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Advanced 3D Liver Models for In vitro Genotoxicity Testing Following Long-Term Nanomaterial Exposure
Published on: June 5, 2020
Genotoxicity of goniothalamin in CHO cell line
Nasir Umar-Tsafe1, Mohamed Saifulaman Mohamed-Said, Rozita Rosli
1Clinical Genetics Unit, Department of Human Growth and Development, Faculty of Medicine and Health Sciences, Universiti Putra Malaysia, 43400 Serdang, Selangor, Malaysia.
Abstract:
Goniothalamin (GTN) is a styrylpyrrone derivative from Goniothalamus umbrosus and other Annonaceae species. It has been shown to have anti-cancer and apoptosis-inducing properties against various human tumour and animal cell lines. The compound has also been shown to be active in vivo against DMBA-induced rat mammary tumours and was reported as an anti-fertility agent in rats. The aim of our study was to assess the genotoxicity of GTN in CHO cells using the UKEMS guidelines. A metabolic activation fraction (S9) was prepared according to standard methods. The methylthiazoletetrazolium (MTT) screening assay was then carried out to determine the cytotoxicity index (IC50) of GTN. The average IC50 value was 12.45 (+/- 3.63)microM. The mitotic index (MI) assay was then performed to determine the clastogenicity indices (MI(C25), MI(C50) and MI(C100)) of GTN. The chromosome aberration (CA) induction assay using air-dried metaphase spread was then performed to investigate the clastogenic effects of goniothalamin. Benzo[a]pyrene (BaP) and ethylmethanesulphonate (EMS) were used as positive controls in the presence and absence of S9 metabolic activation, respectively. The anti-genotoxicity effect of GTN was also assessed using a combination of GTN and EMS, and GTN and BaP. Dose-responses of CA frequencies were determined for both, the genotoxicity and anti-genotoxicity effects. GTN on its own and when combined with positive controls, was found to induce and enhance CA, respectively. Chromatid and whole chromosome breaks/gaps, as well as interchanges, endoreduplications and ring chromosomes were the main types of aberration induced by GTN. The overall clastogenic effect of GTN was statistically significant. In conclusion, GTN is potentially a genotoxic or clastogenic substance without any anti-genotoxic properties.
Insights
Goniothalamin (GTN), a compound from Annonaceae species, was tested for genotoxicity. Studies found GTN is a clastogenic substance, inducing chromosome aberrations and showing no anti-genotoxic properties.
Area of Science:
- Biochemistry
- Toxicology
- Genetics
Background:
- Goniothalamin (GTN) is a natural compound from Annonaceae species with reported anti-cancer and anti-fertility effects.
- Previous research indicated GTN's potential in cancer treatment and its activity against specific tumors.
Purpose of the Study:
- To evaluate the genotoxicity and clastogenicity of Goniothalamin (GTN) in Chinese Hamster Ovary (CHO) cells.
- To assess potential anti-genotoxicity effects of GTN when combined with known genotoxic agents.
Main Methods:
- Cytotoxicity was determined using the methylthiazole tetrazolium (MTT) assay to find the IC50 value.
- Genotoxicity was assessed via mitotic index (MI) and chromosome aberration (CA) assays following UKEMS guidelines.
- Metabolic activation was performed using a liver fraction (S9); benzo[a]pyrene (BaP) and ethyl methanesulfonate (EMS) served as positive controls.
Main Results:
- The cytotoxicity index (IC50) of GTN was determined to be 12.45 µM.
- GTN significantly induced chromosome aberrations, including breaks, gaps, interchanges, endoreduplications, and ring chromosomes.
- GTN did not exhibit anti-genotoxic properties; instead, it enhanced CA induction when combined with positive controls.
Conclusions:
- Goniothalamin (GTN) is a genotoxic and clastogenic substance.
- The study concludes that GTN possesses significant potential for inducing genetic damage in cells.
- GTN demonstrated no protective effects against genotoxicity, highlighting its hazardous profile.
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