122
Views
53
CrossRef citations to date
0
Altmetric
Original

The involvement of nitric oxide in maneb- and paraquat-induced oxidative stress in rat polymorphonuclear leukocytes

, , , &
Pages 849-862 | Received 10 Jun 2008, Published online: 07 Jul 2009

References

  • Koner BC, Bannerjee BD, Ray A. Organochlorine pesticide-induced oxidative stress and immune suppression in rats. Ind J Exp Biol 1998; 36: 395–398
  • Yavuz T, Altuntas I, Delibas N, Yildirim B, Candir O, Cora A, Karahan N, Ibrisim E, Kutsal A. Cardiotoxicity in rats by methidathion and maeliorating effect of vitamins E and C. Hum Exp Toxicol 2004; 23: 323–329
  • Parvez S, Raisuddin S. Copper modulates non-enzymatic antioxidants in the freshwater fish Channa punctata (Bloch) exposed to deltamethrin. Chemosphere 2005; 62: 1324–1332
  • Terzi A, Iraz M, Sahin S, Ilhan A, Idiz N, Fadillioglu F. Protective effect of erdosteine on rotenone-induced oxidant injury in liver tissue. Toxicol Ind Health 2004; 20: 141–147
  • Kale M, Rathore N, John S, Bhatnagar D. Lipid peroxidative damage on pyrethroid exposure and alterations in antioxidant status in rat erythrocytes: a possible involvement of reactive oxygen species. Toxicol Lett 1999; 105: 197–205
  • Testa CM, Sherer TB, Greenamyre JT. Rotenone induces stress and dopaminergic neuron damage in organotypic substantia nigra cultures. Brain Res Mol Brain Res 2005; 134: 109–118
  • McCormack AL, Atienza JG, Johnston LC, Anderson JK, Vu S, Di Monte DA. Role of oxidative stress in paraquat-induced dopaminergic cell degeneration. J Neurochem 2005; 93: 1030–1037
  • Sohn HY, Kwon CS, Kwon GS, Lee JB, Kim E. Induction of oxidative stress by endosulfan and protective effect of lipid soluble antioxidants against endosulfan-induced oxidative damage. Toxicol Lett 2004; 151: 357–365
  • Priydarshi A, Khuder SA, Schaub EA, Priyadarshi SS. Environmental risk factors and Parkinson's disease: a metaanalysis. Environ Res 2001; 86: 122–127
  • Zhang J, Fitsanakis V, Gu G, Jing D, Ao M, Amarnath V, Montine T. Manganese ehtylene-bis-dithiocarbamate and selective dopaminergic neurodegenration in rat: a link through mitochondrial disruption. J Neurochem 2003; 84: 1–11
  • Thiruchelvum M, Richfield EK, Baggs RB, Tank AW, Cory-Slechta DA. The nigrostriatal dopaminergic system as a preferential target of repeated exposures to combined paraquat and maneb: implications for Parkinson's disease. J Neurosci 2000; 20: 9207–9214
  • Thiruchelvam M, McCormack A, Richfield EK, Baggs RB, Tank AW, Di Monte DA, Cory-Slechta DA. Age-related irreversible progressive nigrostriatal dopaminergic neurotoxicity in the paraquat and maneb model of the Parkinson's disease phenotype. Eur J Neurosci 2003; 18: 589–600
  • Cicchetti F, Lapointe N, Roberge-Tremblay A, Saint-Pierre M, Jimenez L, Ficke BW, Gross RE. Systemic exposure to paraquat and maneb models early Parkinson's disease in young adult rats. Neurobiol Dis 2005; 20: 360–371
  • Cory-Slechta DA, Thiruchelvam M, Barlow BK, Richfield EK. Developmental pesticide models of the Parkinson disease phenotype. Environ Health Perspect 2005; 113: 1263–1270
  • Groc L, Bezin L, Foster JA, Jiang H, Jackson TS, Weissmann D, Levine RA. Lipid peroxidation mediated oxidative stress and dopamine neuronal apoptosis in the substantia nigra during development. Neurochem Int 2001; 39: 127–133
  • Patel S, Singh V, Kumar A, Gupta YK, Singh MP. Status of antioxidant defense system and expression of toxicant responsive genes in striatum of maneb- and paraquat-induced Parkinson's disease phenotype in mouse: mechanism of neurodegeneration. Brain Res 2006; 1081: 9–18
  • Blaszczynski M, Litwinska J, Zaborowska D, Bilinski T. The role of respiratory chain in paraquat toxicity in yeast. Acta Microbiol Pol 1985; 34: 243–254
  • Hirai K, Witschi H, Cote MG. Mitochondrial injury of pulmonary alveolar epithelial cells in acute paraquat intoxication. Exp Mol Pathol 1985; 43: 242–252
  • Thakar JH, Hassan MN. Effects of 1-methyl-4-phenyl-1, 2, 3, 6-tetrahydropyridine (MPTP), cyperquat (MPP + ) and paraquat on isolated mitochondria from rat striatum, cortex and liver. Life Sci 1988; 43: 143–149
  • Tomita M. Comparison of one-electron reduction activity against the bipyridylium herbicides, paraquat and diquat, in microsomal and mitochondrial fractions of liver, lung and kidney (in vitro). Biochem Pharmacol 1991; 42: 303–309
  • Bus JS, Aust SD, Gibson JE. Paraquat toxicity: proposed mechanism of action involving lipid peroxidation. Environ Health Perspect 1976; 16: 139–146
  • Castello PR, Drechsel DA, Patel M. Mitochondria are a major source of paraquat-induced reactive oxygen species production in the brain. J Biol Chem 2007; 282: 14186–14193
  • Miller RL, Sun GY, Sun AY. Cytotoxicity of paraquat in microglial cells: involvement of PKC delta- and ERK1/2-dependent NADPH oxidase. Brain Res 2007; 1167: 129–139
  • Fitsanakis VA, Amarnath V, Moore JT, Montine KS, Zhang J, Montine TJ. Catalysis of catechol oxidation by metal-dithiocarbamate complexes in pesticides. Free Radic Biol Med 2002; 33: 1714–1723
  • Beckman JS, Beckman TW, Chen J, Marshall PA, Freeman BA. Apparent hydroxyl radical production by peroxynitrite: Implications for endothelial injury from nitric oxide and superoxide. Proc Natl Acad Sci USA 1990; 87: 1620–1624
  • Berisha HI, Pakbaz H, Absood A, Said SI. Nitric oxide as a mediator of oxidant lung injury due to paraquat. Proct Natl Acad Sci USA 1994; 91: 7445–7449
  • He Y, Imam SZ, Dong Z, Jankovic J, Ali SF, Appel SH, Le W. Role of nitric oxide in rotenone-induced nigro-striatal injury. J Neurochem 2003; 86: 1338–1345
  • El-Gohary M, Awara WM, Nassar S, Hawas S. Deltamethrin-induced testicular apoptosis in rats: the protective effect of nitric oxide synthase inhibitor. Toxicology 1999; 132: 1–8
  • Djukic M, Jovanovic MC, Ninkovic M, Vasiljevic I, Jovanovic M. The role of nitric oxide in paraquat-induced oxidative stress in rat striatum. Ann Agric Environ Med 2007; 14: 247–252
  • Noack H, Possel H, Rethfeldt C, Keilhoff G, Wolf G. Peroxynitrite mediated damage and lowered superoxide tolerance in primary cortical glial cultures after induction of the inducible isoform of NOS. Glia 1999; 28: 13–24
  • Anton PM, Theodorou V, Bertrand V, Eutamene H, Aussenac T, Feyt N, Fioramonti J, Bueno L. Chronic ingestion of a potential food contaminant induces gastrointestinal inflammation in rats: role of nitric oxide and mast cells. Dig Dis Sci 2000; 45: 1842–1849
  • Vitte J, Michel BF, Bongrand P, Gastaut J-E. Oxidative stress level in circulating neutrophils is linked to neurodegenerative diseases. J Clin Immunol 2004; 24: 683–692
  • Gatto EM, Riobo NA, Carreras MC, Chernavsky A, Rubio A, Satz ML, Poderoso JJ. Overexpression of neutrophil neuronal nitric oxide synthase in Parkinson's disease. Nitric Oxide Biol Chem 2000; 4: 534–539
  • Nguyen HX, O'Barr TH, Anderson AJ. Polymorphonuclear leukocytes promote neurotoxicity through release of matrix metalloproteinases, reactive oxygen species, and TNF-α. J Neurochem 2007; Postprint;10.1111/j.1471-4159.2007.04643.x.
  • Zhang J, Benveniste H, Klitzman B, Piantadosi CA. Nitric oxide synthase inhibition and extracellular glutamate concentration after ischemia/reperfusion. Stroke 1995; 26: 298–304
  • Scott JA, McCormack DG. Selective in vivo inhibition of inducible nitric oxide synthase in a rat model of sepsis. J Appl Physiol 1999; 86: 1739–1744
  • Boyum A. Isolation of mononuclear cells and granulocytes from human blood. Scand J Lab Invest 1968; 21(Suppl 97)77–89
  • Sethi S, Singh MP, Dikshit M. Nitric oxide-mediated augmentation of polymorphonuclear free radical generation after hypoxia-reoxygenation. Blood 1999; 93: 333–340
  • Nishikimi M, Appaji N, Yagi K. The occurrence of superoxide anion in the reaction of reduced phenazine methosulfate and molecular oxygen. Biochem Biophys Res Commun 1972; 46: 849–855
  • Sinha AK. Colorimetric assay of catalase. Anal Biochem 1972; 47: 389–394
  • Pabst MJ, Habig WH, Jakoby WB. Glutathione S-transferase assay. J Biol Chem 1974; 249: 7140–7150
  • Bradley PP, Priebat DA, Christensen RD, Rothstein G. Measurement of cutaneous inflammation: estimation of neutrophil content with an enzyme marker. J Invest Dermatol 1982; 78: 206–209
  • Ohkawa H, Oshishi N, Yagi K. Assay of lipid peroxides in animal tissues by thiobarbituric acid reaction. Anal Biochem 1979; 95: 351–358
  • Bradford MA. Rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 1976; 72: 248–254
  • Granger DL, Taintor RR, Read R, Boockvars KS, Hibb JB. Measurement of nitrate and nitrite in biological samples using nitrate reductase and Griess reagent. Methods Enzymol 1996; 268: 142–145
  • Kumar A, Patel S, Gupta YK, Singh MP. Involvement of endogenous nitric oxide in myeloperoxidase mediated benzo(a)pyrene induced polymorphonuclear leukocytes injury. Mol Cell Biochem 2006; 286: 43–51
  • Kanthaswamy AG, Wagner JR. Environmental factors-induced oxidative stress in dopaminergic degeneration: relevance to the etiopathogenesis of Parkinson's disease. Prominent Press. 2000
  • Klaunig JE, Xu Y, Isenberg JS, et al. The role of oxidative stress in chemical carcinogenesis. Environ Health Perspect 1998; 106(Suppl 1)289–295
  • Konstantinova SG, Russanov EM. Studies on paraquat-induced oxidative stress in rat liver. Acta Physiol Pharmacol Bulg 1999; 24: 107–111
  • Niwa Y, Ishimoto K, Kanoh T. Induction of superoxide dismutase in leukocytes by paraquat: correlation with age and possible predictor of longevity. Blood 1990; 76: 835–841
  • Schmuck G, Rohrdanz E, Tran-Thi QH, Kahl R, Schluter G. Oxidative stress in rat cortical neurons and astrocytes induced by paraquat in vitro. Neurotox Res 2002; 4: 1–13
  • Day BJ, Shawen S, Liochev SI, Crapo JD. A metalloporphyrin superoxide dismutase mimetic protects against paraquat-induced endothelial cell injury, in vitro. J Pharmacol Exp Ther 1995; 275: 1227–1232
  • Mollace V, Iannone M, Muscoli C, Palma E, Granato T, Rispoli V, Nistico R, Rotiroti D, Salvemini D. The role of oxidative stress in paraquat induced neurotoxicocity in rats: protection by non-peptidyl superoxide dismutase mimetic. Neurosci Lett 2003; 335: 163–166
  • Thiruchelvam M, Prokopenko O, Cory-Slechta DA, Richfield EK, Buckley B, Mirochnitchenko O. Overexpression of superoxide dismutase or glutathione peroxidase protects against the paraquat + maneb-induced Parkinson disease phenotype. J Biol Chem 2005; 280: 22530–22539
  • Weidaur E, Lehmann T, Ramissch A, Rohrdanz E, Foth H. Response of alveolar type II cells and human lung tumor cells towards oxidative stress induced by hydrogen peroxide and paraquat. Toxicol Lett 2004; 151: 69–78
  • Brown GC. Reversible binding and inhibition of catalase by nitric oxide. Eur J Biochem 1995; 232: 188–191
  • Brunelli L, Yermilov V, Beckman JS. Modulation of catalase peroxidatic and catalatic activity by nitric oxide. Free Radic Biol Med 2001; 30: 709–714
  • Farias-Eisner R, Chaudhuri G, Aeberhard E, Fukuto JM. The chemistry and tumoricidal activity of nitric oxide/hydrogen peroxide and the implications to cell resistance/susceptibility. J Biol Chem 1996; 271: 6144–6151
  • Dobashi K, Pahan K, Chahal A, Singh I. Modulation of endogenous antioxidant enzymes by nitric oxide in rat C6 glial cells. J Neurochem 1997; 68: 1896–1903
  • Hashida K, Sasaki K, Makino N. Interactions of nitric oxide and oxygen in cytotoxicity: proliferation and antioxidant enzyme activities of endothelial cells in culture. Free Radic Res 2000; 33: 147–156
  • Siddiqui A, Ali B, Srivastava S. Effect of mancozeb on hepatic glutathione S-transferase in rat. Toxicol Lett 1993; 68: 301–305
  • Dafre AL, Medeiros ID, Muller IC, Ventura EC, Bainy ACD. Antioxidant enzymes and thiol/disulfide status in the digestive gland of the brown mussel Perna perna exposed to lead and paraquat. Chem Biol Interact 2004; 149: 97–105
  • Barlow BK, Lee DW, Cory-Slechta DA, Opanashuk LA. Modulation of antioxidant defense systems by the environmental pesticide maneb in dopaminergic cells. Neurotoxicol 2005; 26: 63–75
  • Olesen BT, Clausen J, Vang O. Characterization of the transcriptional profile in primary astrocytes after oxidative stress induced by paraquat. Neurotoxicol 2008; 29: 13–21
  • Arimoto T, Bing G. Up-regulation of inducible nitric oxide synthase in the substantia nigra by lipopolysaccharide causes microglial activation and neurodegeneration. Neurobiol Dis 2003; 12: 35–45
  • Barthwal MK, Srivastava N, Dikshit, M. Role of nitric oxide in a progressive neurodegenration model of Parkinson's disease. Redox Rep 2001;6:297–302.
  • Castano A, Herrera AJ, Cano J, Machado A. Lipopolysaccharide (LPS) intranigral injection induced inflammatory reaction and damage in nigrostriatal dopaminergic system. J Neurochem 1998; 70: 1584–1592
  • Liberatore GT, Jackson-Lewis V, Vukosavic S, Mandir AS, Vila M, McAuliffe WG, Dawson VL, Dawson TM, Przedborski S. Inducible nitric oxide synthase stimulates dopaminergic neurodegeneration in the MPTP model Parkinson's disease. Nat Med 1999; 5: 1403–1409
  • Kavya R, Saluja R, Singh S, Dikshit, M. Nitric oxide synthase regulation and diversity: implications in Parkinson's disease. Nitric Oxide 2006;15:280–294.
  • Ebadi M, Sharma SK. Peroxynitrite and mitochondrial dysfunction in the pathogenesis of Parkinson's disease. Antioxd Redox Signal 2003; 5: 319–335
  • Iravani MM, Leung CCM, Sadeghian M, Haddon CO, Rose S, Jenner P. The acute and long term effects of nigral lipopolysaccharide administration on dopaminergic dysfunction and glial cell activation. Eur J Neurosci 2005; 22: 317–330
  • Day BJ, Patel M, Calavetta L, Chang L-Y, Stamler JS. A mechanism of paraquat toxicity involving nitric oxide synthase. Proc Nat Acad Sci USA 1999; 96: 12760–12765
  • Islas-Carbajal MC, Covarrubias A, Grijalva G, Alvarez-Rodriguez A, Armendariz-Borunda J, Rinco n-Sanchez AR. Nitric oxide synthases inhibition results in renal failure improvement in cirrhotic rats. Liver Int 2005; 25: 131–140
  • Wei C-L, Hon W-M, Lee K-H, Khoo H-E. Chronic administration of aminoguanidine reduces vascular nitric ozide production and attenuates liver damage in bile duct-ligated rats. Liver Int 2005; 25: 647–656
  • Eum H-A, Park S-W, Lee S-M. Role of nitric oxide in the expression of hepatic vascular stress genes in response to sepsis. Nitric Oxide 2007; 17: 126–133
  • Lukivskaya O, Patsenker E, Lis R, Buko VU. Inhibition of inducible nitric oxide synthase activity prevents recovery in rat thioacetamide-induced fibrosis reversal. Eur J Clin Invest 2008; 38: 317–325
  • Kumar A, Upadhyay G, Modi DR, Singh MP. The involvement of secondary signaling molecules in cytochrome P-450 1A1-mediated inducible nitric oxide synthase expression in benzo(a)pyrene-treated rat polymorphonuclear leukocytes. Life Sci 2007; 81: 1575–1584
  • Sigfrid LA, Cunningham JM, Beeharry N, Lortz S, Tiedge M, Lenzen S, Carlsson C, Green IC. Cytokines and nitric oxide inhibit the enzyme activity of catalase but not its protein or mRNA expression in insulin-producing cells. J Mol Endocrinol 2003; 31: 509–518
  • Mitra S, Abraham E. Participation of superoxide in neutrophil activation and cytokine production. Biochim Biophys Acta 2006; 1762: 732–741

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.