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Published on: March 24, 2020
Genotoxicity evaluation of orally administered styrene monomer in mice using comet, micronucleus, and Pig-a endpoints
1Toxicology Consulting, Midland, Michigan, USA.
Abstract:
Male B6C3F1 mice were administered styrene monomer by oral gavage for 29 consecutive days at dose levels of 0, 75, 150, or 300 mg/kg/day. The highest dose level represented the maximum tolerated dose based on findings in a 28-day dose range-finding study, in which the bioavailability of orally administered styrene was also confirmed. The positive control group received ethyl nitrosourea (ENU; 51.7 mg/kg/day) on Study Days 1-3 and ethyl methanesulfonate (EMS; 150 mg/kg/day) on Study Days 27-29 by oral gavage. Approximately 3 h following the final dose, blood was collected to assess erythrocyte Pig-a mutant and micronucleus frequencies. DNA strand breakage was assessed in glandular stomach, duodenum, kidney, liver, and lung tissues using the alkaline comet assay. The %tail DNA for stomach, liver, lung, and kidney in the comet assay among the styrene-treated groups was neither significantly different from the respective vehicle controls nor was there any dose-related increasing trend in any of the tissues; results for duodenum were interpreted to be inconclusive because of technical issues. The Pig-a and micronucleus frequencies among styrene-treated groups also did not show significant increases relative to the vehicle controls and there was also no evidence for a dose-related increasing trend. Thus, orally administered styrene did not induce DNA damage, mutagenesis, or clastogenesis/aneugenesis in these Organization of Economic Co-operation and Development test guideline-compliant genotoxicity studies. Data from these studies can contribute to the overall assessment of genotoxic hazard and risk posed to humans potentially exposed to styrene.
Insights
Oral styrene administration in mice did not cause DNA damage or mutations. These genotoxicity studies indicate styrene is not mutagenic or clastogenic when ingested.
Area of Science:
- Toxicology
- Genetics
- Chemical Safety
Background:
- Styrene is a widely used industrial chemical.
- Assessing styrene's genotoxic potential is crucial for human health risk evaluation.
- Previous studies on styrene genotoxicity have yielded mixed results.
Purpose of the Study:
- To evaluate the genotoxic effects of orally administered styrene in male B6C3F1 mice.
- To assess DNA damage, gene mutation, and chromosomal aberrations following sub-chronic styrene exposure.
Main Methods:
- Mice were administered styrene monomer (75-300 mg/kg/day) or vehicle control via oral gavage for 29 days.
- Erythrocyte Pig-a mutant and micronucleus frequencies were measured.
- DNA strand breakage was assessed using the alkaline comet assay in multiple tissues.
Main Results:
- Styrene treatment did not significantly increase %tail DNA in the comet assay for stomach, liver, lung, or kidney.
- No significant increases in Pig-a mutant or micronucleus frequencies were observed in styrene-treated groups.
- No dose-related increasing trend in genotoxicity markers was detected.
Conclusions:
- Orally administered styrene did not induce DNA damage, mutagenesis, or clastogenesis/aneugenesis in OECD guideline-compliant genotoxicity studies.
- These findings suggest a lack of genotoxic hazard from ingested styrene.
- Data contribute to the overall risk assessment for human styrene exposure.
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