State-of-the-art methods and devices for the generation, exposure, and collection of aerosols from heat-not-burn tobacco products

Author:

Boué Stéphanie1,Goedertier Didier1,Hoeng Julia1ORCID,Kuczaj Arkadiusz1,Majeed Shoaib1,Mathis Carole1,May Anne2ORCID,Phillips Blaine3,Peitsch Manuel C1,Radtke Falk1,Schlage Walter K4,Tan Wei Teck3,Vanscheeuwijck Patrick1

Affiliation:

1. Philip Morris International (PMI) Research & Development, Philip Morris Products S.A., Neuchâtel, Switzerland

2. Consultants in Science, Epalinges, Switzerland

3. Philip Morris International (PMI) Research & Development, Philip Morris International Research Laboratories Pte. Ltd, Science Park II, Singapore

4. Biology Consultant, Bergisch Gladbach, Germany

Abstract

Tobacco harm reduction is increasingly recognized as a promising approach to accelerate the decline in smoking prevalence and smoking-related population harm. Potential modified risk tobacco products (MRTPs) must undergo a rigorous premarket toxicological risk assessment. The ability to reproducibly generate, collect, and use aerosols is critical for the characterization, and preclinical assessment of aerosol-based candidate MRTPs (cMRTPs), such as noncombusted cigarettes, also referred to as heated tobacco products, tobacco heating products, or heat-not-burn (HNB) tobacco products. HNB tobacco products generate a nicotine-containing aerosol by heating tobacco instead of burning it. The aerosols generated by HNB products are qualitatively and quantitatively highly different from cigarette smoke (CS). This constitutes technical and experimental challenges comparing the toxicity of HNB aerosols with CS. The methods and experimental setups that have been developed for the study of CS cannot be directly transposed to the study of HNB aerosols. Significant research efforts are dedicated to the development, characterization, and validation of experimental setups and methods suitable for HNB aerosols. They are described in this review, with a particular focus on the Tobacco Heating System version 2.2. This is intended to support further studies, the objective evaluation and verification of existing evidence, and the development of scientifically substantiated HNB MRTPs.

Publisher

SAGE Publications

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