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Updated: May 18, 2026

Cigarette Smoke Exposure in Mice using a Whole-Body Inhalation System
Published on: October 22, 2020
Genomic impact of cigarette smoke, with application to three smoking-related diseases
M Talikka1, N Sierro, N V Ivanov
1Philip Morris International R&D, Philip Morris Products S.A., Neuchâtel, Switzerland.
Abstract:
There is considerable evidence that inhaled toxicants such as cigarette smoke can cause both irreversible changes to the genetic material (DNA mutations) and putatively reversible changes to the epigenetic landscape (changes in the DNA methylation and chromatin modification state). The diseases that are believed to involve genetic and epigenetic perturbations include lung cancer, chronic obstructive pulmonary disease (COPD), and cardiovascular disease (CVD), all of which are strongly linked epidemiologically to cigarette smoking. In this review, we highlight the significance of genomics and epigenomics in these major smoking-related diseases. We also summarize the in vitro and in vivo findings on the specific perturbations that smoke and its constituent compounds can inflict upon the genome, particularly on the pulmonary system. Finally, we review state-of-the-art genomics and new techniques such as high-throughput sequencing and genome-wide chromatin assays, rapidly evolving techniques which have allowed epigenetic changes to be characterized at the genome level. These techniques have the potential to significantly improve our understanding of the specific mechanisms by which exposure to environmental chemicals causes disease. Such mechanistic knowledge provides a variety of opportunities for enhanced product safety assessment and the discovery of novel therapeutic interventions.
Insights
Cigarette smoke causes DNA mutations and epigenetic changes, contributing to lung cancer, COPD, and cardiovascular disease. Advanced genomics and epigenomics reveal disease mechanisms and therapeutic targets.
Area of Science:
- Environmental Health
- Genomics and Epigenomics
- Toxicology
Background:
- Cigarette smoke induces genetic mutations and epigenetic alterations.
- These changes are linked to lung cancer, COPD, and cardiovascular disease.
- Genomics and epigenomics are crucial for understanding these smoking-related diseases.
Purpose of the Study:
- To review the significance of genomics and epigenomics in smoking-related diseases.
- To summarize findings on smoke-induced genomic and epigenomic perturbations.
- To discuss advanced techniques for characterizing epigenetic changes.
Main Methods:
- Review of in vitro and in vivo studies on smoke's effects on the genome.
- Analysis of findings from high-throughput sequencing and genome-wide chromatin assays.
- Synthesis of current knowledge on genomics and epigenomics in smoking-related diseases.
Main Results:
- Cigarette smoke causes both DNA mutations and epigenetic changes.
- Specific perturbations are inflicted upon the genome, especially in the pulmonary system.
- Advanced techniques enable genome-level characterization of epigenetic changes.
Conclusions:
- Genomics and epigenomics are vital for understanding smoking-related diseases.
- New techniques offer insights into disease mechanisms caused by environmental chemicals.
- Mechanistic knowledge can enhance product safety and guide therapeutic interventions.
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