O,S,S,-trimethyl phosphorodithioate-induced lung damage in rats and mice

Insights

O,S,S,-Trimethyl phosphorodithioate (OSS) causes lung damage in mice, similar to rats. This organophosphorus contaminant increases pulmonary DNA synthesis and affects lung cells, indicating systemic toxicity in both species.

Area of Science:

  • Toxicology
  • Pulmonary Medicine
  • Cell Biology

Background:

  • O,S,S,-Trimethyl phosphorodithioate (OSS) is a known contaminant of organophosphorus insecticides.
  • OSS has demonstrated delayed lung damage in rat bronchiolar and alveolar epithelial cells.
  • The effects of OSS on mouse lung tissue have not been previously investigated.

Purpose of the Study:

  • To investigate whether O,S,S,-Trimethyl phosphorodithioate (OSS) induces lung damage in mice.
  • To compare the pulmonary response to OSS in mice and rats.
  • To explore the role of metabolic activation in OSS-induced lung toxicity.

Main Methods:

  • Mice and rats were treated with varying doses of OSS.
  • Pulmonary DNA synthesis was measured via thymidine incorporation.
  • Autoradiography was used to determine the lung cell labeling index.
  • Histopathological examination assessed lung tissue damage.
  • The effects of SKF 525a and piperonyl butoxide on OSS-induced DNA synthesis were evaluated.

Main Results:

  • OSS significantly increased pulmonary thymidine incorporation in mice and rats in a dose-dependent manner.
  • Maximal DNA synthesis increases occurred on different days post-treatment for each species.
  • Histopathological analysis revealed lung damage in both species, with rats exhibiting more severe effects.
  • Metabolic inhibitors affected OSS-induced DNA synthesis differently in rats and mice.
  • Necrosis of bronchiolar Clara cells was observed in both species.

Conclusions:

  • Systemic O,S,S,-Trimethyl phosphorodithioate (OSS) causes lung damage in both mice and rats.
  • The damage affects both alveolar and bronchiolar lung tissues.
  • Metabolic activation appears necessary for OSS-induced lung damage in rats, but less so in mice.

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