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Updated: May 25, 2026

Impact Assessment of Repeated Exposure of Organotypic 3D Bronchial and Nasal Tissue Culture Models to Whole Cigarette Smoke
Published on: February 12, 2015
New experimental data linking secondhand smoke exposure to lung cancer in nonsmokers
Sang-In Kim1, Jae-In Yoon, Stella Tommasi
1Department of Cancer Biology, Beckman Research Institute of the City of Hope, 1500 E. Duarte Rd., Duarte, CA 91010, USA.
Abstract:
Secondhand smoke (SHS) exposure is a known risk factor for lung cancer development in lifelong nonsmokers; however, the mechanistic involvement of SHS in the genesis of this malignancy remains elusive. The present study is the first comprehensive investigation of SHS mutagenicity in vivo, in which we have established the mutagenic effects of SHS in transgenic Big Blue mice, and subsequently found correlations between our experimental findings and those obtained from our analysis of the largest database of mutations in human TP53, which is the most frequently mutated gene in human lung cancer. We demonstrate that whole-body SHS exposure of mice for 5 h/d, 5 d/wk for a duration of 2 or 4 mo elicits a significant mutagenic response in the lung, trachea, and bladder of exposed animals, as reflected by the elevation of background cII mutant frequency in the respective organs. The organ-specific mutagenicity of SHS is most pronounced in the lung and remains persistent both in the lung and bladder of SHS-exposed animals after a 1-mo recovery in clean air. The induced cII mutagenesis in the lung of SHS-exposed mice perfectly recapitulates our analysis of the TP53 mutations in human lung cancer in nonsmokers. Remarkably, the relative frequencies of all types of mutations in the TP53 gene of nonsmokers' lung tumors and in the cII transgene of lung cellular DNA from SHS-exposed mice are indistinguishable from one another. We provide the first verification of a mechanistic mode of action for SHS of relevance for carcinogenesis and the first experimental evidence linking SHS exposure to lung cancer in nonsmokers.
Insights
Secondhand smoke (SHS) causes mutations in mouse lungs, mirroring human lung cancer mutations in TP53. This study provides the first mechanistic link between SHS exposure and cancer in nonsmokers.
Area of Science:
- Environmental Health
- Toxicology
- Carcinogenesis
Background:
- Secondhand smoke (SHS) is a known lung cancer risk factor in nonsmokers.
- The precise mechanisms by which SHS contributes to cancer development are not fully understood.
- Investigating SHS mutagenicity is crucial for understanding its role in carcinogenesis.
Purpose of the Study:
- To comprehensively investigate the mutagenic effects of SHS exposure in vivo.
- To establish a mechanistic link between SHS exposure and lung cancer in nonsmokers.
- To compare SHS-induced mutations in mice with TP53 mutations in human lung tumors.
Main Methods:
- Exposure of transgenic Big Blue mice to whole-body SHS (5 h/d, 5 d/wk for 2-4 months).
- Assessment of mutagenic response by measuring cII mutant frequency in lung, trachea, and bladder.
- Analysis of the largest database of human TP53 mutations in lung cancer.
Main Results:
- SHS exposure significantly increased mutagenicity in the lungs, trachea, and bladders of mice.
- Mutagenic effects were most pronounced in the lung and persisted after a recovery period.
- The mutation profiles in mouse lung DNA closely matched TP53 mutations found in human lung tumors from nonsmokers.
Conclusions:
- This study provides the first mechanistic evidence linking SHS exposure to lung cancer in nonsmokers.
- SHS induces organ-specific mutagenicity, particularly in the lung, supporting its role in carcinogenesis.
- The findings validate a mechanism of action for SHS in the development of lung cancer.
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