Dietary exposure to continuous small doses of α-cypermethrin in the presence or absence of dietary curcumin does not induce oxidative stress in male Wistar rats
- PMID: 28962322
- PMCID: PMC5598094
- DOI: 10.1016/j.toxrep.2014.10.025
Dietary exposure to continuous small doses of α-cypermethrin in the presence or absence of dietary curcumin does not induce oxidative stress in male Wistar rats
Abstract
α-Cypermethrin is a widely used insecticide and, at high doses, induces oxidative stress in mammals. Curcumin is an antioxidant phytochemical commonly used for food coloring and flavoring. We aimed to investigate the effects of continuous dietary exposure to low doses of α-cypermethrin, as is the case in exposed humans, on oxidative stress and its potential prevention by dietary curcumin. Four groups of ten male Wistar rats were ad libitum-fed a control diet or identical diets fortified with α-cypermethrin (350 mg/kg diet), curcumin (1000 mg/kg diet), or α-cypermethrin and curcumin (350 and 1000 mg/kg diet, respectively) for 7 weeks. α-Cypermethrin accumulated in adipose tissues and was detectable in kidney, liver, and brains. Dietary α-cypermethrin did not alter concentrations of malondialdehyde, ascorbic and uric acid, retinol, liver damage markers, or the activities of CAT and SOD, but reduced vitamin E in blood. α-Cypermethrin did not affect malondialdehyde or reduced glutathione concentrations in any of the tissues, but significantly increased glutathione disulfide in kidney and subcutaneous adipose tissue. In conclusion, dietary exposure to small doses of α-cypermethrin did not induce oxidative stress in rats and may be less toxic than exposure to comparable quantities administered as single high doses by gastric intubation.
Keywords: ALP, alkaline phosphatase; ALT, alanine transaminase; AST, aspartate aminotransferase; BW, bodyweight; CAT, catalase; Curcumin; Food; GSH, glutathione; GSSG, glutathione disulfide; LD50, median lethal dose; MDA, malondialdehyde; Oxidative stress; Pesticide; Rats; SOD, superoxide dismutase; α-Cypermethrin.
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References
-
- Barr D.B., Olsson A.O., Wong L.Y., Udunka S., Baker S.E., Whitehead R.D., Magsumbol M.S., Williams B.L., Needham L.L. Urinary concentrations of metabolites of pyrethroid insecticides in the general U.S. population: National Health and Nutrition Examination Survey 1999–2002. Environ. Health Perspect. 2010;118:742–748. - PMC - PubMed
-
- Bengmark S., Mesa M.D., Gil A. Plant-derived health: the effects of turmeric and curcuminoids. Nutricion hospitalaria: organo oficial de la Sociedad Espanola de Nutricion Parenteral y Enteral. 2009;24:273–281. - PubMed
-
- Cantalamessa F. Acute toxicity of two pyrethroids, permethrin, and cypermethrin in neonatal and adult rats. Arch. Toxicol. 1993;67:510–513. - PubMed
-
- Eckert G.P., Schiborr C., Hagl S., Abdel-Kader R., Muller W.E., Rimbach G., Frank J. Curcumin prevents mitochondrial dysfunction in the brain of the senescence-accelerated mouse-prone 8. Neurochem. Int. 2013;62:595–602. - PubMed
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