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Original Article

Detection of Superoxide and Peroxynitrite in Model Systems and Mitochondria by the Luminol Analogue L-012

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Pages 259-269 | Received 22 Aug 2003, Published online: 07 Jul 2009

References

  • Hanbauer, I., Cox, G.W. and Wink, D.A. (1994) "Synaptic and extrasynaptic action of free radicals on cell-to-cell signaling", Ann. NY Acad. Sci. 738, 173–180.
  • Ignarro, L.J. (1991) "Heme-dependent activation of guanylate cyclase by nitric oxide: a novel signal transduction mechanism", Blood Vessels 28, 67–73.
  • Suzuki, YJ., Forman, H.J. and Sevanian, A. (1997) "Oxidants as stimulators of signal transduction", Free Radic. Biol. Med. 22, 269–285.
  • Sies, H., Dafre, AL., Ji, Y. and Akerboom, T.P. (1998) "Protein S-thiolation and redox regulation of membrane-bound glutathione transferase", Chem. Biol. Interact. 111–112, 177–185.
  • Ullrich, V, Namgaladze, D. and Frein, D. (2003) "Superoxide as inhibitor of calcineurin and mediator of redox regulation", Toxicol. Lett. 139, 107–110.
  • Chamulitrat, W. and Mason, R.P. (1989) "Lipid peroxyl radical intermediates in the permddation of polyunsaturated fatty acids by lipoxygenase. Direct electron spin resonance investigations", J. Biol. Chem. 264, 20968–20973.
  • Vignais, P.V. (2002) "The superoxide-generating NADPH oxidase: structural aspects and activation mechanism", Cell. Mol. Life Sci. 59, 1428–1459.
  • Sorescu, D., Weiss, D., Lassegue, B., Clempus, RE., Szocs, K., Sorescu, G.P., Valppu, L., Quinn, M.T., Lambeth, J.D., Vega, J.D., Taylor, W.R. and Griendling, K.K. (2002) "Superoxide production and expression of nox family proteins in human atherosclerosis", Circulation 105, 1429–1435.
  • Landmesser, U., Spiekermarm, S., Dikalov, S., Tatge, H., Wilke, R., Kohler, C., Harrison, D.C., Hornig, B. and Drexler, H. (2002) "Vascular oxidative stress and endothelial dysfunction in patients with chronic heart failure: role of xanthine-oxidase and extracellular superoxide dismutase", Circulation 106, 3073–3078.
  • Vasquez-Vivar, J., Kalyanaraman, B. and Martasek, P. (2003) "The role of tetrahydrobiopterin in superoxide generation from eNOS: enzymology and physiological implications", Free Radic. Res. 37, 121–127.
  • Munzel, T., Li, H., Mollnau, H., Hink, U., Matheis, E., Hartmann, M., Oelze, M., Skatchkov, M., Warnholtz, A., Duncker, L., Meinertz, T. and Forstermann, U. (2000) "Effects of long-term nitroglycerin treatment on endothelial nitric oxide synthase (NOS DI) gene expression, NOS DI-mediated superoxide production, and vascular NO bioavailability", Circ. Res. 86, E7—E12.
  • Lenaz, G., Bovina, C., D'Aurelio, M., Fato, R., Formiggini, G., Genova, M.L., Giuliano, G., Pich, M.M., Paolucci, U., Castelli, G.P. and Ventura, B. (2002) "Role of mitochondria in oxidative stress and aging", Ann. NY Acad. Sci. 959, 199–213.
  • Cai, H. and Harrison, D.G. (2000) "Endothelial dysfunction in cardiovascular diseases: the role of oxidant stress", Circ. Res. 87, 840–844.
  • Beckman, J.S. and Koppenol, W.H. (1996) "Nitric oxide, superoxide, and peroxynitrite: the good, the bad, and ugly", Am. J. physiol. 271, C1424—C1437.
  • Kudoh, S., Suzuki, K., Yamada, M., Liu, Q., Nakaji, S. and Sugawara, K. (1999) "Contribution of nitric oxide synthase to human neutrophil chemiluminescence", Luminescence 14, 335–339.
  • Miles, A.M., Bohle, D.S., Glassbrenner, P.A., Hansert, B., Wink, D.A. and Grisham, M.B. (1996) "Modulation of superoxide-dependent oxidation and hydroxylation reactions by nitric oxide", J. Biol. Chem. 271, 40–47.
  • Beckman, J.S. (2002) "Protein tyrosine nitration and peroxy-nitrite", Faseb J. 16, 1144.
  • Sohn, H.Y., Gloe, T., Keller, M., Schoenafinger, K. and Pohl, U. (1999) "Sensitive superoxide detection in vascular cells by the new chemiluminescence dye L-012", J. Vasc. Res. 36,456–464.
  • Nishinaka, Y., Aramaki, Y., Yoshida, H., Masuya, H., Sugawara, T. and Ichimori, Y. (1993) "A new sensitive chemiluminescence probe, L-012, for measuring the pro-duction of superoxide anion by cells", Biochem. Biophys. Res. Commun. 193, 554–559.
  • Imada, I., Sato, E.F., Miyamoto, M., Ichimori, Y., Minamiyama, Y, Konaka, R. and Inoue, M. (1999) "Analysis of reactive oxygen species generated by neutrophils using a chemiluminescence probe L-012", Anal. Biochem. 271, 53–58.
  • Becker, L.B., vanden Hoek, T.L., Shao, Z.H., Li, C.Q. and Schumacker, P.T. (1999) "Generation of superoxide in cardiomyocytes during ischemia before reperfusion", Am. J. Physiol. 277, H2240—H2246.
  • Ballinger, S.W., Patterson, C., Yan, C.N., Doan, R., Burow, D.L., Young, C.G., Yakes, F.M., Van Houten, B., Ballinger, C.A., Freeman, B.A. and Runge, MS. (2000) "Hydrogen peroxide- and peroxynitrite-induced mitochondrial DNA damage and dysfunction in vascular endothelial and smooth muscle cells", Circ. Res. 86, 960–966.
  • Raha, S., McEachern, G.E., Myint, A.T. and Robinson, B.H. (2000) "Superoxides from mitochondrial complex DI the role of manganese superoxide dismutase", Free Radic. Biol. Med. 29, 170–180.
  • Zhao, H., Kalivendi, S., Zhang, H., Joseph, J., Nithipatikom, K., Vasquez-Vivar, J. and Kalyanaraman, B. (2003) "Superoxide reacts with hydroethidine but forms a fluor-escent product that is distinctly different from ethidium: potential implications in intracellular fluorescence detection of superoxide", Free Radic. Biol. Med. 34, 1359–1368.
  • Imada, I., Sato, E.F., Konaka, R., Kasahara, E., Park, A.M. and Inoue, M. (2002) "Analysis of reactive oxygen generation by mitochondrial fractions by a highly sensitive chemilumine-scence probe L012", Suppl. to Free Radic. Biol. Med. 33, S27.
  • Kirsch, M., Lomonosova, E.E., Korth, H.G., Sustmarm, R. and de Groot, H. (1998) "Hydrogen peroxide formation by reaction of peroxynitrite with HEPES and related tertiary amines. Implications for a general mechanism", J. Biol. Chem. 273, 12716–12724.
  • Li, Y., Zhu, H., Kuppusamy, P., Roubaud, V, Zweier, J.L. and Trush, M.A. (1998) "Validation of lucigenin (bis-N-methyl-acridinium) as a chemilumigenic probe for detecting superoxide anion radical production by enzymatic and cellular systems", J. Biol. Chem. 273, 2015–2023.
  • Goldstein, S., Czapsld, G., Lind, J. and Merenyi, G. (2001) "Carbonate radical ion is the only observable intermediate in the reaction of peroxynitrite with CO(2)", Chem. Res. Toxicol. 14, 1273–1276.
  • Meli, R., Nauser, T., Latal, P. and Koppenol, W.H. (2002) "Reaction of peroxynitrite with carbon dioxide: intermediates and determination of the yield of CO3*- and NO2*", J. Biol. Inorg. Chem. 7, 31–36.
  • Daiber, A., Frein, D., Namgaladze, D. and Ulrich, V. (2002) "Oxidation and nitrosation in the nitrogen monoxide/super-oxide system", J. Biol. Chem. 277, 11882–11888.
  • Sawa, T., Akaike, T. and Maeda, H. (2000) "Tyrosine nitration by peroxynitrite formed from nitric oxide and superoxide generated by xanthine oxidase", J. Biol. Chem. 275, 32467–32474.
  • Ichimori, K., Fukahori, M., Nakazawa, H., Okamoto, K. and Nishino, T. (1999) "Inhibition of xanthine oxidase and xanthine dehydrogenase by nitric oxide. Nitric oxide converts reduced xanthine-oxidizing enzymes into the desulfo-type inactive form", J. Biol. Chem. 274, 7763–7768.
  • Houston, M., Chumley, E, Radi, R., Rubbo, H. and Freeman, B.A. (1998) "Xanthine oxidase reaction with nitric oxide and peroxynitrite", Arch. Biochem. Biophys. 355, 1–8.
  • Mollnau, H., Schulz, E., Daiber, A., Baldus, S., Oelze, M., August, M., Wendt, M., Walter, U., Geiger, C., Agrawal, R., Kleschyov, A.L., Meinertz, T. and Munzel, T. (2003) "Nebivolol prevents vascular NOS DI uncoupling in experi-mental hyperlipidemia and inhibits NADPH oxidase activity in inflammatory cells", Arterioscler. Thromb. Vasc. Biol. 23, 615–621.
  • Radi, R., Cassina, A. and Hodara, R. (2002) "Nitric oxide and peroxynitrite interactions with mitochondria", Biol. Chem. 383, 401–409.
  • MacMillan-Crow, L.A., Crow, J.P., Kerby, J.D., Beckman, J.S. and Thompson, J.A. (1996) "Nitration and inactivation of manganese superoxide dismutase in chronic rejection of human renal allografts", Proc. Natl Acad. Sci. USA 93, 11853–11858.

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