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Original Article

The Interactions of Superoxide Ion(O2) with Metallo-Porphyrins [(C18TPP)M, M = FE,MN,CO,ZN]; Models for Biological Systems and Superoxide Dismutases

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Pages 75-86 | Published online: 07 Jul 2009

References

  • Sawyer D. T., Valentine J. S. How super is superoxide?. Accounts of Chemical Rescarch. 1981; 14: 393–400
  • McAdam M. E., Fox R. A., Lavclle F., Fielden E. M. A pulse-radiolysis study of the rnanganesecontaining superoxide dismutase from Bacillus Stearotherrnophilus. Biochemical Journal. 1977; 165: 71–74
  • Bull C., Fee J. A. Steady-state kinetic studies of superoxide dismutases: Properties of the iron containing protein. Escherichia coli. Journal of theAmerican Chemical Society 1985; 107: 3295–3304
  • Howie J. K., Sawyer D. T. Manganese(II) and manganese(III) 8-quinolinol complexes. Redox model for mitochondria1 superoxide disrnutase. Journal of theAmerican Chemical Society 1976; 98: 6698–6700
  • Bielski B. H. J., Shiue G. G. Oxygen free radicals and tissue damage. Ciba Foundation Symposium 65. Exccrpta Medica, Amsterdam 1979; 43–56
  • Sawyer D. T., Spencer L., Yamaguchi K., McDowell M. S. Tris(picolinato)manganese(II): A chemical model for the mechanism and function of mitochondrial superoxide disrnutase. Superoxide and Superoxide Dismutare in Chemistry, Biology and Medicine, G. Rotilio. Elsevier, New York 1986; 219–224
  • Sawyer D. T., Roberts J. L., Jr. Experimenta Electrochemistry for Chemists;. Wiley, New York 1974; 4446–339, 144–145, 336
  • Sawyer D. T., Calderwood T. S., Yamaguchi K., Angelis C. T. Synthesis and characterization of tetrarnethylammonium superoxide. Inorganic Chemistry 1983; 22: 2577–2583
  • Yamaguchi K., Calderwood T. S., Sawyer D. T. Corrections and additional insights to the synthesis and characterization of tetramethylammonium superoxide [(Me4N)O2]. Inorganic Chemistry 1986; 25: 1289–1290
  • Badger G. M., Jones R. A., Laslett R. L. Porphyrins; The synthesis of porphyrins by the Rothernund reaction. Australian Journal of Chemistry 1964; 17: 1028–1035
  • Kobayashi H., Higuchi T., Kaizu Y., Osada H., Aoki M. Electronic spectra of tetra-phenylporphinatoiron(III) methoxide. Bulletin of the Chemical Society of Japan 1975; 48: 3137–3141
  • Alder A. D., Longo F. R., Varadi V. Compounds of biological interest (57. Metallopor-phrins). Inorganic Synthesis. 1976; 16: 213–220
  • Traylor P. S., Dolphin D., Traylor T. G. Sterically protected hemins with electronegative substituents: Efficient catalysts for hydroxylation and epoxidation. Journal of Chemical Society. Chemical Communication. 1984; 279–280
  • Hill C. L., Williamson M. M. Structural and electronic properties of sixcoordinate Manganese(III) porphyrin cations. Crystal and molecular structure of bis(N, N-dimethylformarnide)-(tetraphenylporphinato)-manganese(III) perchlorate, [Mn111TPP(DMF)2] + ClO4. Inorganic Chemistry 1985; 24: 2836–2841
  • Tsang P. K. S., Sawyer D. T. Electron-transfer thermodynamics and bonding for the superoxide (O−2), dioxygen (O2). and (OH) adducts of tetrakis(2,6-dichlorophenyl)-porphinato-iron, manganese, and -cobalt in dimethylformamide. Inorganic Chemistry 1990; 29, in press.
  • Tsang P. K. S., Cofré P., Sawyer D. T. Electrochemical oxidation of hydroxide ion in acetonitrile and its facilitation by transition-metal complexes. Inorganic Chemistry 1987; 26: 3604–3609
  • Sawyer D. T., Srivatsa G. S., Bodini M. E., Schaeferand W. P., Wing R. M. Redox chemistry and spectroscopy of toluene-3,4-dithiol (TDTH,) and of its M(TDT)22-/- complexes with zinc(II). copper(II). nickel(II). cobalt(II), iron(II), and manganese(II); formation of a stable dn-(OSR) bond upon oxidation by one electron. Journal of theAmerican Chemical Society. 1986; 108: 936–942
  • Shin K., Kramer S. K., Goff H. M. Base-promoted authoreduction of iron(III) porphyrins in dimethyl sulfoxide solution: Magnetic resonance spectroscopy of hydroxoiron(II) porphyrin complexes. Inorganic Chemistry 1987; 26: 4103–4106
  • Srivatsa G. S., Sawyer D. T. Hydroxide-induced reduction of (tetraphenylporphinato) iron(III) in pyridine. Inorganic Chemistry 1985; 24: 1732–1734
  • Harrison J. F. The electronic and geometric structures of the chromium cations CrF+, CrO+, ON+, and CrC+. Journal of Physical Chemistry. 1986; 90: 3313–3319
  • Sanderson R. T. Electroncgativity and bonding of transitional elements. Inorganic Chemistry. 1986; 25: 3518–3522
  • Di Bella S., Fragala I., Granozzi G. Electronic structure of transition-metal tetracoordi-nated complexes, I. Theoretical ab initio and uv-photoelectron spectroscopy study of palladium(II) and platinurn(II) square-planar acetylacetonate complexes. Inorganic Chemirtry 1986; 25: 3997–4003
  • Low J. J., Goddard W. A., III. theoretical studies of oxidative addition and reductive elimination. 3. C-H and C-C reductive coupling from palladium and platinum bis(phosphine) complexes. Journal of theAmerican Chemical Society 1986; 108: 6115–6128
  • Sawyer D. T. The nature of the bonding and valency for oxygen in its metal compounds. Comments on Inorganic Chcmistry 1987; 6: 103–121
  • Richert S. A., Tsang P. K. S., Sawyer D. T. Ligand-centered oxidation of manganese(II) complexes. Inorganic Chemistry 1988; 27: 1814–1818
  • Sawyer D. T. Electron-transfer thermodynamics, valence-electroil hybridimtion and bonding for iron compounds. Comments on Inorganic Chemistry. 1990; 10: 129–159
  • Richert S. A., Tsang P. K. S., Sawyer D. T. Ligand-centered redox processes for MnL3, FeL3 and CoL3 complexes (L = acetylacetonate. 8-quinolinate. picolinate. 2,2′-bipyridyl, 1,10-phenanth-roline) and for their tetrakis (2.6-dichlorophenyl)porphinato complexes [M(por)]. Inorganic Chemistry 1989; 28: 2471–2475
  • Shirazi A., Goff H. M. Characterization of superoxide-metalloporphyrin reaction products: Effective use of deuterium nmr spectroscopy. Journal of the American Chemical Sociery. 1982; 104: 6318–6322
  • Burstyn J. N., Roe J. A., Miksztal A. R., Shaevity B. A., Lang G., Valentine J. S. Magnetic and spectroscopic characterization of an iron porphyrin peroxide complex. Peroxoferrioctaethylpor-phyrin(l-). Journal of theAmerican Chemical Society 1988; 110: 1382–1388
  • VanAtta R. B., Strouse C. E., Hanson L. K., Valentine J. S. (Peroxotetraphenylpor-phinato]manganex(III) and [chlorotetraphenylporphinato]manganese(II) anions. Syntheses, crystal structures, and electronic structures. Journal of theAmerican Chemical Society 1987; 109: 1425–1434
  • McCandlish E., Miksztal A. R., Nappa M., Sprenger A. Q., Valentine J. S., Strong J. D., Spiro T. G. Reactions of superoxide with iron porphyrins in aprotic solvents. A high spin ferric porphyrin peroxo complex. Journal of theAmerican Chemical Society 1980; 102: 4268–4270
  • Goolsbyand A. D., Sawyer D. T. The electrochemical reduction of superoxide ion and oxidation of hydroxide ion in dimethyl sulfoxide. Analytical Chemistry 1968; 40: 83–86
  • Roberts J. L., Jr., Morrison M. M., Sawyer D. T. Base-induced generation of superoxide ion and hydroxyl radical from hydrogen peroxide. Journal of theAmerican Chemical Society. 1978; 100: 329–330
  • Sawaki Y., Ogata Y. Mechanism of the reaction of nitriles with alkaline hydrogen peroxide. Reactivity of peroxycarboximidic acid and application to superoxide ion reaction. Bullelin of the Chemical Society of Japan 1981; 54: 793–799
  • Valentine J. S., Quinn A. E. Reaction of superoxide with the manganese(III) tetraphenylpor-phine cation. Inorganic Chemistry. 1976; 15: 1977–1999

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