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Updated: Apr 16, 2026

Generation of a Mouse Spontaneous Autoimmune Thyroiditis Model
Published on: March 17, 2023
Dry olive leaf extract counteracts L-thyroxine-induced genotoxicity in human peripheral blood leukocytes in vitro
Dijana Žukovec Topalović1, Lada Živković1, Andrea Čabarkapa1
1Department of Biology and Human Genetics, Institute of Physiology, Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, 11000 Belgrade, Serbia.
Abstract:
The thyroid hormones change the rate of basal metabolism, modulating the consumption of oxygen and causing production of reactive oxygen species, which leads to the development of oxidative stress and DNA strand breaks. Olive (Olea europaea L.) leaf contains many potentially bioactive compounds, making it one of the most potent natural antioxidants. The objective of this study was to evaluate the genotoxicity of L-thyroxine and to investigate antioxidative and antigenotoxic potential of the standardized oleuropein-rich dry olive leaf extract (DOLE) against hydrogen peroxide and L-thyroxine-induced DNA damage in human peripheral blood leukocytes by using the comet assay. Various concentrations of the extract were tested with both DNA damage inducers, under two different experimental conditions, pretreatment and posttreatment. Results indicate that L-thyroxine exhibited genotoxic effect and that DOLE displayed protective effect against thyroxine-induced genotoxicity. The number of cells with DNA damage, was significantly reduced, in both pretreated and posttreated samples (P < 0.05). Comparing the beneficial effect of all tested concentrations of DOLE, in both experimental protocols, it appears that extract was more effective in reducing DNA damage in the pretreatment, exhibiting protective role against L-thyroxine effect. This feature of DOLE can be explained by its capacity to act as potent free radical scavenger.
Insights
L-thyroxine causes DNA damage, but olive leaf extract (DOLE) offers protection. This study shows DOLE
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Thyroid hormones influence metabolism and can induce oxidative stress and DNA damage.
- Olive leaf extract (Olea europaea L.) is rich in antioxidants with potential health benefits.
Purpose of the Study:
- To assess the genotoxicity of L-thyroxine.
- To investigate the antioxidant and antigenotoxic effects of a standardized oleuropein-rich dry olive leaf extract (DOLE) against DNA damage.
Main Methods:
- The comet assay was used to evaluate DNA damage in human peripheral blood leukocytes.
- DOLE was tested against L-thyroxine and hydrogen peroxide-induced DNA damage under pre-treatment and post-treatment conditions.
Main Results:
- L-thyroxine demonstrated genotoxic effects, causing DNA strand breaks.
- DOLE significantly reduced DNA damage induced by L-thyroxine in both pre-treated and post-treated leukocytes.
- The protective effect of DOLE was more pronounced in the pre-treatment group.
Conclusions:
- L-thyroxine is genotoxic.
- DOLE possesses significant antigenotoxic properties, acting as a potent free radical scavenger.
- Olive leaf extract shows promise for mitigating L-thyroxine-induced DNA damage.
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