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In vitro cytoxicity profile of e‐cigarette liquid samples on primary human bronchial epithelial cells

Drug Testing and Analysis 2022 19 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Pietro Zuccarello Margherita Ferrante, Margherita Ferrante, Margherita Ferrante, Rosalia Emma, Massimo Caruso, Margherita Ferrante, Margherita Ferrante, Pietro Zuccarello Pietro Zuccarello Margherita Ferrante, Margherita Ferrante, Alfio Distefano, Margherita Ferrante, Margherita Ferrante, Sonja Rust, Pietro Zuccarello Margherita Ferrante, Massimo Caruso, Rosalia Emma, Pietro Zuccarello Pietro Zuccarello Chiara Copat, Rosalia Emma, Pietro Zuccarello Margherita Ferrante, Chiara Copat, Chiara Copat, Margherita Ferrante, Margherita Ferrante, Roberta Pulvirenti, Chiara Copat, Margherita Ferrante, Margherita Ferrante, Margherita Ferrante, Margherita Ferrante, Roberta Pulvirenti, Margherita Ferrante, Margherita Ferrante, Riccardo Polosa, Margherita Ferrante, Chiara Copat, Giovanni Li Volti, Roberta Pulvirenti, Giuseppe Carota, Margherita Ferrante, Roberta Pulvirenti, Roberta Pulvirenti, Pietro Zuccarello Margherita Ferrante, Margherita Ferrante, Chiara Copat, Giovanni Li Volti, Roberta Pulvirenti, Giuseppe Carota, Margherita Ferrante, Riccardo Polosa, Margherita Ferrante, Gesualdo Antonio Missale, Riccardo Polosa, Margherita Ferrante, Margherita Ferrante, Margherita Ferrante, Gesualdo Antonio Missale, Sonja Rust, Margherita Ferrante, Margherita Ferrante, Sonja Rust, Chiara Copat, G. Raciti, Massimo Caruso, Pietro Zuccarello Giovanni Li Volti, Giovanni Li Volti, Margherita Ferrante, Margherita Ferrante, Chiara Copat, Pietro Zuccarello

Summary

Researchers exposed human bronchial epithelial cells to aerosols from four commercial e-cigarette liquids and a reference cigarette using an air-liquid interface system, finding significantly lower cytotoxicity, preserved mitochondrial integrity, and no reactive oxygen species production for e-cigarette aerosol compared to tobacco smoke. No metal or plastic contaminants were detected in any of the e-liquids tested.

Body Systems
Study Type In vitro

Cigarette smoke is associated to severe chronic diseases. The most harmful components of cigarette smoke derive from the combustion process, which are significantly reduced in the electronic cigarette aerosol, thus providing a valid option in harm reduction strategies. To develop safer products, it is therefore necessary to screen electronic cigarette liquids (e-liquids) to meet high safety standards defined by government regulations. The aim of the present study was to evaluate the presence of metal- and plastic-derived contaminants in four different commercial e-liquids with high concentration of nicotine and their cytotoxic effect in normal human bronchial epithelial cells by a number of in vitro assays, in comparison with the 1R6F reference cigarette, using an air-liquid interface (ALI) exposure system. Moreover, we evaluated the effect of aerosol exposure on oxidative stress by measuring the production of reactive oxygen species and mitochondrial potential. Our results showed no contaminants in all e-liquids and a significantly reduced cytotoxic effect of e-liquid aerosol compared to cigarette smoke as well as a maintained mitochondria integrity. Moreover, no production of reactive oxygen species was detected with e-cigarette aerosol. In conclusion, these results support the reduced toxicity potential of e-cigs compared to tobacco cigarettes in an in vitro model resembling real life smoke exposure.

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