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Research Article

Genotoxicity and antioxidant enzyme activity induced by hexavalent chromium in Cyprinus carpio after in vivo exposure

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Pages 451-460 | Received 21 Aug 2012, Accepted 28 Jan 2013, Published online: 27 Mar 2013

References

  • Abbas HH, Ali FK. (2007). Study the effect of hexavalent chromium on some biochemical, cytotoxicological, and histopathological aspects of the Orechromis spp. fish. Pak J Biol Sci 10:3973–82
  • Aebi H. (1984). Catalase in vitro. In: Packer L, ed. Methods in enzymology. Orlando (FL): Academy, 121–6
  • Ahmad I, Maria VL, Oliveira, M, et al. (2006). Oxidative stress and genotoxic effects in gill and kidney of Anguilla anguilla L. exposed to chromium with or without pre-exposure to beta-naphthoflavone. Mutat Res 608:16–28
  • Almroth BC, Sturve J, Berglund A, Förlin L. (2005). Oxidative damage in eelpout (Zoarces viviparus), measured as protein carbonyls and TBARS, as biomarkers. Aquat Toxicol 73:171–80
  • Al-Sabti K, Metcalfe C. (1995). Fish micronuclei for assessing genotoxicity in water. Mutat Res 343:121–35
  • Anderson D, Yu TW, Phillips BJ, Schmezer P. (1994). The effect of various antioxidants and other modifying agents on oxygen-radical-generated DNA damage in human lymphocytes in the comet assay. Mutat Res 307:261–71
  • Ateeq B, Abul FM, Ahmad W. (2005). Detection of DNA damage by alkaline single cell gel electrophoresis in 2,4-dichlorophenoxyacetic-acid- and butachlor-exposed erythrocytes of Clarias batrachus. Ecotoxicol Environ Saf 62:348–54
  • Bennett RO, Dooley JK. (1982). Copper uptake by two sympatric species of Killifish Fundulus heteroclitus (L.) and F. majalis (Walbaum). J Fish Biol 21:381–98
  • Berntssen MHG, Aatland A, Handy RD. (2003). Chronic dietary mercury exposure causes oxidative stress, brain lesions, and altered behavior in Atlantic salmon (Salmo salar) parr. Aquat Toxicol 65:55–72
  • Buschini A, Carboni P, Martino A, et al. (2003). Effects of temperature on baseline and genotoxicant-induced DNA damage in haemocytes of Dreissena polymorpha. Mutat Res 353:81–92
  • Çavaş T, Ergene-Gözükara S. (2005). Induction of micronuclei and nuclear abnormalities in Oreochromis niloticus following exposure to petroleum refinery and chromium processing plant effluents. Aquat Toxicol 74:264–71
  • Çavaş T, Könen S. (2007). Detection of cytogenetic and DNA damage in peripheral erythrocytes of goldfish (Carassius auratus) exposed to a glyphosate formulation using the micronucleus test and the comet assay. Mutagenesis 22:263–8
  • Çavaş T, Könen S. (2008). In vivo genotoxicity testing of the amnesic shellfish poison (domoic acid) in piscine erythrocytes using the micronucleus test and the comet assay. Aquat Toxicol 90:154–9
  • Chevreuil M, Carru AM, Chesterikoff A, et al. (1995). Contamination of fish from different areas of the river Seine (France) by organic (PCB and pesticides) and metallic (Cd, Cr, Cu, Fe, Mn, Pb, and Zn) micro pollutants. Sci Total Environ 162:31–42
  • Collins AR. (2004). The comet assay for DNA damage and repair: principles, applications, and limitations. Mol Biotechnol 26:249–61
  • Danielsson A, Lorentzon R, Larsson SE. (1982). Normal hepatic vitamin-D metabolism in icteric primary biliary cirrhosis associated with pronounced vitamin-D deficiency symptoms. Hepatogastroenterology 29:6–8
  • Das RK, Nanda NK. (1986). Induction or micronuclei in peripheral erythrocyte of fish Heteropneustes fossilis by mitomycin C and paper mill effluent. Mutat Res 175:67–71
  • De Flora S. (2000). Threshold mechanism and site specificity in chromium (VI) carcinogenesis. Carcinogenesis 21:533–41
  • De Lemos CT, Rodel PM, Terra NR. (2001). Evaluation of basal micronucleus frequency and hexavalent chromium effects in fish erythrocytes. Environ Toxicol Chem 20:1320–4
  • Dhawan A, Bajpayee M, Parmar D. (2009). Comet assay: a reliable tool for the assessment of DNA damage in different models. Cell Biol Toxicol 25:5–32
  • Dizdaroglu M. (1985). Formation of an 8-hydroxyguanine moiety in deoxyribonucleic acid on gamma-irradiation in aqueous solution. Biochemistry 24:4476–81
  • Elia AC, Galarini R, Taticchi MI, et al. (2003). Antioxidant responses and bioaccumulation in Ictalurus melas under mercury exposure. Ecotoxicol Environ Saf 55:162–7
  • Farag AM, May T, Marty GD, et al. (2006). The effect of chronic chromium exposure on the health of Chinook salmon (Oncorhynchus tshawytscha). Aquat Toxicol 76:246–57
  • Farah MA, Ateeq A, Ali MN, Ahmad W. (2003). Evaluation of genotoxicity of PCP and 2,4-D by micronucleus test in freshwater fish Channa punctatus. Ecotoxicol Environ Saf 54:25–9
  • Fernandes C, Fernandes A, Monteiro S, Salgado MA. (2007). Changes in plasma electrolytes and gill histopathology in wild Liza saliens from the Esmoriz-Paramos coastal lagoon Portugal. Bull Environ Contam Toxicol 79:301–5
  • Finney DJ. (1971). Probit analysis. Cambridge, UK: Cambridge University Press
  • Flohe L, Gunzler WA. (1984). Assays of glutathione peroxidase. Methods Enzymol 21:105–14
  • Frenzilli G, Scarcelli V, Del Barga I, et al. (2004). DNA damage in eelpout (Zoarces viviparus) from Göteborg harbour. Mutat Res 552:187–95
  • Goodale BC, Walter R, Pelsue SR, et al. (2008). The cytotoxicity and genotoxicity of hexavalent chromium in medaka (Oryzias latipes) cells. Aquat Toxicol 87:60–7
  • Hartmann A, Agurell E, Beevers C, et al. (2003). Recommendations for conducting the in vivo alkaline comet assay. Mutagenesis 18:45–51
  • International Agency for Research on Cancer (IARC). (1990). Chromium, nickel and welding. Monographs on the Evaluation of Carcinogenic Risks to Humans. Vol. 49. Lyon, France: Scientific Publications
  • Kakkar P, Das B,Viswanathan PN. (1984). A modified spectroscopic assay of superoxide dismutase. Ind J Biochem Biophys 21:130–2
  • Kasai H, Tanooka H, Nishimura S. (1984). Formation of 8-hydroxyguanine residues in DNA by X-irradiation. Gann 75:1037–9
  • Klaunig JE, Kamendulis LM. (2004). The role of oxidative stress in carcinogenesis. Annu. Rev Pharmacol Toxicol. 44:239–67
  • Krumschnabel G, Nawaz M. (2004). Acute toxicity of hexavalent chromium in isolated teleost hepatocytes. Aquat Toxicol 70:159–67
  • Kubrak OI, Lushchak OV, Lushchak JV, et al. (2010). Chromium effects on free radical processes in goldfish tissues: comparison of Cr(III) and Cr(VI) exposures on oxidative stress markers, glutathione status and antioxidant enzymes. Comp Biochem Physiol C Toxicol Pharmacol 152:360–70
  • Kuykendall JR, Miller KL, Mellinger KN, Cain AV. (2006). Waterborne and dietary hexavalent chromium exposure causes DNA-protein crosslink (DPX) formation in erythrocytes of largemouth bass (Micropterus salmoides). Aquat Toxicol 78:27–31
  • Langård S. (1990). One hundred years of chromium and cancer: a review of epidemiological evidence and selected case reports. Am J Ind Med 17:189–215
  • Lee RF, Steinert S. (2003). Use of the single cell gel electrophoresis/comet assay for detecting DNA damage in aquatic (marine and freshwater) animals. Mutat Res 544:43–64
  • Li XY, Chung IK, Kim JI, Lee JA. (2005). Oral exposure to Microcystis increases activity-augmented antioxidant enzymes in the liver of loach (Misgurnus mizolepis) and has no effect on lipid peroxidation. Comp Biochem Physiol C Toxicol Pharmacol 141:292–6
  • Li ZH, Li P, Randak T. (2010). Effect of a human pharmaceutical carbamazepine on antioxidant responses in brain of a model teleost in vitro: an efficient approach to biomonitoring. J Appl Toxicol 30:644–8
  • Lowry OH, Rosenbrough NM, Farr AL, Randall RJ. (1951). Protein measurement with folin phenol reagent. J Biol Chem 193:265–75
  • Lushchak OV, Kubrak OI, Lozinsky OV, et al. (2009). Chromium(III) induces oxidative stress in goldfish liver and kidney. Aquat Toxicol 93:45–52
  • Marnett LJ. (2000). Oxyradicals and DNA damage. Carcinogenesis 21:361–70
  • Matsumoto ST. (2003). Toxic effects and genotoxicos of heavy metals, specifically the trivalent and hexavalent chromium [Ph.D. thesis]. Sao Jose do Rio Preto: University Estadual Paulista Julio de Mesquita Filho
  • Matsumoto ST, Mantovani MS, Malaguttii MIA, et al. (2006). Genotoxicity and mutagenicity of water contaminated with tannery effluents, as evaluated by the micronucleus test and comet assay using the fish Oreochromis niloticus and chromosome aberrations in onion root-tips. Genet Mol Biol 29:148–58
  • Monteiro DA, Rantin FT, Kalinin AL. (2009). The effects of selenium on oxidative stress biomarkers in the freshwater characid fish matrinxã, Brycon cephalus (Günther, 1869) exposed to organophosphate insecticide Folisuper 600 BR (methyl parathion). Comp Biochem Physiol C Toxicol Pharmacol 149:40–9
  • Nogueira PR, Lourenco J, Mendo S, Rotchell JM. (2006). Mutation analysis of ras gene in the liver of European eel (Anguilla anguilla L.) exposed to benzo[a]pyrene. Mar Pollut Bull 52:1611–16
  • Nordberg J, Arnér ESJ. (2001). Reactive oxygen species, antioxidants, and the mammalian thioredoxin system. Free Radic Biol Med 31:1287–312
  • Normann C, Moreira JCF, Cardoso VV. (2008). Micronuclei in red blood cells of armored catfish Hypostomus plecotomus exposed to potassium dichromate. Afr J Biotechnol 7:893–6
  • Norppa H, Falck GCM. (2003). What do human micronuclei contain? Mutagenesis 18:221–33
  • OECD. (1992). Guidelines on environment and aid no. 1, good practices for environmental impact assessment of development projects, development assistance committee. Paris: OECD
  • Olibet G, Coccini T, Rossi AD, et al. (1995). Toxicity of chemical elements. [Article in Italian] Ann Ist Super Sanita 31:283–8
  • Pandey S, Ahmad I, Pervez S, et al. (2001). Effect of endosulfan on antioxidants of freshwater fish Channa punctatus Bloch. 1. Protection against lipid peroxidation in liver by copper pre-exposure. Arch Environ Contam Toxicol 41:345–52
  • Papoutsoglou SE, Miliou H, Karakatsouli NP, et al. (2001). Growth and physiological changes in scaled carp and blue tilapia under behavioral stress in mono- and polyculture rearing using a recirculated water system. Aquat Int 9:509–18
  • Parvez S, Raisuddin S. (2006). Effects of paraquat on the freshwater fish Channa punctatus (Bloch): non-enzymatic antioxidants as biomarkers of exposure. Arch Environ Contam Toxicol 50:392–7
  • Patlolla AK, Barnes C, Hackett D, Tchounwou PB. (2009). Potassium dichromate induced cytotoxicity, genotoxicity and oxidative stress in human liver carcinoma (HepG2) cells. Int J Environ Res Public Health 6:643–53
  • Pourahmad M, O’Brien PJ, Jokar F, Daraei B. (2003). Carcinogenic metal induced sites of reactive oxygen species formation in hepatocytes. Toxicol In Vitro 17:803–10
  • Reynaud S, Deschaux P. (2006). The effects of polycyclic aromatic hydrocarbons on the immune system of fish: a review. Aquat Toxicol 77:229–38
  • Ritola O, Livingstone DR, Peters LD, Lindstrom P. (2002). Antioxidant processes are affected in juvenile rainbow trout (Oncorhynchus mykiss) exposed to ozone and oxygen-supersaturated water. Aquaculture 210:1–19
  • Roberts AP, Oris JT. (2004). Multiple biomarker response in rainbow trout during exposure to hexavalent chromium. Comp Biochem Physiol C Toxicol Pharmacol 138:221–8
  • Schmitt M, Gellert G, Ludwig J, Lichtenberg-Frate H. (2005). Assessment of cyto- and genotoxic effects of a variety of chemicals using Saccharomyces cerevisiae. Acta Hydrochimica Hydrobiol 33:56–63
  • Scott MD, Lubin BH, Kuypers FA. (1991). Erythrocyte defense against hydrogen peroxide: preeminent importance of catalase. J Lab Clin Med 118:7–16
  • Shi XL, Dalal NS. (1990). Evidence for a Fenton-type mechanism for the generation of •OH radicals in the reduction of Cr(VI) in cellular media. Arch Biochem Biophys 281:90–5
  • Silva KTU, Pathiratne A. (2008). In vitro and in vivo effects of cadmium on cholinesterases in Nile tilapia fingerlings: implications for biomonitoring aquatic pollution. Ecotoxicology 17:725–31
  • Simoniello MFF, Gigena G, Poletta A, et al. (2009). Alkaline comet assay for genotoxic effect detection in neotropical fish Prochilodus lineatus (Pisces, Curimatidae). Bull Environ Contam Toxicol 83:155–8
  • Sinha S, Gupta AK, Bhatt K, et al. (2006). Distribution of metals in the edible plants grown at Jajmau, Kanpur (India) receiving treated tannery waste water, relation with physicochemical properties of the soil. Environ Monit Assess 115:1–22
  • Sinha S, Mallick S, Misra RK, et al. (2007). Uptake and translocation of metals in Spinacia oleracea L. grown on tannery sludge-amended and contaminated soils: effect on lipid peroxidation, morpho-anatomical changes, and antioxidants. Chemosphere 67:176–87
  • Sturve J, Almroth BC, Forlin L. (2008). Oxidative stress in rainbow trout (Oncorhynchus mykiss) exposed to sewage treatment plant effluent. Ecotoxicol Environ Saf 70:446–52
  • Tice RR, Agurell E, Anderson D, et al. (2000). Single cell gel/comet assay: guidelines for in vitro and in vivo genetic toxicology testing. Environ Mol Mutagen 35:206–21
  • Velma V, Paul BT. (2010). Chromium-induced biochemical, genotoxic, and histopathologic effects in liver and kidney of goldfish, Carassius auratus. Mutat Res 698:43–51
  • Vlahogianni T, Dassenakis M, Scoullos MJ, Valavanidis A. (2007). Integrated use of biomarkers (superoxide dismutase, catalase, and lipid peroxidation) in mussels Mytilus galloprovincialis for assessing heavy metals’ pollution in coastal areas from the Saronikos Gulf of Greece. Marin Pollut Bull 54:1361–71
  • Vutukuru SS. (2005). Acute effects of hexavalent chromium on survival, oxygen consumption, hematological parameters, and some biochemical profiles of the Indian major carp, Labeo rohita. Int J Environ Res Public Health 2:456–62
  • Walker PA, Kille P, Hurley A, et al. (2008). An in vitro method to assess toxicity of waterborne metals to fish. Toxicol Appl Pharmacol 230:67–77
  • Wang XF, Xing ML, Shen Y, et al. (2006). Oral administration of Cr (VI) induced oxidative stress, DNA damage and apoptotic cell death in mice. Toxicology 228:16–23
  • Zayed AM, Terry N. (2003). Chromium in the environment: factors affecting biological remediation. Plant Soil 249:139–56
  • Zhu Y, Wang J, Bai Y, Zhang R. (2004). Cadmium, chromium, and copper induce polychromatocyte micronuclei in carp (Cyprinus carpio L.). Bull Environ Contam Toxicol 72:78–86

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