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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
Abstract:
The potential use of oxirane (epoxy) monomers in dental composite development raises the concern to test their genetic safety. Oxiranes can interact with DNA resulting in DNA damage, mutations, and possibly carcinogenesis. Our objective was to evaluate DNA damage and cell-cycle disruption in mammalian cells after exposure to epoxy monomers. The experimental oxiranes were Araldite trade mark GY 281, Cyracure trade mark UVR 6105 and 1,3-dioxane-2,2'-1,3-dioxane-5',4'-bicyclo[4.1.0] heptane (DECHE-TOSU). L929 fibroblast cells were incubated with the monomer for 7 and 24 h at 37 degrees C/5% CO(2). After incubation, cells were subjected to DNA damage alkaline unwinding assay and flow cytometry cell-cycle analysis. Lack of DNA damage and cell-cycle effects were observed with DECHE-TOSU. Exposure to subtoxic doses of Araldite trade mark GY 281 or Cyracure trade mark UVR 6105 caused DNA damage and cell cycle disruption. A significant (p < 0.01) effect for Araldite trade mark GY 281 was observed with cell populations in G1 and G2/M when compared to DMSO solvent control. Similar comparisons revealed significant differences in G2/M cell cycle population after 24-h exposure to 100 microM Cyracure trade mark UVR 6105. For comparison, BISGMA was evaluated to produce DNA damage but without cell-cycle effects suggesting DNA repair mechanisms were effective. Our findings with DECHE-TOSU, Araldite trade mark GY 281 and Cyracure trade mark UVR 6105 indicated cell-cycle disruption followed DNA damage.
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.
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