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Original Article

Potential Role of the Peroxidase-Dependent Metabolism of Serotonin in Lowering the Polymorphonuclear Leukocyte Bactericidal Function

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Pages 61-68 | Received 03 May 1994, Published online: 07 Jul 2009

References

  • Tobler A., Koeffler H. P. Myeloperoxidase: localisation, structure, and function. Blood Cell Biochemistry, J. R. Harris. Plenum Publishing Corporation. 1991; 3: 255–288
  • Klebanoff S. J. Phagocyte cells: products of oxygen metabolism. Inflammation Basic Principles and Clinical Correlates, J. I. Gallin, I. M. Golstein, R. Snyderman. Raven Press Ltd, New York 1988; 391–444
  • Clark R. A., Klebanoff S. J. Myeloperoxidase-mediated platelet release reaction. The Journal of Clinical Investigations 1979; 63: 177–183
  • Salvemini D., Botting R. Modulation of platelet function by free radicals and free radical scavengers. Trends in Pharmacological Sciences 1993; 14: 36–42
  • Clark R. A., Klebanoff S. J. Neutrophil-platelet interaction mediated by myeloperoxidase and hydrogen peroxide. The Journal of Immunology 1980; 124: 399–405
  • Athinson D., White M. V., Kaliner M. A. Hista-mine and serotonin. Inflammation Basic Principles and Clinical Correlates 2nd edition, J. I. Gallin, I. M. Golstein, R. Snyderman. Raven Press Ltd, New York 1992; 193–209
  • Muller-Peddinghaus R. In vitro determination of phagocyte activity by luminol and lucigenin amplified chemiluminescence. International Journal of Immunopharmacology 1984; 6: 455–466
  • Faulkner K., Fridovich I. Luminol and lucigenin as detectors for O2−−. Free Radical Biology & Medicine 1993; 15: 447–451
  • Tosi M., Hamedani A. A rapid, specific assay for superoxide release from phagocytes in small volumes of whole blood. American Journal of Clinical Pathology 1992; 97: 566–573
  • Markert M., Andrews P. C., Babior B. M. Measurement of O2−− production by human neutrophils. Methods in Enzymology, L. Packer. Academic Press, Inc, Orlando San Diego San Francisco Sào Paulo 1984; 105: 358–364
  • Kettle A. J., Gedye C. A., Winterbourn C. C. Superoxide is an antagonist of antiinflammatory drugs that inhibit hypochlorous acid production by myelo-peroxidase. Biochemical Pharmacology 1993; 45: 2003–2010
  • Huether G., Reimer A., Schmidt F., Schuff-Wermer P., Brudny M. M. Oxidation of indole nucleus of 5-hydroxy tryptamine and formation of dimers in the presence of peroxidase and H2O2. Journal of Neural Transmission 1990; 32(Suppl)249–257
  • Halliwell B., Gutteridge J. Formation of a thiobarbituric-acid-reactive substance from deoxyribose in the presence of iron salts. The role of superoxide and hydroxyl radicals. Federation of European Biological Society Letters 1981; 128: 347–352
  • Panasenko O. M., Evgina S. A., Aidyraliev R. K., Sergienko V. I., Vladimirov Y. A. Peroxidation of human blood lipoproteins induced by exogenous hypo-chlorite or hypochlorite generated in the system of 'myeloperoxidase + H2O2 + Cl−'. Free Radical Biology & Medicine 1994; 16: 143–148
  • Salman-Tabcheh S., Rabgaoui N., Torreilles J. Neutrophil-catalysed dimerisation of tyrosyl peptides. Free Radical Research Communications 1993; 19: 217–227

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