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Formation of Covalent DNA Adducts by Enzymatically Activated Carcinogens and Drugs In Vitro and Their Determination by 32P-postlabeling
Published on: March 20, 2018
Structure-Activity Relationships for DNA Damage by Alkenylbenzenes in Turkey Egg Fetal Liver
Tetyana Kobets1, Jian-Dong Duan2, Klaus D Brunnemann2
1*Department of Pathology, New York Medical College, Valhalla, New York 10595 and tetyana_kobets@nymc.edu.
Abstract:
Certain alkenylbenzenes (AB), flavoring chemicals naturally occurring in spices and herbs, are established to be cytotoxic and hepatocarcinogenic in rodents. The purpose of the present study was to determine the DNA damaging potential of key representatives of this class using the Turkey Egg Genotoxicity Assay. Medium white turkey eggs with 22- to 24-day-old fetuses received three injections of nine AB with different carcinogenic potentials: safrole (1, 2 mg/egg), methyl eugenol (2, 4 mg/egg), estragole (20, 40 mg/egg), myristicin (25, 50 mg/egg), elemicin (20, 50 mg/egg), anethole (5, 10 mg/egg), methyl isoeugenol (40, 80 mg/egg), eugenol (1, 2.5 mg/egg), and isoeugenol (1, 4 mg/egg). Three hours after the last injection, fetal livers were harvested for measurement of DNA strand breaks, using the comet assay and DNA adducts formation, using the nucleotide(3) (2)P-postlabeling assay. Estragole, myristicin, and elemicin induced DNA stand breaks. These compounds as well as safrole, methyl eugenol and anethole, at the highest doses tested, induced DNA adduct formation. Methyl isoeugenol, eugenol, and isoeugenol did not induce genotoxicity. The genotoxic AB all had the structural features of either a double bond in the alkenyl side chain at the terminal 2',3'-position, favorable to formation of proximate carcinogenic 1'-hydroxymetabolite or terminal epoxide, or the absence of a free phenolic hydroxyl group crucial for formation of a nontoxic glucuronide conjugate. In contrast, methyl isoeugenol, eugenol and isoeugenol, which were nongenotoxic, possessed chemical features, unfavorable to activation.
Insights
Certain flavoring chemicals, alkenylbenzenes (AB), can damage DNA. Estragole, myristicin, and elemicin caused DNA strand breaks, while others formed DNA adducts, indicating genotoxicity. Methyl isoeugenol, eugenol, and isoeugenol were not genotoxic.
Area of Science:
- Toxicology
- Genetics
- Food Chemistry
Background:
- Alkenylbenzenes (AB) are natural flavoring compounds found in spices and herbs.
- Some AB are known to be cytotoxic and hepatocarcinogenic in rodent models.
Purpose of the Study:
- To evaluate the DNA damaging potential of nine key alkenylbenzenes (AB) using the Turkey Egg Genotoxicity Assay.
- To correlate the chemical structure of AB with their genotoxic effects.
Main Methods:
- Medium white turkey eggs (22-24 day fetuses) were injected with nine different AB at varying doses.
- Fetal livers were harvested 3 hours post-injection for analysis.
- DNA strand breaks were measured using the comet assay.
- DNA adducts formation was assessed via the nucleotide (3) (2)P-postlabeling assay.
Main Results:
- Estragole, myristicin, and elemicin induced significant DNA strand breaks.
- Safrole, methyl eugenol, and anethole formed DNA adducts at the highest doses tested.
- Methyl isoeugenol, eugenol, and isoeugenol did not exhibit genotoxicity.
- Genotoxic AB shared structural features like a terminal double bond or lack of a phenolic hydroxyl group.
Conclusions:
- Genotoxicity of AB is linked to specific structural features that facilitate metabolic activation to reactive intermediates.
- The Turkey Egg Genotoxicity Assay is effective in identifying DNA damaging potential of flavoring chemicals.
- Understanding structure-activity relationships aids in assessing the safety of flavoring agents.
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