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RESEARCH PRODUCT
Oxidative stress and DNA damage in agricultural workers after exposure to pesticides
Vera FilettiErmanno VitaleConcettina Di NasoVenerando RapisardaCaterina LeddaDiana CinàGianluca ParavizziniEmanuele CannizzaroIvo Iavicolisubject
AntioxidantDNA repairThiobarbituric acidDNA damagemedicine.medical_treatmentOxidative phosphorylation010501 environmental sciencesPharmacologyToxicologymedicine.disease_cause01 natural sciencesAgricultural workerlcsh:RC963-96903 medical and health scienceschemistry.chemical_compoundAgricultural workersTBARSMedicineDiseasePesticides030304 developmental biology0105 earth and related environmental sciencesCancer0303 health sciencesbusiness.industryResearchPublic Health Environmental and Occupational HealthROSPesticidePesticidechemistryBiomonitoringlcsh:Industrial medicine. Industrial hygienebusinessSafety ResearchOxidative stressdescription
Abstract Background Recent epidemiological studies on workers describe that exposure to pesticides can induce oxidative stress by increased production of free radicals that can accumulate in the cell and damage biological macromolecules, for example, RNA, DNA, DNA repair proteins and other proteins and/or modify antioxidant defense mechanisms, as well as detoxification and scavenger enzymes. This study aimed to assess oxidative stress and DNA damage among workers exposed to pesticides. Methods For this purpose, 52 pesticide exposed workers and 52 organic farmers were enrolled. They were assessed: the pesticide exposure, thiobarbituric acid reactive substances (TBARS), total glutathione (TG), oxidized glutathione levels (GSSG), and 8-oxo-7,8-dihydro-2′-deoxyguanosine (8-oxodG), levels. Results Correlation between pesticide exposure was positively associated with high TBARS and 8-oxodG levels (p < 0.001). A negative association was founded with TG and GSSG and pesticide exposure. Conclusions The present investigation results seem to indicate a mild augment in oxidative stress associated with pesticide exposure, followed by an adaptive response to increase the antioxidant defenses to prevent sustained oxidative adverse effects stress.
year | journal | country | edition | language |
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2021-01-07 |