AI Article Synopsis

  • Smoking can make asthma and other lung problems worse, and it changes how our DNA works.
  • Scientists studied the lungs of mice to see how smoking changes DNA patterns and compared them to what happens in humans.
  • They found new DNA changes linked to smoking that could affect health issues like lung function and cancer, showing we need to look closely at lungs to understand smoking's effects better.

Article Abstract

Smoking is a potent cause of asthma exacerbations, chronic obstructive pulmonary disease (COPD) and many other health defects, and changes in DNA methylation (DNAm) have been identified as a potential link between smoking and these health outcomes. However, most studies of smoking and DNAm have been done using blood and other easily accessible tissues in humans, while evidence from more directly affected tissues such as the lungs is lacking. Here, we identified DNAm patterns in the lungs that are altered by smoking. We used an established mouse model to measure the effects of chronic smoke exposure first on lung phenotype immediately after smoking and then after a period of smoking cessation. Next, we determined whether our mouse model recapitulates previous DNAm patterns observed in smoking humans, specifically measuring DNAm at a candidate gene responsive to cigarette smoke, . Finally, we carried out epigenome-wide DNAm analyses using the newly released Illumina mouse methylation microarrays. Our results recapitulate some of the phenotypes and DNAm patterns observed in human studies but reveal 32 differentially methylated genes specific to the lungs which have not been previously associated with smoking. The affected genes are associated with nicotine dependency, tumorigenesis and metastasis, immune cell dysfunction, lung function decline, and COPD. This research emphasizes the need to study CS-mediated DNAm signatures in directly affected tissues like the lungs, to fully understand mechanisms underlying CS-mediated health outcomes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10913724PMC
http://dx.doi.org/10.1080/15592294.2024.2322386DOI Listing

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