Genotoxicity assessment of oxirane-based dental monomers in mammalian cells

Elisabet L Kostoryz1, Lori A Wetmore, William G Brockmann

  • 1University of Missouri-Kansas City, Schools of Dentistry and Pharmacy, School of Pharmacy, 2411 Holmes Street, Kansas City, Missouri 64108, USA. kostoryze@umkc.edu

Insights

Epoxy monomers in dental composites may cause genetic damage. Araldite GY 281 and Cyracure UVR 6105 induced DNA damage and cell cycle disruption, while DECHE-TOSU did not. BISGMA showed DNA damage but no cell cycle effects.

Area of Science:

  • Biomaterials Science
  • Toxicology
  • Molecular Biology

Background:

  • Dental composites utilize epoxy (oxirane) monomers, raising concerns about their genotoxicity.
  • Oxiranes can interact with DNA, potentially leading to mutations and carcinogenesis.

Purpose of the Study:

  • To evaluate DNA damage and cell-cycle disruption in mammalian cells exposed to experimental epoxy monomers.
  • To assess the genotoxic potential of Araldite GY 281, Cyracure UVR 6105, and DECHE-TOSU.

Main Methods:

  • L929 fibroblast cells were incubated with epoxy monomers for 7 and 24 hours.
  • DNA damage was assessed using the alkaline unwinding assay.
  • Cell-cycle analysis was performed via flow cytometry.

Main Results:

  • DECHE-TOSU showed no significant DNA damage or cell-cycle effects.
  • Araldite GY 281 and Cyracure UVR 6105 induced DNA damage and cell-cycle disruption at subtoxic doses.
  • BISGMA caused DNA damage but no cell-cycle effects, suggesting effective DNA repair.

Conclusions:

  • DECHE-TOSU appears to be a safer alternative regarding genotoxicity.
  • Araldite GY 281 and Cyracure UVR 6105 exhibit genotoxic potential, causing DNA damage and cell-cycle disruption.
  • Cell-cycle disruption observed in this study followed DNA damage induced by epoxy monomers.