Molecular model of naphthalene-induced DNA damage in the murine lung

Tom C Karagiannis1, Xuelei Li, Michelle M Tang

  • 1Epigenomic Medicine, Baker IDI Heart and Diabetes Institute, Melbourne, VIC, Australia.

Insights

Naphthalene exposure causes airway epithelial damage and DNA double-strand breaks in mice. This study establishes a model for investigating genotoxic damage and potential therapeutics for lung diseases.

Area of Science:

  • Toxicology
  • Pulmonary Medicine
  • Molecular Biology

Background:

  • Airway epithelial damage and repair are key targets for treating asthma and COPD.
  • Naphthalene, an environmental toxicant, is used in a mouse model to induce airway epithelial damage.
  • Naphthalene has genotoxic and carcinogenic potential.

Purpose of the Study:

  • To investigate naphthalene-induced toxicity in mice.
  • To identify and quantify DNA double-strand breaks in a murine naphthalene model of airway epithelial damage.

Main Methods:

  • Male C57/BL6 mice were injected with naphthalene (200 mg/kg).
  • Lung function, bronchoalveolar lavage, and histology were assessed at 12, 24, 48, and 72 hours.
  • DNA double-strand breaks were quantified using γH2AX foci as a marker.

Main Results:

  • Naphthalene induced increased epithelial denudation, bronchoalveolar lavage cellularity, and lung reactivity.
  • Histological changes and DNA double-strand breaks (γH2AX foci) peaked at 24 and 48 hours.
  • All parameters decreased by 72 hours, indicating repair and re-epithelialization.

Conclusions:

  • Naphthalene administration causes a time-dependent accumulation of DNA double-strand breaks in mouse airway epithelial cells.
  • This naphthalene-induced airway injury serves as a valuable model for studying genotoxic damage.
  • The model can be utilized to evaluate therapeutic efficacy for lung diseases associated with genotoxicity.