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Cigarette Smoke Exposure in Mice using a Whole-Body Inhalation System
Published on: October 22, 2020
Molecular and cytogenetical alterations induced by environmental cigarette smoke in mice heterozygous for Fhit
Silvio De Flora1, Francesco D'Agostini, Alberto Izzotti
1Department of Health Sciences, University of Genoa, via A. Pastore 1, I-16132 Genoa, Italy. sdf@unige.it
Abstract:
Previous studies in humans and animal models provided evidence that the Fhit gene is an early target for cigarette smoke. We compared the induction of a variety of molecular and cytogenetical alterations in B6-129(F(1)) mice, either wild type or Fhit(+/-), after whole-body exposure to environmental cigarette smoke (ECS) for 15 consecutive days. Both mouse genotypes responded to ECS with a loss of Fhit protein in the bronchial epithelium, accompanied by induction of apoptosis and stimulation of cell proliferation. ECS induced formation of bulky DNA adducts in whole lung. In addition, ECS caused cytogenetical damage both in the respiratory tract and at a systemic level, as shown by a significant increase of micronucleus frequency in pulmonary alveolar macrophages, bone marrow polychromatic erythrocytes, and peripheral blood normochromatic erythrocytes of both wild-type and Fhit(+/-) mice. These results are compared with those generated in other species, strains, and genotypes of rodents exposed to ECS that we investigated previously. Although the loss of Fhit protein in the bronchial epithelium of ECS-exposed B6-129(F(1)) mice provides further evidence that the Fhit gene is an early molecular target for ECS, heterozygosity for Fhit does not seem to confer an increased susceptibility of mice in terms of the investigated early biomarkers.
Insights
Environmental cigarette smoke (ECS) targets the Fhit gene, causing DNA damage and cell changes in mice. Fhit gene heterozygosity did not increase susceptibility to these early biomarkers.
Area of Science:
- Environmental toxicology
- Molecular biology
- Genetics
Background:
- Previous research indicates the Fhit gene is an early target of cigarette smoke exposure.
- Environmental cigarette smoke (ECS) exposure is a significant risk factor for various health issues.
Purpose of the Study:
- To investigate molecular and cytogenetical alterations in wild-type and Fhit(+/-) mice exposed to ECS.
- To determine if Fhit gene heterozygosity influences susceptibility to ECS-induced damage.
Main Methods:
- Whole-body exposure of B6-129(F(1)) mice (wild type and Fhit(+/-)) to ECS for 15 days.
- Analysis of Fhit protein levels, apoptosis, cell proliferation, bulky DNA adducts, and micronucleus frequency in various tissues.
Main Results:
- ECS exposure led to Fhit protein loss, apoptosis, and cell proliferation in the bronchial epithelium of both genotypes.
- Bulky DNA adducts were detected in the lungs, and cytogenetical damage (micronucleus formation) occurred systemically.
- Fhit heterozygosity did not enhance susceptibility to the investigated early biomarkers.
Conclusions:
- The Fhit gene is confirmed as an early molecular target of ECS.
- Fhit heterozygosity does not appear to confer increased susceptibility to early ECS-induced biomarkers in this model.

