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Original Article

Superoxide Dismutase (SOD) and the Paf-Antagonist (BN 52021) Reduce Small Intestinal Damage Induced by Ischemia-Reperfusion

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Pages 725-735 | Published online: 07 Jul 2009

References

  • Droy-Lefaix M. T., Drouet Y. Importance of oxygen derived free radicals in ischemia with reperfusion gastric mucosal rat damage. Gastroenterology 1987; 92: 1376
  • Droy-Lefaix M. T., Drouet Y., Géraud G., Schatz B. Radicaux libres et tube digestif. Cahiers de Nutrition et de Diététique. 1987; XXII: 44–50
  • Droy-Lefaix M. T., Drouet Y., Géraud G., Braquet P. Involvement of platelet-activating factor in rat ischemia-reperfusion gastric damage. Ginkgolides: chemistry biology. pharmacology and clinical perspectives, P. Braquet. Prous Science Publishers, Barcelona 1988; 563–574
  • Granger D. N., Rutili G., Mc Cord J. M. Superoxide radicals in feline intestinal ischemia. Gastroenterology 1981; 81: 22–29
  • Granger D. N., Hollwarth M. E., Parks D. A. Ischemia-reperfusion injury: role of oxygen-derived free radicals. Acta Physiologica Scandinavica 1986; 548: 47–63
  • Mc Cord J. M., Roy R. S. The pathophysiology of superoxide: roles in inflammation and ischemia. Canadian Journal of Physiology and Pharmacology 1982; 60: 1346–1352
  • Parks D. A., Bulkley G. B., Granger D. N. Role of oxygen derived free radicals in digestive tract diseases. Surgery 1983; 94: 415–422
  • Briggs R. T., Robinson J. M., Karnovsky M. L., Karnovsky M. J. Superoxide production by polymorphonuclcar leukocytes. Histochemistry 1986; 84: 371–378
  • Grisham M. B., Hernandez L. A., Granger D. N. Xanthine oxidase and neutrophil infiltration in intestinal ischemia. American Journal of Physiology 1986; 251: G567–G574
  • Hoffstein S. T., Gennaro D. E., Manzi R. M. Neutrophils may directly synthetize both H2O2 and O2-since surface stimuli induce their release in stimulus specific ratios. Inflammation 1985; 9: 425–437
  • Braquet P., Touqui L., Shen T. Y., Vargaftig B. B. Perspectives in platelet-activating factor research. Pharmacological Reviews 1987; 39: 97–145
  • Braquet P., Etienne A., Mencia-Huerta J. M., Clostre F. Effects of the specific platelet activating factor antagonists, BN 52021 and bN 52063 on various experimental gastrointestinal ulcerations. European Journal of Pharmacology. 1988; 150: 269–276
  • Rosam A., Wallace J. L., Whittle J. R. Potent ulcerogenic actions of platelet-activating factor on the stomach. Nature 1986; 319: 54–56
  • Wallace J. L., Whittle B. J. R. Picomole doses of platelet-activating factor predispose the gastric mucosa to damage by topical irritants. Prostaglandins. 1986; 31: 989–998
  • Gay J. C., Beckman J. K., Zabuy K. A., Lukens J. N. Modulation of neutrophil oxidative responses of soluble stimuli by platelet-activating factor. Blood 1986; 67: 931–936
  • Worthen G. S., Seccombe J. F., Clay K. L., Guthrie L. A., Johnston R. B. The priming of neutrophils by lipopolysaccharide for production of intracellular platelet-activating factor. Potential role in mediation of enhanced superoxide secretion. Journal of Immunology. 1988; 140: 3553–3559
  • Mac Dowell E. M., Trump B. F. Histologic fixatives suitable for diagnostic light and electron microscopy. Archives of Pathology and Laboratory Medicine 1976; 100: 405–414
  • Bitteran H., Aoki W., Lefer A. M. Anti shock erects of human superoxide dismutase in splanchnic artery occlusion (SAO) shock. Proceedings of the Society for Experimental Biology and Medicine 1988; 188: 265–271
  • Ueda S., Yoshikawa T., Takahashi S., Ichikawa H., Yasuda M., Oyamada H., Tanigawa T., Sugino S., Kondo M. Role of free radicals and lipid peroxidation in gastric mucosal injury induced by ischemia-reperfusion in rats. Scandinavian Journal of Gastroenterology 1989; 24: 55–58
  • Hernandez L. A., Grisham M. B., Granger D. N. A role for iron in oxidant-mediated ischemic injury to intestinal rnicrovasculature. American Journol of Physiology 1987; 253: G49–G53
  • Mittal V. K., Dewan S., Amaria Y., Parik Y., Toledo-Pereyra L. H., Hans S. S. (1988) Role of oxygen free radical scavengers in preservation of intestinal villi in the presence of ischemia. Transplantation Proceedings. 1988. XX: 1045–1047
  • Otamiri T., Sjödahl R., Tagesson C. An experimental model for studying reversible intestinal ischaemia. Acta Chirurgica Scandinavica. 1987; 153: 51–56
  • Parks D. A., Bulkley G. B., Granger D. N., Hamilton S. R., Mc Cord J. M. Ischemic innjury in the cat small intestine: role of superoxide radicals. GTastroenterology. 1982; 82: 9–15
  • Smith S. M., Grishma M. B., Manci E. A., Granger D. N., Kvietys P. R. Gastric mucosal injury in the rat. Role of iron and xanthine oxidase. Gastroenterology 1987; 92: 950–956
  • Hernandez L. A., Grisham M. B., Twohig B., Arfors K. E., Harlan J. M., Granger D. N. Role of neutrophils in ischemia-reperfusion induced microvascular injury. American Journal of Physiology 1987; 253: H699–H703
  • Grisham M. B., Granger D. N. Neutrophil mediated mucosal injury. Role of reactive oxygen metabolites. Digestive Diseases and Sciences 1988; 33: 6S–15S
  • Smith S. M., Rutili L. H., Perry M. A., Grisham M. B., Arfors K. E., Granger D. N., Russel J. M. Role of neutrophils in hemorrhagic shock induced gastric mucosal injury in the rat. Gastroenterology 1987; 93: 466–471

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