| Literature DB >> 31853716 |
Smita Saji1, Sahebgowda Sidramagowda Patil2, Matthew Alleyn2, Richard Lockey2, Narasaiah Kolliputi3.
Abstract
Tobacco smoke's harmful effects are well-known; the harmful effects of tobacco smoke have been well-investigated. Nicotine in tobacco smoke contributes to the pathogenesis of various conditions, such as lung cancer, coronary artery disease and asthma. A decade ago, a seemingly safer alternative to tobacco cigarettes was introduced- the E-cigarette. However, studies have found that E-cigarette smoke (ECS) not only induces DNA damage but also reduces DNA repair activity via BER and NER pathways. Further research conducted with cells damaged by Ultra-Violet (UV) light or hydrogen peroxide (H2O2) indicates that ECS can function as a comutagen; nicotine can amplify mutagenic activity by merging with other mutagens. The downstream metabolites derived from nicotine found in ECS put E-cigarette smokers at a higher risk for developing lung or bladder cancers or heart disease than their non-smoking counterparts. Overall, these findings are instrumental in our understanding of the harmful effects of ECS.Entities:
Keywords: DNA damage; DNA repair; Lung injury; Mutagen; Nitrosamine ketones; Nitrosamines
Year: 2019 PMID: 31853716 PMCID: PMC7176775 DOI: 10.1007/s12079-019-00519-5
Source DB: PubMed Journal: J Cell Commun Signal ISSN: 1873-9601 Impact factor: 5.782