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A randomised, crossover study on an electronic vapour product, a nicotine inhalator and a conventional cigarette. Part A: Pharmacokinetics

机译:电子蒸汽产品,尼古丁吸入器和传统卷烟的随机交叉研究。 A部分:药代动力学

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The pharmacokinetic (PK) profile of nicotine delivered by an Electronic Vapour Product (EVP) was characterised in a 2-part study in smokers. The study was designed as a randomised, controlled, four-way crossover trial. Part 1 compared an unflavoured e-liquid (UF2.0%) and a flavoured e-liquid (FL2.0%) to a conventional cigarette (CC; JPS Silver King Size, 0.6 mg) and a licensed nicotine inhalator (Nicorette (R); 15 mg). Part 2 compared e-liquids with increasing nicotine concentrations (0%, 0.4%, 0.9%, 2.0%). Subjects used each different product for a daily use session. In Part 1, maximum plasma nicotine concentration (C-max) for UF2.0%, FL2.0%, Nicorette (R) and CC was 3.6, 2.5, 2.5 and 21.2 ng/mL, respectively. The time to maximum plasma nicotine concentration (T-max) was longer for the EVP (UF2.0%, 9.0 min; FL2.0%, 10.0 min) and the nicotine inhalator (13.0 min) compared to CC (3.0 min). In Part 2, EVP with 0%, 0.4%, 0.9% and 2.0% nicotine produced C-max values of 0.6, 1.0, 1.9 and 3.6 ng/mL, respectively. At the maximum nicotine concentration of 2% as prescribed by the European Tobacco Directive, the EVP achieved nicotine delivery that was comparable to the inhalator. EVPs thus offer a potential alternative to nicotine inhalator devices for those finding it difficult to quit smoking. (C) 2015 The Authors. Published by Elsevier Inc.
机译:通过电子蒸汽产品(EVP)递送的尼古丁的药代动力学(PK)谱表征在吸烟者中的2部分研究中。该研究被设计为随机,控制,四通的四级交叉试验。第1部分将一个无氟化的E-液体(UF2.0%)和调味的E-液体(FL2.0%)与常规卷烟(CC; JPS Silver King尺寸,0.6mg)和持牌尼古丁吸入器(Nicorette(R ); 15毫克)。第2部分与尼古丁浓度增加(0%,0.4%,0.9%,2.0%)比较E-液体。受试者使用每个不同的产品进行日常使用会话。在第1部分中,用于UF2.0%,Fl2.0%,尼古丁(R)和Cc的最大血浆尼古丁浓度(C-MAX)分别为3.6,2.5,2.5和21.2ng / ml。与CC(3.0分钟)相比,EVP(UF2.0%,9.0%,10.0分钟)和尼古丁吸入器(13.0分钟)的最大血浆尼古丁浓度(T-MAX)的时间更长。在第2部分中,EVP分别为0%,0.4%,0.9%和2.0%尼古丁分别产生0.6,1.0,1.9和3.6ng / ml的C-max值。在欧洲烟草指令规定的最大尼古丁浓度为2%,EVP实现了与吸入器相当的尼古丁递送。因此,EVPS为那些发现难以戒烟的人提供尼古丁吸入器装置的潜在替代品。 (c)2015年作者。 elsevier公司发布

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