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In vivo genotoxic effect of arsenic trioxide in mice using comet assay
B Saleha Banu1, K Danadevi, K Jamil
1Department of Genetics, Osmania University, Hyderabad, Andhra Pradesh, India. bhanu_75in@yahoo.com
Abstract:
Although arsenic has been the subject of toxicological research, acute in vivo genotoxic studies using relevant animal models and uniform methodology are lacking. Hence, the present study aims to study DNA damage caused by arsenic trioxide in mice in in vivo using alkaline single cell gel electrophoresis (Comet) assay. Mice were administered orally 0,0.13,0.27,0.54,1.08,2.15,4.3 and 6.45 mg/kg body weight of arsenic trioxide dissolved in distilled water. The samples of whole blood were collected at 24,48,72 h, first and second week post-treatment and the assay was carried out to determine DNA damage as represented by comet tail-length. All the doses induced significant increase in comet tail-length at 24 h post-treatment (P<0.05) showing a clear dose dependent increase from 0.13 to 2.15 mg/kg b.wt. and a dose dependent decrease in higher doses (4.3-6.45 mg/kg b.wt). At 48 h post-treatment all the doses showed a significant increase (P<0.05) in comet tail-length when compared to 24 h post-treatment. A gradual decrease in the comet tail-length was observed for all the doses from 72 h post-treatment onwards indicating a gradual repair in DNA damage. This indicates a non-linear dose and time response between DNA damage and different doses of arsenic trioxide at different time-intervals. A significant increase in comet tail-length at all the doses clearly gives evidence that arsenic trioxide cause DNA damage effectively. The study indicates that the alkaline comet assay is a reliable and effective method to detect DNA damage caused by metals.
Insights
Arsenic trioxide causes DNA damage in mice, as shown by increased comet tail length. The alkaline comet assay effectively detects this genotoxicity, revealing a non-linear dose and time response.
Area of Science:
- Toxicology
- Genotoxicity
- Biomarkers
Background:
- Limited in vivo genotoxicity data exists for arsenic trioxide.
- A need for uniform methodology in animal studies of arsenic toxicity.
Purpose of the Study:
- To investigate DNA damage induced by arsenic trioxide in mice.
- To evaluate the efficacy of the alkaline single cell gel electrophoresis (Comet) assay for detecting metal-induced genotoxicity.
Main Methods:
- Mice were administered varying oral doses of arsenic trioxide.
- Whole blood samples were collected at multiple time points (24h, 48h, 72h, 1 week, 2 weeks).
- Alkaline Comet assay was performed to measure DNA damage via comet tail length.
Main Results:
- All arsenic trioxide doses significantly increased comet tail length at 24 hours post-treatment.
- A dose-dependent increase in DNA damage was observed from 0.13 to 2.15 mg/kg, followed by a decrease at higher doses.
- DNA damage repair was indicated by a gradual decrease in comet tail length from 72 hours onwards.
Conclusions:
- Arsenic trioxide effectively induces DNA damage in vivo.
- The alkaline Comet assay is a reliable method for detecting metal-induced DNA damage.
- A non-linear dose and time-dependent response of DNA damage was observed.