Cytotoxic effects of heated tobacco products (HTP) on human bronchial epithelial cells
Цитотоксическое действие систем нагревания табака (HTP) на эпителиальные клетки бронхов человека
2018-09-05
SCID: 54.1/8u6w89zv
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air-liquid interfacecytotoxicityheated tobacco productshuman bronchial epithelial cellsinflammatory cytokines
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Abstract (AI)
BACKGROUND: Heated tobacco product(s) (HTP), also called heat-not-burn products, are a re-emerging class of tobacco products that purport to reduce health risk compared with smoking combustible tobacco products. This study examined the potential toxic effects of inhaling emissions from an HTP in comparison with electronic and combustible tobacco cigarettes. METHODS: Inhalation toxicity of HTP (IQOS; tobacco flavour), e-cigarette (MarkTen; tobacco flavour) and tobacco cigarette (Marlboro Red) was examined in vitro using an air-liquid interface with human bronchial epithelial cells (H292). Cells were exposed directly to 55 puffs from the e-cigarette, 12 puffs from the HTP and 8 puffs from the tobacco cigarette to equilibrate nicotine delivery to the cells across products. Cytotoxicity was measured using neutral red uptake and trypan blue assays. Cytotoxic effects of each tested product (HTP, e-cigarette and tobacco cigarette) were compared with an air control. Release of inflammatory markers (cytokines) was measured using ELISA. RESULTS: The HTP showed higher cytotoxicity compared with the air controls using the neutral red assay. The HTP also showed higher cytotoxicity than the e-cigarette, but lower cytotoxicity than the combustible cigarettes using the same assay. A significant increase in cytokines levels, compared with air controls, was observed postexposure to tobacco smoke but not to emissions from HTP or e-cigarette aerosol. DISCUSSION: Using limited cytotoxic measures, the HTP showed reduced cytotoxicity relative to a combustible cigarette but higher toxicity than an e-cigarette. More comprehensive testing is needed to determine long-term effects of inhaling emissions from HTP.
Key Findings
1
Combustible tobacco smoke significantly increased cytokine release, whereas IQOS emissions and e-cigarette aerosol did not significantly alter cytokine levels versus air controls.
2
In vitro exposure of human bronchial epithelial cells showed that IQOS heated tobacco emissions caused greater cytotoxicity than air controls.
3
The authors emphasize that comprehensive and longer-term studies are needed to characterize the health effects of heated tobacco emissions.
4
The study suggests reduced cytotoxicity of heated tobacco products relative to combustible cigarettes, but greater toxicity than e-cigarettes under the tested conditions.
5
Using the neutral red assay, IQOS emissions were more cytotoxic than e-cigarette aerosol but less cytotoxic than combustible cigarette smoke.
Research Object
Human bronchial epithelial cells exposed in vitro to emissions from heated tobacco products, e-cigarettes, and combustible tobacco cigarettes
Research Subject
Comparative cytotoxicity and inflammatory cytokine responses to inhaled product emissions
Publication Details
Publication Date
2018-09-05
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