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A comprehensive toxicological analysis of panel of unregulated e-cigarettes to human health.
Guraka, Asha; Mierlea, Slaveya; Drake, Samantha Jane; Shawa, Issac Thom; Waldron, Joe; Corcoran, Martin; Dowse, Donna; Walkman, Doug; Burn, Lisa; Sivasubramaniam, Shivadas; Kermanizadeh, Ali.
Afiliación
  • Guraka A; University of Derby, College of Science and Engineering, Derby, UK.
  • Mierlea S; University of Derby, College of Science and Engineering, Derby, UK.
  • Drake SJ; University of Derby, College of Science and Engineering, Derby, UK.
  • Shawa IT; University of Derby, College of Science and Engineering, Derby, UK.
  • Waldron J; University of Derby, College of Science and Engineering, Derby, UK.
  • Corcoran M; University of Derby, College of Science and Engineering, Derby, UK.
  • Dowse D; Trading Standards, Derby City Council, Derby, UK.
  • Walkman D; Trading Standards, Derby City Council, Derby, UK.
  • Burn L; Derby City Council, Public Health Department, Derby, UK.
  • Sivasubramaniam S; University of Roehampton - School of Life and Health Sciences, Roehampton, UK.
  • Kermanizadeh A; University of Derby, College of Science and Engineering, Derby, UK. Electronic address: A.Kermanizadeh@derby.ac.uk.
Toxicology ; : 153964, 2024 Oct 01.
Article en En | MEDLINE | ID: mdl-39362579
ABSTRACT
Electronic cigarettes, commonly referred to as e-cigarettes have gained popularity over recent years especially among young individuals. In the light of the escalating prevalence of the use of these products and their potential for long-term health effects, in this study as the first of its kind a comprehensive toxicological profiling of the liquid from a panel of unregulated e-cigarettes seized in the UK was undertaken using an in vitro co-culture model of the upper airways. The data showed that e-cigarettes caused a dose dependent increase in cell death and inflammation manifested by enhanced release of IL1ß and IL6. Furthermore, the e-cigarettes induced oxidative stress as demonstrated by a reduction of intracellular glutathione and an increase in generation of reactive oxygen species. Moreover, the assessment of genotoxicity showed significant DNA strand breaks (following exposure to Tigerblood flavoured e-cigarette). Moreover, relevant to the toxicological observations, was the detection of varying and frequently high levels of hazardous metals including cadmium, copper, nickel and lead. This study highlights the importance of active and ongoing collaborations between academia, governmental organisations and policy makers (Trading standards, Public Health) and national health service in tackling vape addiction and better informing the general public regarding the risks associated with e-cigarette usage.
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Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Toxicology Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Toxicology Año: 2024 Tipo del documento: Article