Smoking Topography, Nicotine Kinetics, and Subjective Smoking Experience of Mentholated and Non-Mentholated Heated Tobacco Products in Occasional Smokers.

IF 4.1 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Toxics Pub Date : 2025-09-06 DOI:10.3390/toxics13090757
Benedikt Rieder, Yvonne Stoll, Christin Falarowski, Marcus Gertzen, Gabriel Kise, Gabriele Koller, Sarah Koch, Peter Laux, Andreas Luch, Anna Rahofer, Tobias Rüther, Nadja Mallock-Ohnesorg, Dennis Nowak, Thomas Schulz, Magdalena Elzbieta Zaslona, Ariel Turcios, Andrea Rabenstein, Elke Pieper
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引用次数: 0

Abstract

Background: Heated tobacco products (HTPs) are marketed as reduced-harm alternatives to conventional cigarettes (CCs) and are increasingly used by young adults and occasional smokers. However, their acute nicotine delivery and user experience remain insufficiently studied in occasional smokers without established cigarette or nicotine dependence. Additives such as menthol-known to reduce sensory irritation and facilitate inhalation-may further influence initiation and product appeal, particularly in naïve users. Methods: In a crossover study with three separate study days, n = 15 occasional smokers without established cigarette or nicotine dependence consumed a mentholated HTP (mHTP), a non-mentholated HTP (nmHTP), and a conventional cigarette (CC) under ad libitum conditions during a 30 min observation. We measured plasma nicotine concentrations, smoking topography, cardiovascular parameters, and subjective effects (mCEQ). Results: Nicotine pharmacokinetics (Cmax, AUC) were comparable across products (Cmax 7.8-8.5 ng/mL; AUC 2.3-2.8 ng·min/mL [geometric means]; no significant differences), even though participants had no prior experience with HTPs. Compared to CCs, HTPs were associated with longer puff durations (2.09 s mHTP/2.00 s nmHTP vs. 1.78 s CC), higher puff volumes (mean: 68.06/68.16 vs. 43.76 mL; total: 949.80/897.73 vs. 522.41 mL), and greater flow rates (mean 37.49/38.25 vs. 27.68 mL/s; peak 63.24/63.69 vs. 44.38 mL/s). Subjective effects did not differ significantly between products (mCEQ subscale examples: satisfaction 3.00-3.33/7; reward 2.81-3.31/7; craving reduction 5.07-5.60/7). Cardiovascular parameters such as heart rate or systolic blood pressure showed with no between-product differences (HR p = 0.518; SBP p = 0.109) and no differences in their change over time between products (HR p = 0.807; SBP p = 0.734). No differences were observed between mHTP and nmHTP. Conclusion: HTPs can deliver nicotine and evoke user experiences similar to CCs, even in non-dependent users. The more intensive inhalation behavior observed with HTPs may reflect compensatory use and merits further investigation. Although no menthol-specific effects were observed, methodological constraints may have limited their detectability.

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吸烟地形、尼古丁动力学和偶尔吸烟者薄荷化和非薄荷化加热烟草制品的主观吸烟体验。
背景:加热烟草制品(HTPs)作为传统香烟(cc)的低危害替代品销售,越来越多的年轻人和偶尔吸烟者使用。然而,在没有建立香烟或尼古丁依赖的偶尔吸烟者中,对它们的急性尼古丁传递和使用者体验的研究仍然不够充分。添加剂,如薄荷醇,已知可减少感官刺激和促进吸入,可能进一步影响起始和产品的吸引力,特别是对naïve用户。方法:在3个独立研究日的交叉研究中,n = 15名没有确定的香烟或尼古丁依赖的偶尔吸烟者在30分钟的自由观察条件下,分别服用薄荷化HTP (mHTP)、非薄荷化HTP (nmHTP)和传统香烟(CC)。我们测量了血浆尼古丁浓度、吸烟地形、心血管参数和主观效应(mCEQ)。结果:不同产品的尼古丁药代动力学(Cmax, AUC)具有可同性(Cmax 7.8-8.5 ng/mL; AUC 2.3-2.8 ng·min/mL[几何平均];无显著差异),即使参与者之前没有使用过HTPs。与CC相比,HTPs与更长的吞吐持续时间(2.09 s mHTP/2.00 s nmHTP vs. 1.78 s CC)、更高的吞吐量(平均:68.06/68.16 vs. 43.76 mL;总量:949.80/897.73 vs. 522.41 mL)和更大的流量(平均37.49/38.25 vs. 27.68 mL/s;峰值63.24/63.69 vs. 44.38 mL/s)相关。主观效应在不同产品间无显著差异(mCEQ子量表示例:满意度3.00-3.33/7;奖励2.81-3.31/7;渴望减少5.07-5.60/7)。心率、收缩压等心血管参数在不同产品间无差异(HR p = 0.518;收缩压p = 0.109),其随时间变化也无差异(HR p = 0.807;收缩压p = 0.734)。在mHTP和nmHTP之间没有观察到差异。结论:htp可以传递尼古丁并唤起类似于cc的用户体验,即使是非依赖用户。HTPs观察到的更密集的吸入行为可能反映代偿性使用,值得进一步研究。虽然没有观察到薄荷醇特异性效应,但方法上的限制可能限制了其可检测性。
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来源期刊
Toxics
Toxics Chemical Engineering-Chemical Health and Safety
CiteScore
4.50
自引率
10.90%
发文量
681
审稿时长
6 weeks
期刊介绍: Toxics (ISSN 2305-6304) is an international, peer-reviewed, open access journal which provides an advanced forum for studies related to all aspects of toxic chemicals and materials. It publishes reviews, regular research papers, and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in detail. There is, therefore, no restriction on the maximum length of the papers, although authors should write their papers in a clear and concise way. The full experimental details must be provided so that the results can be reproduced. Electronic files or software regarding the full details of calculations and experimental procedure can be deposited as supplementary material, if it is not possible to publish them along with the text.
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