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Original Article

Suppression by Anticancer Agents of Reactive Oxygen Generation from Polymorphonuclear Leukocytes

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Pages 39-53 | Received 24 Mar 1995, Published online: 07 Jul 2009

References

  • Gold J. W.M. Opportunistic fungal infections in patients with neoplastic disease. American Journal of Medicine, 76,458–463 1984
  • Antman K. S., Griffin J. D., Elias A., Socinski M. A., Ryan L., Cannistra S. A., Oette D., Whitley M.E., Frei I II, Schnipper L. E. Effect of recombinant human granulocyte-macrophage colony-stimulating factor on chemotherapy-induced myelosuppression. New England Journal of Medicine 1989; 319: 593–598
  • Babior B. M. Oxygen-dependent microbial killing by phagocytes. New England Journal of Medicine 1978; 298: 659–721
  • Curnutte J. T., Babior B. M. Chronic granuloma-tous disease. Advances in Human Genetics 1987; 16: 229–297
  • Ferrante A. Tumor necrosis factor alpha potentiates neutrophil antimicrobial activity: increased fungicidal activity against Torulopsis grabrata and Candida albicans and associated increases in oxygen radical production and lysosomal enzyme release. Infection and Immunity 1989; 57: 2115–2122
  • Wolfson M., McPhail L. C., Nasrallah V. N., Snydermann R. Phorbol myristate acetate mediates redistribution of protein kinase C in human neutrophils: potential role in the activation of the respiratory burst enzyme. Journal of Immunology 1985; 135: 2057–2062
  • Honeycutt P.J., Niedel J. E. Cytochalasin B enhancement of the diacylglycerol response in formyl peptide-stimulated neutrophils. Journal of Biological Chemistry 1986; 261: 15900–15905
  • Lew D. P. Receptor signalling and intracellular calcium in neutrophil activation. European journal of Clinical Investigation 1989; 19: 338–346
  • Abo A., Pick E., Hall A., Totty N., Teahan C. G., Segal A. W. Activation of the NADPH oxidase involves the small GTP-binding protein p2lracl. Nature 1991; 353: 668–4570
  • Knaus U. G., Heyworth P. G., Evans T., Curnutte J. T., Bokoch G. M. Regulation of phagocyte oxygen production by the GTP-binding protein Rac2. Science 1991; 254: 1512–1515
  • Mizuno T., Kaibuchi K., Ando S., Musha T., Hiraoka K., Takaishi K., Asada M., Nunoi H., Matsuda I., Takai Y. Regulation of the superoxide generating NADPH oxidase by a small GTP-binding protein and its stimulatory and inhibitory GDP/GTP exchange proteins. Journal of Biological Chemistry 1992; 267: 10215–10218
  • Akimaru K., Utsumi T., Sato E. F., Klostergaard J., Inoue M., Utsumi K. Role of tyrosyl phosphorylation in neutrophil priming by tumor necrosis factor-α and granulocyte colony stimulating factor. Archives of Biochemistry and Biophysics 1992; 298: 703–709
  • Rollet E., Caon A. C., Roberge C. J., Liao N. W., Malawista S. E., McColl S. R., Naccache P. H. Tyro-sine phosphorylation in activated human neutrophils. Comparison of the effects of different classes of agonists and identification of the signaling pathways involved. Journal of Immunology 1994; 153: 353–363
  • Dusi S., Donini M., Rossi F. Tyrosine phosphorylation and activation of NADPH oxidase in human neutrophils: a possible role for MAP kinases and for a 75 kDa protein. Biochemical Journal 1994; 304: 243–250
  • Sumimoto H., Kage Y., Nunoi H., Sasaki H., Nose T., Fukumaki Y., Ohno M., Minakami S., Takeshige K. Role of Src homology 3 domains in assembly and activation of the phagocyte NADPH oxidase. Proceedings of the National Academy of Sciences of the U.S.A 1994; 91: 5345–5349
  • Conley N. S., Yarbro J. W., Ferrori H. A., Zeilder R. B. Bleomycin increases superoxide anion generation by pig peripheral alveolar macrophages. Molecular Pharmacology 1986; 30: 48–52
  • Ueta E., Osaki T., Yoneda K., Yamamoto T. Upregulation of respiratory burst of polymorphonuclear leukocytes by a bleomycin derivative, peplomycin. Free Radical Research 1995; 22: 533–544
  • Weiner L. M., Hudes G. R., Kitson J., Walczak J., Watts P., Litwin S., O'Dwyer P. J. Preservation of immune effector cell function following administration of a dose-intense 5-fluorouracil-chemotherapy regimen. Cancer Immunology, Immunotherapy 1993; 36: 185–190
  • Gan X. H., Jewett A., Bonavida B. Activation of human peripheral-blood-derived monocytes by cis-diamminedichloroplaium: enhanced tumoricidal activity and secretion of tumor necrosis factor-alpha. Natural Immunity and Cell Growth Regulation 1992; 11: 144–155
  • Boyum A. Isolation of mononuclear cells and granulocytes from human blood. Isolation of mono-nuclear cells by one centrifugation and of granulocytes by combining centrifugation and sedimentation at 1 g. Scandinavian Journal of Clinical and Laboratory Investigation 1968; 97(Supplement)77–89
  • Duc Dodon M., Gazzoloand L., Quash G. A. Cellular myeloperoxidase activity in human monocytes stimulated by hyposialylated immunoglobulins and rheumatoid factors. Immunology 1984; 52: 291–297
  • Sasada M., Kubo A., Nishimura T., Kakita T., Moriguchi T., Yamamoto K., Uchino H. Can-didacidal activity of monocyte-derived human macrophages: relationship between candida killing and oxygen radical generation by human macrophages. Journal of Leukocyte Biology 1987; 41: 289–294
  • Cumutte J. T., Whitten D. M., Babior B. M. Defective superoxide production by granulocytes from patients with chronic granulomatous disease. New England Journal of Medicine 1974; 290: 593–597
  • Sasada M., Johnston R. J., Jr. Macrophage-microbicidal activity, correlation between phagocytosis-associated oxidative metabolism and killing of candida by macrophages. Journal of Experimental Medicine 1980; 152: 85–98
  • Ueta E., Osaki T., Yoneda K., Yamamoto T. Functions of salivary polymorphonuclear leukocytes (SPMNs) and peripheral blood polymorphonuclear leukocytes (PPMNs) from healthy individuals and oral cancer patients. Clinical Immunology and Immunopathology 1993; 66: 272–278
  • Ichinose Y., Hara N., Motohiro A., Noge S., Ohta M., Yagawa K. Influence of chemotherapy on superoxide anion-generating activity of polymorphonuclear leukocytes in patients with lung cancer. Cancer 1986; 58: 1663–1667
  • Graham R. C., Jr., Karnovsky M. J., Shafer A. W., Glass E. A., Karnovsky M. L. Metabolic and morphological observations on the effect of surface-active agents of leukocytes. Journal of Cell Biology 1967; 32: 629–647
  • Kakinuma K., Minakami S. Effects of fatty acids on superoxide radical generation in leukocytes. Biochimica et Biophysica Acta 1978; 538: 50–59
  • Repine J. E., White J. G., Clawson C. C., Holmes B. M. The influence of phorbol myristate acetate on oxygen consumption by polymorphonuclear leukocytes. Journal of Laboratory and Clinical Medicine 1974; 83: 911–920
  • Henson P. M., Oades Z. G. Stimulation of human neutrophils by soluble and insoluble immunoglobulin aggregates. Secretion of granule constituents and increased oxydation of glucose. Journal of Clinical Investigation 1975; 56: 1053–1061
  • Rossi F., Zatti M., Patriarca P., Cramer R. Effect of specific antibodies on the metabolism of guinea pig polymorphonuclear leukocytes. Journal of the Reticulo-endothelial Society 1971; 9: 45–67
  • Romeo D., Jug M., Zabucchi G., Rossi F. Perturbation of leukocyte metabolism by nonphagocytosable concanavalin A-coupled beads. FEBS Letters 1974; 42: 90–93
  • Romeo D., Zabucchi G., Miani N., Rossi F. Ion movement across leukocyte plasma membrane and excitation of their metabolism. Nature 1975; 253: 542–544
  • Berton G., Zeni L., Cassattella M. A., Rossi F. Gamma interferon is able to enhance the oxidative metabolism of human neutrophils. Biochemical and Biophysical Research Communications 1986; 138: 1276–1282
  • Borish L., Rosenbaum R., Albury L., Clark S. Activation of neutrophils by recombinant interleukin 6. Cellular Immunology 1989; 121: 280–289
  • Yuo A., Kitagawa S., Ohsaka A., Ohta M., Miyazono K., Okabe T., Urabe A., Saito M., Takaku F. Recombinant human granulocyte colony-stimulating factor as an activator of human granulocytes: potentiation of responses triggered by receptor-mediated agonists and stimulation of C3bi receptor expression and adherence. Blood 1989; 74: 2144–2149
  • Yuo A., Kitagawa S., Suzuki I., Urabe A., Okabe T., Saito M., Takaku F. Tumor necrosis factor as an activator of human granulocytes: otentiation of the metabolisms triggered by the Ca2+ -mobihzing agonists. Journal of Immunology 1989; 142: 1678–1684
  • Dooley D. C., Takahashi T. The effect of osmotic stress on the function of the human granulocyte. Experimental Hematology 1981; 9: 731–741
  • Harwood A. E., Cambier J. C. B cell antigen receptor cross-linking triggers rapid PKC independent activation of p21ras. Journal of Immunology 1993; 151: 4513–4522
  • Lazarus A. H., Kawauchi K., Rapoport M. J., Delovitch T. L. Antigen-induced B lymphocyte activation involves the p21ras and ras GAP signaling pathway. Journal of Experimental Medicine 1993; 178: 1765–1769
  • Nielsen M., Svejgaard A., Skov S., Odum N. Interleukin-2 induces tyrosine phosphorylation and nuclear translocation of stat3 in human T lymphocytes. European Journal of Immunology 1994; 24: 3082–3086
  • Tanaka N., Asao H., Ohbo K., Ishii N., Takeshita T., Nakamura M., Sasaki H., Sugamura K. Physical association of JAKl and JAK2 tyrosine kinases with the interleukin 2 receptor p and y chains. Proceedings of the National Academy of Sciences of the United States of America 1994; 91: 7271–7275
  • Johnston J. A., Kawamura M., Kirken R. A., Chen Y. Q., Blake T. B., Shibuya K., Ortaldo J. R., McVicar D. W., Oshea J. J. Phosphorylation and activation of the Jak-3 Janus kmase in response to interleukin-2. Nature 1994; 370: 151–153
  • Jhle J., Witthuhn B. A., Quelle F. W., Yamamoto K., Thierfelder W. E., Kreider B., Silvennoinen O. Signaling by the cytokine receptor superfamily: JAKs and STATs. Trens in Biochemical Sciences 1994; 19: 222–227
  • Darnell J. E., Ker I. M., Stark G. R. Jak-STAT pathways and transcriptional activation in response to IFNs and other extracellular signaling proteins. Science 1994; 264: 1415–1421

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