Update: Mode of action (MOA) for liver tumors induced by oral exposure to 1,4-dioxane

Michael L Dourson1, Jeri Higginbotham2, Jeff Crum3

  • 1University of Cincinnati, College of Medicine, Cincinnati, OH, United States.

Insights

1,4-dioxane causes rodent liver tumors via cytotoxicity and regenerative hyperplasia, a mode of action (MOA) supported by new analyses. This finding confirms the MOA applies to mice, resolving previous questions.

Area of Science:

  • Toxicology
  • Carcinogenesis
  • Environmental Health

Background:

  • Previous studies suggested 1,4-dioxane causes rodent liver tumors through cytotoxicity and regenerative hyperplasia.
  • Unresolved questions remained regarding the concordance of this mode of action (MOA) in mice.
  • High background incidence of liver tumors in control groups complicates interpretation.

Purpose of the Study:

  • To re-evaluate the MOA of 1,4-dioxane-induced liver tumors in rodents, including mice.
  • To address inconsistencies in previous findings concerning mice.
  • To determine if a threshold exists for 1,4-dioxane's liver toxicity.

Main Methods:

  • Reanalysis of data from two chronic mouse cancer bioassays and seven rat cancer bioassays.
  • Inclusion of data from a 13-week mouse study.
  • Consideration of 1,4-dioxane's mutagenicity, DNA repair data, and background tumor incidence.

Main Results:

  • Reanalysis supports the regenerative hyperplasia MOA for rodent liver tumors, including those in mice.
  • Metabolic saturation of 1,4-dioxane initiates the MOA, leading to dose- and time-dependent liver toxicity.
  • Liver toxicity exhibits a threshold, generally between 9.6-42 mg/kg-day (rats) and 57-66 mg/kg-day (mice).

Conclusions:

  • Rodent liver tumors, including in mice, are caused by a regenerative hyperplasia MOA initiated by metabolic saturation.
  • Alternative MOAs for 1,4-dioxane-induced liver tumors can be excluded.
  • Threshold-based toxicity assessments are appropriate for 1,4-dioxane due to its non-mutagenic, threshold-driven MOA.