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Research Article

Reactive Oxygen Metabolite Production is Inhibited by Histamine and H 1 -antagonist Dithiaden in Human PMN Leukocytes

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Pages 975-980 | Published online: 07 Jul 2009

  • Smith, J.A. (1994) "Neutrophils, host defense, and inflammation: a double-edged sword", J. Leukoc. Biol. 56, 672-686.
  • Benbarek, H., Mouithys-Mickalad, A., Deby-Dupont, G., Deby, C., Grulke, S., Nemmar, A., Lamy, M. and Serteyn, D. (1999) "High concentrations of histamine stimulate equine polymorphonuclear neutrophils to produce reactive oxygen species", Inflamm. Res. 48, 594-601.
  • Leino, L. and Lilius, E.M. (1990) "Histamine receptors on leukocytes are expressed differently in vitro and ex vivo", Int. Arch. Allergy Appl. Immunal. 91, 30-35.
  • White, M.V. and Kaliner, M.A. (1988) "Histamine", In: Galin, J.I., Goldstein, I.M. and Snyderman, R., eds, Inflammation: Basic Principles and Clinical Correlates (Raven Press, New York), pp 169-193.
  • Mellqvist, U.H., Hansson, M., Brune, M., Dahlgren, C., Hermodsson, S. and Hellstrand, K. (2000) "Natural killer cell dysfunction and apoptosis induced by chronic myelogenous leukemia cells: role of reactive oxygen species and regulation by histamine", Blood 96, 1961-1968.
  • Hellstrand, K., Brune, M., Naredl, P., Mellqvist, U.H., Hansson, M., Gehlsen, G.R. and Hermodsson, S. (2000) "Histamine a novel approach to cancer immunotherapy", Cancer Investig. 18, 347-355.
  • Baroody, E.M. and Naclerio, R.M. (2000) "Antiallergic effects of Hi-antagonists", Allergy 55, 17-27.
  • Matés, J.M., Pérez-Goméz, C. and Bianca, M. (2000) "Chemical and biochemical activity of free radicals "scavengers" in allergic diseases", Clin. Chim. Acta 296, 1-15.
  • Umeki, S. (1992) "Effects of anti-allergic drugs on human neutrophil superoxide-generating NADPH-oxidase", Biochem. Pharmacol. 45, 1109-1117.
  • Dahlgren, C. (1987) "Difference in extracellular radical release after chemotactic factor and calcium ionophore activation of the oxygen radical-generating system in human neutrophils", Biochim. Biophys. Acta 930, 33-38.
  • Lundqvist, H. and Dahlgren, C. (1996) "Isoluminol-enhanced chemiluminescene: a sensitive method to study the release of Superoxide anion from human neutrophils", Free Radic. Biol. Med. 20, 785-792.
  • Dahlgren, C. and Karlsson, A. (1999) "Respiratory burst in human neutrophils", J. Immunol. Methods 232, 3-14.
  • Jancinovä, V, Drâbikovâ, K., Nosäl', R. and Danihelovâ, E. (2000) "Platelet-dependent modulation of polymorphonuclear leukocyte chemiluminescence", Platelets 11, 278-285.
  • Oldenburg, P.A., Sundqvist, I.M. and Sehlin, J. (2000) "Different effects of glucose on extracellular and intracellular respiratory burst response in normal human neutrophils activated with soluble agonist fMet-Leu-Phe", Diabetic Med. 17, 532-537.
  • Briheim, G., Stendahl, O. and Dahlgren, C. (1984) "Intra- and extracellular events in luminol-dependent chemiluminescence of polymorphonuclear leukocytes", Infect. Immun. 45, 1-5.
  • Hasegawa, H., Suzuki, K., Nakaji, S. and Sugawara, K. (1997) "Analysis and assessment of the capacity of neutrophils to produce reactive oxygen species in a 96-well microplate format using lucigenin- and luminol-dependent chemiluminescence", J. lmmunol. Methods 210, 1-10.
  • Allen, R.C. (1986) "Phagocytic leukocyte oxygenation activities and chemiluminescence: a kinetic approach to analysis", Methods Enzymol. 133, 449-493.
  • Ginsburg, I., Misgav, R., Gibbs, F.D., Varani, J. and Kohen, R. (1993) "Chemiluminescence in activated human neutrophils: role of buffers and scavengers", Inflammation 17, 227-243.
  • Saniabadi, A.R. and Nakano, M. (1993) "Improved preparation of leukocytes for chemiluminescence study of human phagocytic leukocyte-generated reactive oxygen species", J. Biolumin. Chemilumin. 8, 207-213.
  • Kopprasch, S., Kohl, M. and Graessler, J. (1998) "Different effects of exogenous horseradish peroxidase on luminolamplified chemiluminescence induced by soluble and particulate stimuli in human neutrophils", J. Biolumin. Chemilumin. 13, 267-271.
  • McNally, J.A. and Bell, A.L. (1996) "Myeloperoxidase-based chemiluminescence of polymorphonuclear leukocytes and monocytes", J. Biolumin. Chemilumin. 11, 99-106.
  • Ozaki, Y, Kume, S. and Ohashi, T. (1984) "Effects of histamine agonists and antagonists on luminol-dependent chemiluminescence of granulocytes", Agents Actions 15, 182-188.
  • Burde, R., Seifert, R., Buschhauer, A. and Schultz, G. (1989) "Histamine inhibits activation of human neutrophils and HL-60 leukemic cells via H2-receptors", Naunyn-Schmiedeberg's Arch. Pharmacol. 340, 671-678.
  • Ching, T.L., Koelemij, J.G. and Bast, A. (1995) "The effect of histamine on the oxidative burst of HL60 cells before and after exposure to reactive oxygen species", Inflamm. Res. 44, 99-104.
  • Francis, J.W., Todd, 3rd, R.F., Boxer, L.A. and Petty, H.R. (1991) "Histamine inhibits cell spreading and C3bi receptor clustering and diminishes hydrogen peroxide production by adherent human neutropils", J. Cell. Physiol. 147, 128-137.
  • Jancinovâ, V, Mâjekovâ, M., Nosâl', R. and Petrikovâ, M. (1996) "Inhibition of platelet functions by cationic amphiphilic drugs in relation to their physico-chemical properties", Blood Coagul. Fibrinolysis 7, 191-193.
  • Taniguchi, K., Masuda, Y. and Takanaka, K. (1991) "Inhibitory effects of histamine H1 receptor blocking drugs on metabolic activation of neutrophils", J. Pharmacobio-Dyn. 14, 87-93.
  • Nosâl', R., Jancinovâ, V. and Danihelovâ, E. (1997) "The H1-histamine antagonist dithiaden inhibits human platelet function in vitro", Platelets 8, 175-180.
  • Nosâl', R., Jancinovâ, V. and Petrikovâ, M. (1995) "The H1-histamine receptor antagonist dithiaden inhibits stimulated platelet aggregation, malondialdehyde formation and thromboxane production in vitro", Inflamm. Res. 44, S14-S15.
  • Lindena, J., Burkhardt, H. and Dwenger, A. (1987) "Mechanisms of non-opsonized zymosan-induced and luminolenhanced chemiluminescence in whole blood and isolated phagocytes", J. Clin. Chem. Clin. Biochem. 25, 765-778.
  • Hazan, I., Dana, R., Granot, Y. and Levy, R. (1997) "Cytosolic phospholipase A2 and its mode of activation in human neutrophils by opsonized zymosan. Correlation between 42/44 kDa mitogen-activated protein kinase, cytosolic phospholipase A2 and NADPH-oxidase", Biochem. J. 326, 867-876.
  • Shiose, A. and Sumimoto, H. (2000) "Arachidonic acid and phosphorylation synergistically induce a conformational change of p47phox to activate the phagocyte NADPH-oxidase", J. Biol. Chem. 275, 13793-13801.
  • Hellstrand, K., Asca, A., Dahlgren, C. and Hermodsson, S. (1994) "Histaminergic regulation of NK cells. Role of monocyte-derived reactive oxygen metabolites", J. Immunol. 153, 4940-4947.
  • Lojek, A., Ciz, M., Slavikovâ, H., Duskovâ, M., Vondrâcek, J., Kubala, L., Râcz, I. and Hamar, J. (1997) "Leukocyte mobolization, chemiluminescence response, and antioxidative capacity of the blood in intestinal ischemia and reperfusion", Free Radic. Res. 27, 359-367.
  • Lojek, A., Cerny, J., Nemec, P., Nicovsky, J., Soska, V, Ciz, M., Slavikovâ, H. and Kubala, L. (1998) "Phagocyte-induced oxidative stress in patients with haemodialysis treatment and organ transplantation", Biofactors 8, 165-168.

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