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2002 | 49 | 1 |

Tytuł artykułu

Negatywne oddzialywanie pyretroidow na organizm ssakow

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Treść / Zawartość

Warianty tytułu

Języki publikacji

PL

Abstrakty

EN
Several studies have reported that the pyrethroid are extremely toxic to insects, fishes and other aquatic organisms. These chemicals are carboxylic acid esters with three chirial centers located at carbons 1 and 3 of the cyclopropane ring and at the alpha-carbon of alcohol moiety. All of them are generally recognised as potential neurotoxicants, characterised by low mammalian toxicity. The present study deals with the negative effects of synthetic pyrethroid in mammalian organisms. These insecticides have shown to produce reactive oxygen species and induced oxidative stress in mammalian cells. Numerous studies suggest that pyrethroid insecticides should be able to change enzymes activity and have possible genotoxic activity in mammalian organisms.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

49

Numer

1

Opis fizyczny

s.69-76,bibliogr.

Twórcy

autor
  • Akademia Rolnicza Lublin; ul.Szczebrzeska 102, 22-400 Zamosc

Bibliografia

  • [1] Akhtar N., Kayani S.A., Ahmad M.M., Shahab M. 1996. Insecticide-induced changes in sectory activity of the thyroid gland in rats. J. Appl. Toxicol. 16(5): 397-400.
  • [2] Amer S.H., Aboul-ela E.I. 1985. Cytogenetic effects of pesticides. Induction of micronuclei in mouse hone marrow by the insecticides cypermethrin and rotenone. Mutation Res. 155: 135-142.
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  • [5] Bhunya S.P., Pati P.C. 1990. Effect of deltamethrin, a syntethic pyrethroid, on the induction of chromosome aberrations, micronuclei and sperm abnormalities in mice. Mutagenesis 5: 229-232.
  • [6] Bought M. 2000. Permethrin toxicosis in cats. Veterinary Technican 21(9): 506-508.
  • [7] Brzeski Z., Bienia A. 2000. Zatrucia insektycydami z grupy pyretroidów u ludności wiejskiej. Streszczenia, konferencja naukowa pt. ,,Środki ochrony roślin - środowisko, żywność, zdrowie człowieka", Olsztyn: 7.
  • [8] Campana M.A., Panzeri A.M., Moreno V.J., Dulout F.N. 1999. Genotoxic evaluation of pyrethroid lambda-cyhalothrin using the micronucleus test in erythrocytes of the fish Cheirodon interruptus interruptus. Mutation Res. 438: 155-161.
  • [9] Chauhan L.K., Dikshith T., Sundoraraman S. 1986. Effect of deltamethrin in plant cells. I. Cytological effects on roots meristem of Allium cepa. Mutation Res. 171: 25-30.
  • [10] Davies J.R., Bownson R., Garcia B.J., Bentz Turner A. 1993. Family pesticide use and childhood brain cancer. Arch. Environ. Contam. Toxicol. 24: 87-92.
  • [11] Floodstrom S., Warngard L., Ljungquist S., Ahlborg U. 1988. Inhibition of metabolic co-operation in vitro and enhancement of enzyme altered foci incidence in rat liver by the pyrethroid insecticide fenvalerate. Arch. Toxicol. 61: 218-223.
  • [12] Garey J., Wolff M.S. 1998. Estrogenic and antiprogestagenic activities of pyrethroid insecticides. Bioch. Bioph. Res. Comm. 251 (3): 855-859.
  • [13] Gupta R.K., Mehr Z.A., Korte D.W., Ruledge L.C. 1990. Mutagenic potential of permethrin in Drosophila melanogaster (Diptera: Drosophilidae) sex linked recessive lethal test. J. Econ. Entomol. 83: 721-724.
  • [14] Hoellinger H., Lecorsier A., Sonnier M., Leger C., Do-Cao-Thang, Nguen-Hoang-Nam. 1987. Cytotoxicity, cytogenotoxicity and allergenicity test on certain pyrethroids. Drugs Chemical. Toxicol. 10: 229-310.
  • [15] Kaie M., Rathore N., John S., Deepak B. 1999. Lipid peroxidation and antioxidant enzymes in rat tissues in pyrethroid toxicity: possible involvement of reactive oxygen species. J. Nutrit. Environ. Medicine 9(1): 37-47.
  • [16] Kale M., Rathore N. 1999. The protective effect of vitamin E in pyrethroid-induced oxidative stress in rat tissues. J. Nutrit. Environ. Medicine 9(4): 281-228.
  • [17] Lee S.H., Smith T.J., Knipple D.C., Soderlund D.M. 1999. Mutations in the house fly Vssc1 sodium channel gene associated with super-kdr resistance abolish the pyrethroid sensitivity of Vsscl/tipE sodium channels expressed in Xenopus oocytes. Insect Biochem. Mol. Biol. 29: 185-194.
  • [18] Leng G., Kuhn K.H., Idel H. 1997. Biological monitoring of pyrethroids in blood and pyrethroid metabolites in urine: applications and limitations. Science Total Environ. 199: 173-181.
  • [19] Lutnicka H., Bogacka T., Wolska L. 1999. Degradation of pyrethroids in aquatic ecosystem model. Water Res. 33(16): 3441-3446.
  • [20] Plapp Jr., Frederick W. 1999. Permethrin and the Gulf War syndrome. Archives of Environmental Health 54(5): 312.
  • [21] Pluijmen M., Devron R., Montesano C., Malaveille A., Hautefeuille A., Bartsch H. 1984. Lack of mutagenicity of syntethic pyretroids in Salmonella typhimurium strams and V79 Chinese hamster cell. Mutation Res. 137: 7-15.
  • [22] Polakova H., Vargowa M. 1983. Evaluation of the mutagenic effect of decamethrin: cytogenetic analysis of bone marrow. Mutation Res. 120: 167-171.
  • [23] Różański L. 1992. Przemiany pestycydów w organizmach żywych i środowisku. PWRiL, Warszawa: 119-144.
  • [24] Sies H. 1985. Oxidative stress: damage to intact cells and organs. Philos. Trans. Soc. Lond. Biol. Sci. 17(311): 617-31.
  • [25] Soderlund D.M. 1997. Molecular mechanisms of insecticide resistance. W: Molecular mechanisms of resistance to areochemicals. Sjut V. (red.), Springer, Berlin: 21-56.
  • [26] Stadtman E.R. 1992. Protein oxidation and aging. Science 257: 1220-1224.
  • [27] Surralles J., Xamena N., Creus A., Catalan J., Norppa H., Marcos R. 1995. Induction of micronuclei by five pyrethroid insecticides in whole-blood and isolated human lymphocyte cultures. Mutation Res. 341: 169-184.
  • [28] Theophilidis G., Benaki M., Papalopoluou-Mourikidou S. 1997. Neurotic action of six pyrethroid insecticides on the isolated sciatic nerve of a frog (Rana ridibunda). Camp. Biochem. Physiol. 118C(1): 97-1103.
  • [29] Vais H., Atkinson S., Eldursi N., Devonshire A.L., Williamson M.S., Usherwood P.N.R. 2000. A single amino acid change makes a rat neuronal sodium channel highly sensitive to pyrethroid insecticides. FEBS Letters 471: 135-138.
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  • [31] Woollen B.H., Marsh J.R., Laird W.J.D., Lesser J.E. 1992. The metabolism of cypermethrin in man: differences in urinary metabolite profiles following oral and dermal administration. Xenobiotica 22: 983-991.

Typ dokumentu

Bibliografia

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Identyfikator YADDA

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