol compositions of 100% propylene glycol (PG), 100% vegetable glycerin (VG), or 50:50 PG:VG were aerosolized at three voltages and three coil resistances. Methamphetamine and methadone e-liquids were prepared at 60?mg/mL in 50:50 PG:VG and all e-liquids were aerosolized onto a 10 stage Micro-Orifice Uniform Deposit Impactor. Glycol deposition correlated with drug deposition, and the majority of particles centered between 0.172-0.5 μm in diameter, representing pulmonary deposition. The 100% PG e-liquid produced the largest aerosol particles and the 100% VG and 50:50 PG:VG e-liquids produced ultra-fine particles 0.3 μm. The presence of ultrafine particles indicates that drugs can be aerosolized and reach the pulmonary alveolar regions, highlighting a potential for abuse and risk of overdose with DOTNs aerosolized in an e-cigarette system.
机译:电子卷烟(电子香烟)是另一种尼古丁递送系统,可由使用者吸入冷凝气溶胶。在气溶胶中形成的液滴的尺寸可以变化并且有助于肺中的药物沉积和最终的生物利用度。 E-卷烟产品的日益普及导致互联网来源增加,促进在电子烟中使用除尼古丁(Dotns)以外的药物。本研究的目的是确定各种电子卷烟和电子液体修改的效果,例如螺旋电阻,电池电压和二醇和药物制剂,在气溶胶粒度上。含有12μm丙二醇组合物的12〜Mg / ml尼古丁100%丙二醇(PG),100%蔬菜甘油(Vg),或50:50pg:Vg在三个电压和三个卷材电阻下雾化。在50:50 pg中,在60μmg/ ml下制备甲基苯丙胺和美沙酮E-液体:Vg,所有E-液体都将雾化到10阶段微孔均匀沉积物冲击器上。乙二醇沉积与药物沉积相关,大部分颗粒的直径为0.172-0.5μm,表示肺部沉积。 100%PG E-液体产生最大的气溶胶颗粒和100%Vg和50:50 pg:Vg E-液体产生超细颗粒<0.3μm。超细颗粒的存在表明,药物可以雾化并到达肺部肺泡区域,突出滥用和用在电子卷烟系统中雾化的Dotns过量的潜力。

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