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Genotoxicity evaluation of HMG CoA reductase inhibitor rosuvastatin
Ahmet Ali Berber1, Mustafa Celik, Hüseyin Aksoy
1Department of Biology, Faculty of Art and Sciences, Sakarya University , Sakarya , Turkey and.
Abstract:
The genotoxic potential of rosuvastatin as one of the statin drugs was assessed by chromosomal aberrations (CAs), micronucleus (MN) and DNA damage by comet assay in the human peripheral blood lymphocytes. Rosuvastatin was used at concentrations of 0.0625, 0.125, 0.25, 0.5 and 1 µg/mL for these in vitro assays. In all assays, a negative and positive control were also included. CA frequencies were significantly increased in all concentrations at 24 hours and significantly increased in all concentrations except 0.0625 µg/mL at 48 hours, compared to the negative control. Rosuvastatin has a decreased mitotic index (MI) at 0.5- and 1-µg/mL concentrations at 24 hours and at 0.25, 0.5 and 1 µg/mL at 48 hours. A significant increase was observed for induction of MN in all treatments, compared to the negative control. Cytokinesis-block proliferation indices were not affected by treatments with rosuvastatin. In the comet assay, significant increases in comet tail length and tail moment were observed at 0.0625-, 0.5- and 1-µg/mL concentrations. Comet intensity was significantly increased in all concentrations except 0.0625 µg/mL. According to these results, rosuvastatin is cytotoxic and clastogenic/aneugenic in human peripheral lymphocytes. Further studies should be conducted in other test systems to evaluate the full genotoxic potential of rosuvastatin.
Insights
Rosuvastatin, a statin drug, showed genotoxic potential in human lymphocytes, causing chromosomal aberrations and DNA damage. Further research is needed to fully assess its risks.
Area of Science:
- Toxicology
- Genetics
Background:
- Statins are widely prescribed cholesterol-lowering drugs.
- Understanding the genotoxic potential of statins like rosuvastatin is crucial for patient safety.
Purpose of the Study:
- To evaluate the genotoxic effects of rosuvastatin in human peripheral blood lymphocytes.
- To assess rosuvastatin-induced chromosomal aberrations, micronucleus formation, and DNA damage.
Main Methods:
- In vitro assays including chromosomal aberration (CA), micronucleus (MN), and comet assay were performed.
- Human peripheral blood lymphocytes were exposed to rosuvastatin at various concentrations (0.0625–1 µg/mL).
- Mitotic index (MI) and cytokinesis-block proliferation index were also analyzed.
Main Results:
- Rosuvastatin significantly increased CA frequencies and MN induction across tested concentrations.
- DNA damage, indicated by comet assay parameters, was significantly elevated at several concentrations.
- A decrease in mitotic index was observed at higher rosuvastatin concentrations, suggesting cytotoxicity.
Conclusions:
- Rosuvastatin exhibits cytotoxic and genotoxic (clastogenic/aneugenic) effects in human peripheral lymphocytes.
- These findings highlight the need for further investigation into rosuvastatin's genotoxic potential using diverse test systems.
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