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Original Article

Section Reviews; Anti-infectives: Section Review Anti-infectives: Natural mediators of host-defence: The role of H2O2 in the regulation of bacteriostasis

Pages 1013-1020 | Published online: 03 Mar 2008

References to Primarv Literature

  • CROSS AR, JONES OT: Enzymatic mechanisms of super-oxide production. Btochim. Biophys. Acta(1991) 1057:281–298.
  • WOOD P: Microg,lia: a review. Drug News & Perspectives(1994) 7:138–157.
  • HALLIWELL B, GUTTERIDGE JMC: Role of free racilc21sand catalytic metal ions in human disease. In: Methods In Enzymology. Packer L, Glazers A (Eds.), New York (1990) 186:1–85.
  • LUNEC J: Free radicals: their involvement in disease processes. Ann. din. Biochem. (1990) 27:173–182.
  • NAQLTI A, CHANCE B: Reactive oxygen intermediates in biochemistry. Ann. Rev. Biochem. (1986) 55:137–166.
  • CADENAS E: Biochemistry of oxygen toxicity. Ann. Rev. Biochem. (1989) 58:79–110.
  • PRYOR WA: The role of free radical reactions in biologi-cal systems. In: Free Radicals in Biology. Academic Press, New York (1976):1–49.
  • TURRENS JF, BOVERIS A: Generation of superoxide an-ion by the NADH dehydrogenase of bovine heart mito-chondria. Biochem. J. (1980) 191:421–427.
  • HYSLOP PA, ZHANG Z, PEARSON DV, PHEBUS, LA: Meas-urement of striatal 11202 by microdialysis following global forebrain ischemia and reperfusion in the rat: correlation with the cytosolic potential off:1202in vitro. Brain Res. (1995) 671:181–186.
  • TENOVER FC, MCGOWAN JE, Jr.: Reasons for the emer-gence of antibiotic resistance. Am. J. Med. Sc!. (1996) 311:9–16.
  • DE VERA ME, SIMMONS, RL: Antibiotic-resistant entero-cocci and the changing face of surgical infections. Arch. Stag. (1996) 131:338–342.
  • CURNUTTE JT: Chronic granulomatous disease: the solv-ing of a clinical riddle at the molecular level Clin. Immunol. Immunopathol. (1993) 67:S2–15.
  • Molecular Basis of Oxidative Damage by Leukocytes. Jesaitis AJ, Dratz EA (Eds.), CRC Press, Boca Raton, Florida (1991).
  • GöTZ ME, KeNIG G, RLEDERER P, YOUDIM MBH: Oxida-tive stress: free radical production in neuronal degen-eration. Pharmacol. Ther. (1994) 63:37–122.
  • BAST A, HEENEN GRMM, DOLELMAN CJA: Oxidants andantioxidants: state of the art. Am. J. Med. (1991) 91:3C-1-53S.
  • CROSS AR, PARKINSON JF, JONES OT: The superoxide-generating oxitiase of leukocytes. NADPH-dependent reduction of flavin and cytochrome b in solubilized preparations. Biochem. J. (1984) 223:337–344.
  • PARKOS CA, COCHRANE CG, SCHMITT M, JESAITIS AJ:Regulation of the oxidative response of human granu-locytes to chemoattractants. No evidence for stimulated traffic of redox enzymes between endo and plasma membranes. J. Biol. Chem. (1985) 260:6541–6547.
  • ROOS D: The involvement of oxygen radicals in micro-bial mechanisms of leukocytes and macrophages. Kiln. Wochenschr. (1991) 69:975–980.
  • ELLIS JA, CROSS AR, JONES OT: Studies on the electron-transfer mechanism of the human neutrophil NADPH oxidase. Biochem. J. (1989) 262:575–579.
  • JESAMS AJ, BUESCHER ES, HARRISON D et al.: Ultra-struc-tural localization of cytochrome bin the membranes of resting and phagocytosing human granulocytes. J. Clin. Invest. (1990) 85:821–835.
  • HURST JK, BARRE I II. WCJ: Leukocytic oxygen activationand microbicidal oxidative toxins. Critical Rev. Biochem. & MoL Biol. (1989) 24:271–328.
  • FORMAN HJ, THOMAS MJ: Oxidant production and bac-tericidal activity of phagocytes. Ann. Rev. Physiol. (1986) 48:669–680.
  • GINSBURG I: The biochemistry of bacteriaysis: para-doxes, facts and myths. Microbiol. Sci. (1988) 5:137–142.
  • CECH P, LEHRER RI: Phagolysosomal pH of human neutrophils. Blood (1984) 63:88–92.
  • RADI R, BECKMAN J, BUSH KM, FREEMAN BA: Peroxyni-trite-induced membrane lipid peroxidation: the cytoso-lk potential of superoxide and nitric oxide. Arch. Biochem. Biophys. (1991) 288:481–487.
  • PACELLI R, WINK DA, COOK JA et al.: Nitric oxide poten-tiates hydrogen peroxide-induced killing of Es-cbericbia coli. J. Exp. Med. (1995) 182:1469–1479.
  • HALLIWELL B: Reactive oxygen species in living systems: source, biochemistry, and role in human disease. Am. J. Med. (1991) 91:14-22S.
  • HALLIWELL B, GUTTERIDGE JM: Biologically relevant metal ion-dependent hydroxyl radical generation. An update. FEBS Lett. (1992) 307:108–112.
  • MCKENNA SM, DAVIES, KJA: The inhibition of bacterial growth by hypochlorous acid. Biochem.J. (1988) 254:685–692.
  • WINTERBOURN CC, VAN DEN BERG JJ, ROTTMAN E, KUYPERS FA: Chlorohydrin formation from unsatu-rated fatty acids reacted with hypochlorous acid. Arch. Biochem. Biophys. (1992) 296:547–555.
  • NATHAN, C: Neutrophil activation on biological sur-faces. J. din. Invest. (1987) 80:1550–1560.
  • BRIHEIM G, STENDAHL O, DAHLGREN C: Infra- and extracellular events in lu.minol-dependent chemilumi-nescence of polymorpho-nuclear leukocytes. Infection & Immunity (1984) 45:1–5.
  • SHAPPELL SB, TOMAN C, ANDERSON DC et al.: Mac-1 (CD11b/CD18) mediates adherence-dependent hydro-gen peroxide production by human and canine neutro-phi's. J. Immunol. (1990) 144:2702–2711.
  • OKAMURA N, ISHIBASHI S, TAKANO T: Evidence for bactericidal activity of polymorphonuclear leukocytes without phagocytosis. J. Biochem. (Tokyo.) (1979) 86:469–475.
  • IHARA T, YAMAWAKI K, FUJIWARA T et al.: A flow cy-tometric method for measurement of hydrogen perox-ide generation by pediatric polymorphonuclear leukocytes stimulated by Staphylococcus aureus and Escbericbia colt. Acta Paediatr.Jpn. (1994) 36:244–249.
  • HYSLOP PA, SKLAR LA: A sensitive Huorometric assay for production of hydrogen peroxide by human neutro-phils. Ann. Biochem. (1984):280–286.
  • BRIHEIM G, FOLLIN P, SANDSTEDT S, DAHLGREN C:Relationship between intracellularly and extracellu-larly generated oxygen metabolites from primed poly-morphonuclear leukocytes. Inflammation (1989) 13:455–464.
  • ANDERSON BO, BROWN JM, HARKER HA: Mechanisms ofneutrophil-mediated tissue injury. J. Surg. Res. (1991) 51:170–179.
  • MUNDI H, BJORKSTEN B, SVANBORG C, OHMAN L, DAHLGREN C: Extracelhdar release of reactive oxygen species from human neutrophiLs upon interaction with Escbericbia coli strains causing renal scarring. Infection & Immunity (1991) 59:4168–4172.
  • KOWNATZKI E, UHRICH S: Production of superoxide anion and hydrogen peroxide by human neutrophik granulocytes during chemotactic migration towards f-Met-Leu-Phe, C5a, leukotriene 84, monocyte-derived chemotaxin/11-8 and platelet-activating factor. Int. Arch. Allergy Appl. Immunol. (1990) 93:344–349.
  • SCHUBERT J, WILMER JW: Does hydrogen peroxide exist 'free' in biological systems? Free Radical Biol. & Med. (1991) 11:545–555.
  • CANTONI O, BRANDI G, SALVAGGIO L, CATTABENI F:Molecular mechanisms of hydrogen peroxide cyto-toxicity. Ann. Inst. Super. Sanita (1989) 25:69–73.
  • HYSLOP PA, HINSHAW DB, HALSEY WA, Jr. et al.: Mecha-nisms of oxidant mediated cell injury. The glycolytic and mitochondria' pathways of ADP phosphorylation are major intracelluisr targets inactivated by hydrogen peroxide. J. Biol. Chem. (1988) 263:1665–1675.
  • COCHRANE CG: Mechanism of cell damage by oxidants.In: The Molecular Basis of Oxidative Damage by Leukocytes. Jesaitis AJ, Dratzs EA (Eds.), Boca Raton (1992):149–162.
  • TOTH KM, HARLAN JM, BEEHLER CJ et al.: Di-methyhhiourea prevents hydrogen peroxide and neu-trophil mediated damage to lung endothelia cells in vitro and disappears in the process. Free Radical Biol. Med. (1989) 6:457–466.
  • BALDRY MGC: The bactericidal, f-ungiddal and sporici-dal properties of hydrogen peroxide and peracetic add. J. Appi. Bacteriol. (1983) 54:417–423.
  • BRANDI G, FIORANI M, PIEROTrl C et al.: Morphological changes inEscbericbia coil cells exposed to low or high concentrations of hydrogen peroxide. Microbiol. & Im-munol. (1989) 33:991–1000.
  • MCKENNA SM, DAVIES, KJ: The inhibition of bacterialgrowth by hypochlorous acid. Possible role in the bactericidal activity of phagocytes. Biochem. J. (1988) 254:685–692.
  • CANTONI O, GUIDARELLI A, SESTILI P et al.: L-Histidine-mediated enhancement of hydrogen peroxide-induced cytotoxicity: relationships between DNA single/double strand breakage and cell killing. Pharmacol. Res. (1994) 29:169–178.
  • CLIFFORD DP, REPINE, JE: Hydrogen peroxide mediatedkilling of bacteria. Mol. Cell. Biochem. (1982) 49:143–149.
  • HYSLOP PA, HINSHAW DB, SCRAUFSTAITER IU et al.:Hydrogen peroxide as a potent bacteriostatic antibiotic: implications for host defence. Free Radical Biol. Med. (1995) 19:31–37.
  • WARD PA, JOHNSON KJ, TILL GO: Animal models of oxidant lung injury. Respiration (1986) 30\(Supp1.1):5–12.
  • KINNULA VL, WHORTON AR, CHANG L-Y, CRAPO JD: Regulation of hydrogen peroxide generation in cul-tured endothelial cells. Am. J. Respir. Cell Mol. Biol. (1992) 6:175–182.
  • VARMA S, DEVAMANOHARAN PS: Excretion of hydrogenperoxide in human urine. Free Radical Res. Comm. (1990) 8:73–78.
  • BHUYAN KC, BHUYAN DK: Regulation of hydrogen peroxide in eye humors: effect of 3-amino-1H-1,2,4-tria-zole on catalase and glutathione peroxiclase of rabbit eye. Biochim. & Biophys. Acta (1977) 497:641–651.
  • SOBEL JD, REINHART H: Antibacterial host factors in the urinary tract. Adv. Intern. Med. (1991) 36:131–150.
  • SCHAEI-14ER AJ, JONES JM, AMUNDSEN SK: Bacterial effect of hydrogen peroxide on urinary1ract pathogens. Appl. Environ. Microbia (1980) 40:337–340.
  • VARMA S, DEVAMANOHARAN PS: Hydrogen peroxide inhuman blood. Free Radical Res. Comm. (1991) 14:125–131.
  • CANTONI O, GUIDARELLI A, GIACOMONI PU, CATTABENI F: L-histidine-mediated enhancement of hydrogen per-oxide induced cytotoxicity: relationships between sin-gle/double strand breakage and cell killing. Pharmacol. Res. (1994) 29:169–178.
  • IMLAY JA, LINN S: Bimodal pattern of killing of DNA-re-pair-defective or anoxically grown Escbericbia coil by hydrogen peroxide. J. Bacteriol. (1986) 166:519–527.
  • CANTONI O, BRANDI G, SCHIAVANO GF, ALBANO A, CATTABENI F: Lethality of hydrogen peroxide in wild type and superoxide dismutase mutants of Escbericbia coil. (A hypothesis on the mechanism of H202-induced Inactivation of Escbericbia coil). Chem. Biol. Interact. (1989) 70:281–288.
  • SCHRAUFSTATTER IU, HYSLOP PA, HINSHAW DB et al.:Hydrogen peroxide-induced injury of cells and its pre-vention by inhibitors of poly(ADP-ribose) polymerase. Proc. Natl. Acad. Sci. USA (1986) 83:4908–4912.
  • JACKSON JH, GAJEWSKI E, SCHRAUFSTAI thR IU et al.: Damage to the bases in DNA induced by stimulated human neutrophils. J. Clin. Invest. (1989) 84:1644–1649.
  • HINSHAW DB, MILLER MT, OMANN GM, BEALS TF, HYS-LOP PA: A cellular model of oxidant-mediated neuronal Injury. Brain Res. (1993) 615:13–26.
  • SPRAGG RG, HINSHAW DB, HYSLOP PA, SCHRAUFSTAT-TER IU, COCHRANE CG: Alterations in adenosine triphosphate and energy charge in cultured endothelial and P388D1 cells after oxidant injury. J. Clin. Invest. (1985) 76:1471–1476.
  • DEMPLE B, HARRISON L: Repair of oxidative damage to DNA: enzymology and biology. Ann. Rev. Biochem. (1994) 63:915–948.
  • FARR SB, KOGOMA, T: Oxidative stress responses in Escbericbia Coil and Salmonella Typlsimurium. Microbiol. Rev. (1991) 55:561–585.
  • SCHRAUFSTATTER IU, HINSHAW DB, HYSLOP PA, SPRAGG RG, COCHRANE CG: Glutathione cycle activity and pyridine nucleotide levels in oxidant- induced injury of cells. J. Clin. Invest. (1985) 76:1131–1139.
  • YOSHINAGA K, YAMAMOTO K, YOSHIOKA H, HASEGAWA K: DNA damage by low concentration of hydrogen peroxide. Agric. Biol. Chem. (1989) 53:835–836.
  • ANANTHASWAMY HN, EISENSTARK A: Repair of hydro-gen peroxide-induced single-strand breaks in Es-cbericbia coli deoxyribonucleic acid. J. Bacteria (1977) 130:187–191.
  • PRISE, KM, DVIES S, MICHAEL BD: Cell killing and DNA damage in Chinese hamster V79 cells treated with hydrogen peroxide. Int.J. Radial. Biol. (1989) 55:583–592.
  • ZHANG Q-M, YONEI S, KATO M: Multiple pathways for repair of oxidative DNA damages caused by X rays and hydrogen peroxide inE coll. Radial. Res. (1992) 132:334–338.
  • STORZ G, TARTAGLIA LA, AMES BN: The oxyR regulon. Anionic van Loeeuwenhoek (1990) 58:157–161.
  • ALTUVIA 5, ALMIRON M, HUISMAN G, KOLTER R, STORZ G: The dps promoter is activated by OxyR during growth and by ULF and silicas in stationary phase. Mol. Microbia (1994) 13:265–272.
  • CLOPTON DA, SALTMAN P: Low-level oxidative stress causes cell-cycle specific arrest in cultured cells. Bio-chem. Biophys. Res. Comm. (1995) 210:189–196.
  • WIESE AG, PACIFICI RE, DAVIES KJA: Transient adapta-tion to oxidative stress in mammalian cells. Arch. Bio-chem. Biophys. (1995) 318:231–240.
  • GRANSDEN WR, EYKYN SJ, PHILLIPS I: Bacteremia due to Escbericbia coil: a study of 861 episodes. Rev. Infect. Dis. (1990) 12:1008–1018.
  • SMITH J, SCHRIFT A: Phylogenic distribution of glu-tathione peroxidase. Comp. Biochem. Physiol. (1979) 63B:39–44.
  • GREENBERG JT, DEMPLE B: Glutathione in Escbericbia coil is dispensable for resistance to H202 and gamma radiation. Bacteriology (1986) 168:1026–1029.
  • MA M, EATON JW: Multicellular oxidant defence in unicellular organisms. Proc. Natl. Acad. Sci. USA (1992) 89:7924–7928.
  • SPITZ DR, LI GC: Heat-induced cytotoxicity in H202-re-sistant Chinese hamster fibroblasts. J. Cell. Physiol.(1990) 142:255–260.
  • MOCALI A, CALDINI R, CHEVANNE M, PAOLETTI F: Induc-tion, effects and quantification of sublethal oxidative stress by hydrogen peroxide on cultured human fi-broblasts. Expt. Cell Res. (1995) 216:388–395.
  • SPITZ DR, ELWELL JH, SUN Y et al.: Oxygen toxicity in control and H202-resistant Chinese hamster fibroblast cell lines. Arch. Biochem. Biophys. (1990) 279:249–260.

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