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2016 | 25 | 3 |

Tytuł artykułu

How deltamethrin produces oxidative stress in liver and kidney

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Deltamethrin (DEL) is a synthetic pyrethroid widely used as an insecticide. The aim of our study was to determine the effect of a single exposure of female albino Swiss mice to DEL (at doses of 8.3 mg/kg, 20.75 mg/kg, or 41.5 mg/kg) on parameters of liver and kidney function and activities of antioxidant enzymes in these organs. The activity of alanine transaminase (ALT) in the blood sera of the experimental animals was not significantly elevated after exposure to DEL. Asparagine transaminase (AST) activity was signifi cantly higher in the groups exposed to the moderate and the highest dose of DEL. The levels of creatinine in the blood sera of the experimental animals did not significantly differ among the groups. The activities of superoxide dismuthase (SOD) and glutathione peroxidase (GPx) were significantly reduced in the livers of mice exposed to the highest dose of DEL in comparison with controls. In the kidneys, however, the SOD and GPx activities were significantly elevated after exposure to the highest dose of DEL. In conclusion, DEL produces oxidative stress in the livers and, to a lesser degree, the kidneys of exposed animals.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

25

Numer

3

Opis fizyczny

p.1367-1371,ref.

Twórcy

  • Chair and Department of Hygiene, Medical University of Lublin, Radziwillowska 11, 20-080 Lublin, Poland
autor
  • Chair and Department of Hygiene, Medical University of Lublin, Radziwillowska 11, 20-080 Lublin, Poland

Bibliografia

  • 1. NAZIMEK T., WASAK M., ZGRAJKA W., TURSKI W.A. Content of transfl uthrin in indoor air during the use of electro-vaporizers. Ann. Agric. Environ. Med. 18, 85, 2011.
  • 2. CISAK E., WÓJCIK-FATLA A., ZAJĄC V., DUTKIEWICZ J. Repellents and acaricides as personal protection measures in the prevention of tick-borne diseases. Ann. Agric. Environ. Med. 19 (4), 625, 2012.
  • 3. WHOPES Safety of pyrethroids for public health use. WHO Pesticide Evaluation Scheme. 2005.
  • 4. SHUMAN E.K. Global climate change and infectious diseases. N. Engl. J. Med. 362 (12), 1061, 2010.
  • 5. MALISZEWSKA-KORDYBACH B., SMERCZAK B., KLIMOWICZ-PAWLAS A. Evaluation of the status of contamination of arable soils In Poland with DDT and HCH residues; National and regional scales. Pol. J. Environ. Stud. 23 (1), 139, 2014.
  • 6. KOCUR-BERA K., DUDZIŃSKA M. Spatial conditions of environmental risk posed by obsolete pesticides- case study of the „ Green Lungs of Poland” area. Pol. J. Environ. Stud.23 (3), 763, 2014.
  • 7. Ministry of Agriculture and Rural Development – Report about Annual Pesticide Market Volume, 2011. Available from: www.bip.minrol.gov.pl (accessed 15.10.2014).
  • 8. SODERLUND D.M., CLARK J.M., SHEETS L.P., MULLIN L.S., PICCIORILLO V.J., SARGENT D. Mechanisms of pyrethroid neurotoxicity: implications for cumulative risk assessment. Toxicology 171, 3, 2002.
  • 9. RAY D.E., FORSHAW P.J. Pyrethroid insecticides; poisoning syndromes, synergies, and therapy. J. Toxicol. Clin .Toxicol. 38, 95, 2000.
  • 10. DAVIES T.G., FIELD L.M., USHERWOOD P.N., WILLIAMSON M.S. DDT, pyrethrins, pyrethroids and insect sodium channels. IUBMB Life 59 (3), 151, 2007.
  • 11. ABDEL-RAHMAN A., SHETTY A.K., ABU-DONIA M.B. Subchronic dermal application of N,N-diethyl m-toluamide (DEET) and permethrin to adult rats, alone or in combination, causes diffuse neuronal cell death and cytoskeletal abnormalities in the cerebral cortex in the hippocampus, and Purkinje neuron loss in the cerebellum. Exp. Neurol. 172, 153, 2001.
  • 12. ABDEL-RAHMAN A., DECHKOVSKAIA A.M., GOLDSTEIN L.B., BULLMAN S.H., KHAN W., EL MASRY E.M. Neurological defi cits induced by malathion, DEET, and permethrin, alone or in combination in adult rats. J. Toxicol. Environ. Health. A 67, 331, 2004.
  • 13. CANTALAMESSA F. Acute toxicity of 2 pyrethroids, permethrin and cypermethrin in neonatal and adult rats. Arch. Toxicol., 67, 510, 1993.
  • 14. PATRO N., PATRO I.K. Effects of deltamethrin on granule cell migration during postnatal development of rat cerebellum. Indian. Exp. Biol. 43, 158, 2005.
  • 15. IMAMURA L., HASEGAWA H., KURASHINA K., MATSUNO T., TRUDA M. Neonatal exposure of newborn mice to pyrethroid (permethrin) represses activity-dependent c-Fos mRNA expression in cerebellum. Arch. Toxicol. 76, 392, 2002.
  • 16. CASIDA J.E., UEDA K., GAUGHAN L.C., JAO L.T., SODERLUND D.M. Structure- biodegradability relationships in pyrethroid insecticides. Arch. Environ. Contam. Toxicol. 3, 491, 1975.
  • 17. SODERLUND D.M., CASIDA J.E. Effects of pyrethroid structure on rates of hydrolysis and oxidation by mouse-liver microsomal-enzymes. Pestic. Biochem. Physiol. 7, 391, 1977.
  • 18. SHONO T., OHSAWA K., CASIDA J.E. Metabolism of trans-permethrin and cis-permethrin, trans- cypermethrin, and cis-cypermethrin, and decamethrin by microsomal enzymes. J. Agric. Food Chem. 27, 316, 1979.
  • 19. BORZĘCKI A., NIERADKO-IWANICKA B., PASTERNAK K., BORZĘCKA H. The neprotoxicity evaluation of deltamethrine in experimental animals. Pol. J. Environ. Stud. 14 (II), 461, 2005.
  • 20. MEEKER J.D., BARR D.B., HAUSER R. Pyrethroid insecticide metabolites are associated with serum hormone levels in adult men. Reprod. Toxicol. 27, 155, 2009.
  • 21. ORTON F., ROSIVATZ E., SCHOLZE M., KORTENKAMP A. Widely used pesticideswith previously unknown endocrine activity revealed as in vitro antiandrogens. Environ. Health. Perspect. 119, 794, 2011.
  • 22. JIN Y., LIU J., WANG L., CHEN R., ZHOU C., YANG Y., LIU W., FU Z. Permethrin exposure during puberty has the potential to enantioselectively induce reproductive toxicity in mice. Environ. Int. 42, 144, 2012.
  • 23. VELISEK J., SVOBODOVA Z., PIACKOVA V. Effects of acute exposure to bifenthrin on some haematological,bioochamical and hisopathological parameters of rainbow trout (Oncorhynchus mykiss). Veterinarni Medicina 54 (3), 131, 2009.
  • 24. DAR M.A., KHAN A.M., RAINA R., VERMA P.K., SULTANA M. Effect of repeated oral administration of bifenthrin on lipid peroxidation and anti-oxidant parameters in Wistar rats. Bull. Environ. Contam. Toxicol. 91 (1), 125, 2013.
  • 25. DUBEY N., KHAN A.M., RAIN A.R. Sub-acute deltamethrin and fl uoride toxicity induced hepatic oxidative stress and biochemical alternations in rats. Bull. Environ. Contam. Toxicol. 91 (3), 334, 2013.
  • 26. SIWEK M., SOWA-KUĆMA M., DUDEK D., STYCZEŃ K., SZEWCZYK B., KOTARSKA ., MISZTAL P., PILC A., WOLAK M., NOWAK G. Oxidative stress markers in affective disorders. Pharm. Rep. 65, 1558, 2013.
  • 27. LORENC-KOCI E., CZRNECKA A. Role of nitric oxide in the regulation of motor function. An overview of behavioral, biochemical and histological studies in animal models. Pharm. Rep. 65, 1043, 2013.
  • 28. MUSIK I., KIEŁCZYKOWSKA M., KOCOT J. Comparison of the infl uence of selenium supplementation in organic and inorganic forms on oxidant/antioxidant balance in rat lungs. Bull. Vet. Inst. Pulawy 57, 449, 2013.
  • 29. PERRY J.J.P., SHIN D.S., GETZOFF E.D., TAINER J.A. The structural biochemistry of superoxide dismuthases. Biochim. Biophys. Acta 1804 (2), 245, 2010.
  • 30. PHAM H.C., NAVARRO-DELMASURE C., PHAM H.C., CLAVEL P., VAN HAVERBEKE G., CHEAV S.L. Toxicological studies of deltamethrin. Int. J. Tissue. React. 6, 127, 1984.
  • 31. RUZO LO, CASIDA JE. Metabolism and toxicology of pyrethroids with dihalovinyl substitutes. Environ. Health. Perspect. 21, 285, 1977.
  • 32. ELLIOTT M., FARNHAM A.W., JANES N.F., NEEDHAM P.H., PULMAN D.A. Synthetic insecticide with a new order of activity. Nature 248, 710, 1974.
  • 33. ANADÓN A., MARTINEZ- LARRAŇAGA M.R., FERNANDEZ-CRUZ M., DIAZ M.J., FERNANDEZ M.C., MARTINEZ M.A. Toxokinetics of deltamethrin and its 4’-HO-metabolite in the rat. Toxicol. Appl. Pharmacol. 141 (1), 8, 1996.
  • 34. RICKARD J., BRODIE M.E. Correlation of blood and brain levels of the neurotoxin pyrethroid deltamethin with the onset of symptoms in rats. Pestic. Biochem. Physiol. 23, 143, 1985.
  • 35. ANAND S.S., BRUCKNER J.V., HAINES W.T., MURALIDHARA S., FISHER J.W, PADILLA S. Characterization of deltamethrin metabolism by rat plasma and liver microsomes. Toxicol. Appl .Parmacol. 212, 156, 2006.
  • 36. WIELGOMAS B., NAHORSKI W., CZARNOWSKI W. Urinary concentrations of pyrethroid metabolites in the convenience sample of an urban population of Northern Poland. Int. J. Hyg. Environ. Health. 216, 295, 2013.
  • 37. WIELGOMAS B., PISKUNOWICZ M. Biomonitoring of pyrethroid exposure among rural and urban populations in northern Poland .Chemosphere 93, 2547, 2013.
  • 38. ARTHUR J.R., BOYNE R. Superoxide dismutase and glutathione peroxidase activities in neutrophils from selenium defi cient and copper defi cient cattle. Life Sci. 36, 1569, 1985.
  • 39. PAGLIA D.E., VALENTINE W.N. Studies on the quantitative and qualitative characterization of erythrocyte glutathione peroxidase. J. Lab. Clin. Med., 70, 158, 1967.
  • 40. NIERADKO-IWANICKA B., BORZĘCKI A. Betacyfl uthrin’s influence on memory processes in mice after transient oligemic brain hypoxia. Polish J. Environ. Stud. 13 (II), 350, 2004.
  • 41. NIERADKO-IWANICKA B., KALINIWSKI P., BORZECKI A. Effect of deltamethrin on memory processes in mice after transient brain oligemia. Polish J. Environ. Stud. 15 (2b), 501, 2006.
  • 42. SAXENA R., GARG P. Vitamin E provides protection against in vitro oxidative stress due to pesticide (Chlorpyrifos and Endosulfan) in goat RBC. Bull. Biosci. 1, 1, 2010.
  • 43. GALAL M.K., KHALAF A.A., OGALY H.A., IBRAHIM M.A. Multimechanistic neuroprotective effect of vitamin E against deltamethrin induced brain toxicity. Toxicol. Rep. 2014 http://dx.doi.org/10.1016.j.toxrep.2014.09.008 (accessed 07.10 2014).
  • 44. KRZEPIŁKO A. Effect of selected pyrethroids on concentration of thiol groups in Saccharomyces cerevisiae yeast cell extract. Proceedings of ECCOpole, 2 (2), 451, 2008.
  • 45. POPA-WAGNER A. Alzheimer’s disease pathological factors in ischemic aged brain. In: Pluta R. (Red.) Ischemiareperfusion pathways in Alzheimer’s disease. USA, Nova Science Publishers, Inc., 51, 2007.
  • 46. MUSIK I., KIEŁCZYKOWSKA M., KOCOT J. Comparison of the influence of selenium supplementation in organic and inorganic forms on oxidant/antioxidant balance in rat lungs. Bull. Vet. Inst. Pulawy 57, 449, 2013

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Bibliografia

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