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Research Article

Effects of cypermethrin on antioxidant enzymes and lipid peroxidation of Lake Van fish (Alburnus tarichi)

Pages 51-56 | Received 08 Apr 2019, Accepted 15 Aug 2019, Published online: 05 Sep 2019

References

  • Aebi, H., 1974. Catalase. In: Bergmeyer H. V., ed., Methods in Enzymatic Analysis. Vol. 2. New York: Academic Press, 674–684.
  • Alak, G., et al., 2019. Therapeutic effect of N-acetyl cysteine as an antioxidant on rainbow trout's brain in cypermethrin toxicity. Chemosphere, 221, 30–36.
  • Aldana, L., et al., 2001. α-Tocopherol modulates liver toxicity of the pyrethroid cypermethrin. Toxicology Letters, 125(1–3), 107–116.
  • Barzilai, A., and Yamamoto, K., 2004. DNA damage responses to oxidative stress. DNA Repair, 3(8–9), 1109–1115.
  • Beutler, E., 1984. Red Cell Metabolism: A manual of biochemical methods. (3rd ed.) New York: Grune and Startton.
  • Bonansea, R.I., Wunderlin, D.A., and Amé, M.V., 2016. Behavioral swimming effects and acetylcholinesterase activity changes in Jenynsia multidentata exposed to chlorpyrifos and cypermethrin individually and in mixtures. Ecotoxicology and Environmental Safety, 129, 311–319.
  • Bradbury, S.P., and Coats, J.R., 1989. Comparative toxicology of the pyrethroid insecticides. Reviews of Environmental Contamination and Toxicology, 108, 133–177.
  • Brodeur, J.C., et al., 2016. Toxicities of glyphosate-and cypermethrin-based pesticides are antagonic in the tenspotted livebearer fish (Cnesterodon decemmaculatus). Chemosphere, 155, 429–435.
  • Burr, S.A., and Ray, D.E., 2004. Structure-activity and interaction effects of 14 different pyrethroids on voltage-gated chloride ion channels. Toxicological Sciences, 77(2), 341–346.
  • Çilingir Yeltekin, A., and Oğuz, A.R., 2018. Antioxidant responses and DNA damage in primary hepatocytes of Van fish (Alburnus tarichi, Güldenstadt 1814) exposed to nonylphenol or octylphenol. Drug and Chemical Toxicology, 41(4), 415–423.
  • Davico, C.E., et al., 2018. Stress oxidative and genotoxicity in (Prochilodus lineatus Valenciennes, 1836) Exposure to commercial formulation of insecticide cypermethrin, Drug and chemical toxicology, 1–6.
  • DeMicco, A., et al., 2010. Developmental neurotoxicity of pyrethroid insecticides in zebrafish embryos. Toxicological Sciences, 113(1), 177–186.
  • De Moraes, F.D., et al., 2018. Assessment of biomarkers in the neotropical fish Brycon amazonicus exposed to cypermethrin-based insecticide. Ecotoxicology, 27(2), 188–197.
  • Di Giulio, R.T., and Hinton, D. E., 2008. The toxicology of fishes. Crc Press.
  • Dumitru, G., et al., 2019. Cypermethrin influence on oxidative status and anxious behaviour in paracheirodon innensi species. Revista de Chimmie, 70(1), 202–206.
  • Firat, Ö., and Alici, M.F., 2012. Assessment of pollution in Ataturk Dam Lake (Adiyaman, Turkey) using several biochemical parameters in common carp, Cyprinus carpio L. Bulletin of Environmental Contamination and Toxicology, 89(3), 474–478.
  • Giray, B., Gürbay, A., and Hincal, F., 2001. Cypermethrin-induced oxidative stress in rat brain and liver is prevented by vitamin E or allopurinol. Toxicology Letters, 118(3), 139–146.
  • Jergentz, S., et al., 2005. Assessment of insecticide contamination in runoff and stream water of small agricultural streams in the main soybean area of Argentina. Chemosphere, 61(6), 817–826.
  • Jin, Y., et al., 2010. Oxidative stress response and gene expression with atrazine exposure in adult female zebra fish (Danio rerio). Chemosphere, 78(7), 846–852.
  • John, S., et al., 2001. Protective effect of vitamin E in dimethoate and malathion induced oxidative stress in rat erythrocytes. The Journal of Nutritional Biochemistry, 12(9), 500–504.
  • Kakoolaki, S., et al., 2013, Role of propolis on oxidative stress in fish brain. Basic and Clinical Neuroscience, 4(2), 153.
  • Korkmaz, V., et al., 2018. Comparative evaluation of toxicological effects and recovery patterns in zebrafish (Danio rerio) after exposure to phosalone-based and cypermethrin-based pesticides. Ecotoxicology and Environmental Safety, 160, 265–272.
  • Kutluyer, F., et al., 2016. The in vitro effect of cypermethrin on quality and oxidative stress indices of rainbow trout Oncorhynchus mykiss spermatozoa. Pesticide Biochemistry and Physiology, 128, 63–67.
  • Luo, Y., et al., 2006. 2-chlorophenol induced ROS generation in fish Carassius auratus based on the EPR method. Chemosphere, 65(6), 1064–1073.
  • McCord, J.M., and Fridovich, I., 1969. Superoxide dismutase, Anenzymatic function for erythrocuprein (hemocuprein.). The Journal of Biological Chemistry, 244, 6049–6055.
  • Meenambal, M., et al., 2012. Chelating properties of delonixelata against cypermethrin induced oxidative stress and antioxidant enzyme activity in Cyprinus carpio (Linn.). International Journal of Pharmaceutical & Biological Archive, 3(1), 237–243.
  • Meraj, M., et al., 2017. Alterations in liver marker enzymes and recovery ability of cyprinids as indicators of aquatic pollution. Environmental Science and Pollution Research, 24(23), 19149–19158.
  • Moore, A., et al., 2007. The impact of a pesticide on migratory activity and olfactory function in Atlantic salmon (Salmo salar L.) smolts. Aquaculture, 273(2–3), 350–359.
  • Neelima, P., et al., 2015. Acute toxicity of cypermethrin (25% EC) on nucleic acids (DNA and RNA) in Cyprinus carpio (Linn.). Brain, 5(1.19), 5–27.
  • Neelima, P., et al., 2016. A study on oxygen consumption in a freshwater fish Cyprinus carpio exposed to lethal and sublethal concentrations of cypermethrin (25% Ec). International Journal of Current Microbiology and Applied Sciences, 5(4), 338–346.
  • Nunes, M.E., et al., 2018. Oxidative effects of the acute exposure to a pesticide mixture of cypermethrin and chlorpyrifos on carp and zebra fish–A comparative study. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 206, 48–53.
  • Oğuz, A.R., 2015. Histological changes in the gill epithelium of endemic Lake Van Fish (Chalcalburnus tarichi) during migration from alkaline water to freshwater. North-Western Journal of Zoology, 11(1), 51–57.
  • Özok, N., et al., 2018. Hemato-biochemical responses of Van fish (Alburnus tarichi Guldenstadt, 1814) during sublethal exposure to cypermethrin. Human and Ecological Risk Assessment, 24(8), 2240–2246.
  • Palaniappan, P.R., and Vijayasundaram, V., 2008. FTIR study of arsenic-induced biochemical changes on the liver tissues of freshwater fingerlings Labeo rohita. Romanian Journal of Biophysics, 18, 135–e144.
  • Paravani, E.V., et al., 2018. Cypermethrin: Oxidative stress and genotoxicity in retinal cells of the adult zebrafish. Mutation Research/Genetic Toxicology and Environmental Mutagenesis, 826, 25–32.
  • Paravani, E.V., et al., 2019. Cypermethrin induction of DNA damage and oxidative stress in zebrafish gill cells. Ecotoxicology and Environmental Safety, 173, 1–7.
  • Parker, C.M., et al., 1984. Chronic toxicity and carcinogenicity evaluation of fenvalerate in rats. Journal of Toxicology and Environmental Health, 13(1), 83–97.
  • Patil, V.K., and David, M., 2013. Oxidative stress in freshwater fish, Labeo rohita as a biomarker of malathion exposure. Environmental Monitoring and Assessment, 185(12), 10191–10199.
  • Petrivalsky, M., et al., 1997. Glutathione-dependent detoxifying enzymes in rainbow trout liver: search for specific biochemical markers of chemical stress. Environmental Toxicology Chemistry, 16, 1417–1421.
  • Saha, S., and Kaviraj, A., 2008. Acute toxicity of synthetic pyrethroid cypermethrin to some freshwater organisms. Bulletin of Environmental Contamination and Toxicology, 80(1), 49–52.
  • Slaninova, A., et al., 2009. A review: oxidative stress in fish induced by pesticides. Neuroendocrinology Letters, 30(1), 2.
  • Sarkar, B., et al., 2005. Carbofuran- and cypermethrin-induced histopathological alterations in the liver of Labeorohita (Hamilton) and its recovery. Journal of Applied Ichthyology, 21(2), 131–135.
  • Sayeed, I., et al., 2003. Oxidative stress biomarkers of exposure to deltamethrin in freshwater fish, Channa punctatus Bloch. Ecotoxicology and Environmental Safety, 56(2), 295–301.
  • Stara, A., et al., 2013. Effect of zeta-cypermethrin on common carp (Cyprinus carpio L.). Neuro Endocrinology Letters, 2, 37–42.
  • Sthephanson, R.R., 1982. Aquatic toxicology of cypermethrin. I. Acute toxicity to some freshwater fish and invertebrates in laboratory tests. Aquatic Toxicology, 2, 175–185.
  • Song, Y., et al., 2009. DNA damage and effects on antioxidative enzymes in earthworm (Eisenia foetida) induced by atrazine. Soil Biology and Biochemistry, 41(5), 905–909.
  • Üner, N., et al., 2001. Effects of cypermethrin on antioxidant enzyme activities and lipid peroxidation in liver and kidney of the freshwater fish, Oreochromis niloticus and Cyprinus carpio (L.). Bulletin of Environmental Contamination and Toxicology, 67(5), 0657–0664.
  • Valavanidis, A., et al., 2006. Molecular biomarkers of oxidative stress in aquatic organisms in relation to toxic environmental pollutants. Ecotoxicology and Environmental Safety, 64(2), 178–189.
  • Velisek, J., et al., 2012. Effects of cypermethrin on rainbow trout (Oncorhynchus mykiss). Veterinární Medicína, 51(No. 10), 469.
  • Verma, R.S., Mehta, A., and Srivastava, N., 2007. In vivo chlorpyrifos induced oxidative stress: attenuation by antioxidant vitamins. Pesticide Biochemistry and Physiology, 88(2), 191–196.
  • Viran, R., et al., 2003. Investigation of acute toxicity of deltamethrin on guppies (Poecilia reticulata). Ecotoxicology and Environmental Safety, 55(1), 82–85.
  • Xia, E., et al., 1995. Activities of antioxidant enzymes in various tissues of male fischer 344 rats are altered by food restriction. The Journal of Nutrition, 125(2), 195–201.
  • Yhasmine, W., 2013. Cypermethrin Toxic effect on enzyme activities in freshwater fish (Cyprinus carpio). Advances in Aquaculture and Fisheries Management, 1(9), 94–97.
  • Yonar, M.E., 2013. Protective effect of lycopene on oxidative stress and antioxidant status in Cyprinus carpio during cypermethrin exposure. Environmental Toxicology, 28(11), 609–616.

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