The role of oxygen radicals in experimental acute pancreatitis.
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[1] A. Dabrowski,et al. The effect of platelet activating factor antagonist (BN 52021) on cerulein-induced acute pancreatitis with reference to oxygen radicals , 1991, International journal of pancreatology : official journal of the International Association of Pancreatology.
[2] C. Delaney,et al. Free radical inhibition and serial chemiluminescence in evolving experimental pancreatitis , 1990, The British journal of surgery.
[3] M. Büchler,et al. Oxygen free radicals in acute pancreatitis of the rat. , 1990, Gut.
[4] T. Sasaki. [Studies on oxygen-derived free radicals in acute pancreatic damage in rats--pancreatic damage experimentally induced by diethyldithiocarbamate]. , 1990, Nihon Shokakibyo Gakkai zasshi = The Japanese journal of gastro-enterology.
[5] M. Plebani,et al. Oxygen derived free radicals in patients with chronic pancreatic and other digestive diseases. , 1990, Journal of clinical pathology.
[6] N. Haboubi,et al. Abnormal drug metabolism in chronic pancreatitis. Treatment with antioxidants. , 1990, Gastroenterology.
[7] T. Manabe,et al. [Organ specific ESR features in mouse main organs and ESR application to the model of pancreatic disorders]. , 1990, Nihon Geka Gakkai zasshi.
[8] T. Kyogoku,et al. Changes in lipid peroxide and oxygen radical scavengers in cerulein-induced acute pancreatitis. Imbalance between the offense and defense systems. , 1990, Digestion.
[9] A. Dabrowski,et al. Oxygen radicals mediate depletion of pancreatic sulfhydryl compounds in rats with cerulein-induced acute pancreatitis. , 1990, Digestion.
[10] P. Guyan,et al. Heightened free radical activity in pancreatitis. , 1990, Free radical biology & medicine.
[11] L. Hunt,et al. Placebo-Controlled Double-Blind Trial of Antioxidant Supplements in Patients with Recurrent Pancreatitis , 1989 .
[12] P. Ward,et al. Neutrophil-dependent, oxygen-radical mediated lung injury associated with acute pancreatitis. , 1989, Annals of surgery.
[13] Takeshi Kobayashi,et al. The role of oxygen free radicals in experimental acute pancreatitis in the rat , 1989, International journal of pancreatology : official journal of the International Association of Pancreatology.
[14] H. Gröne,et al. *Xanthine Oxidase Inhibitor in Acute Experimental Pancreatitis in Rats and Mice , 1989, Pancreas.
[15] T. Manabe,et al. Changes of xanthine oxidase, lipid peroxide and superoxide dismutase in mouse acute pancreatitis. , 1989, Digestion.
[16] K. Johnson,et al. Failure of antioxidant therapy (polyethylene glycol-conjugated catalase) in acute pancreatitis. , 1989, American journal of surgery.
[17] A. Dabrowski,et al. Oxygen-derived free radicals in cerulein-induced acute pancreatitis. , 1988, Scandinavian journal of gastroenterology.
[18] L. Ferrell,et al. Evidence for a role of oxygen derived free radicals in the pathogenesis of caerulein induced acute pancreatitis in rats. , 1988, Gut.
[19] S. Marklund,et al. Parenteral Superoxide Dismutase Plus Catalase Diminishes Pancreatic Edema in Sodium Taurocholate‐Induced Pancreatitis in the Rat , 1988, Pancreas.
[20] I. Renner,et al. Allopurinol attenuates caerulein induced acute pancreatitis in the rat. , 1988, Gut.
[21] J. Braganza,et al. Free radicals and acute pancreatitis. , 1988, Gastroenterology.
[22] R. Powers,et al. Xanthine oxidase activity in mouse pancreas: effects of caerulein-induced acute pancreatitis. , 1987, Biochemical and biophysical research communications.
[23] A. Saluja,et al. Role of oxygen-derived free radicals in diet-induced hemorrhagic pancreatitis in mice. , 1987, Gastroenterology.
[24] J. Cameron,et al. Temporal efficacy of allopurinol during the induction of pancreatitis in the ex vivo perfused canine pancreas. , 1987, Surgery.
[25] R. McCloy,et al. Recalcitrant pancreatitis: eventual control by antioxidants. , 1987, Pancreas.
[26] J. Cameron,et al. The role of leukocytes in the production of oxygen-derived free radicals in acute experimental pancreatitis. , 1987, Surgery.
[27] G. Shephard,et al. Biochemical vitamin E deficiency in chronic pancreatitis , 1986, International journal of pancreatology : official journal of the International Association of Pancreatology.
[28] R. Kishen,et al. ACETYLCYSTEINE TO TREAT COMPLICATIONS OF PANCREATITIS , 1986, The Lancet.
[29] L. Hunt,et al. Dietary antioxidants and chronic pancreatitis. , 1986, Human nutrition. Clinical nutrition.
[30] K. Guice,et al. Superoxide dismutase and catalase: a possible role in established pancreatitis. , 1986, American journal of surgery.
[31] J. Cameron,et al. The pathogenesis of acute pancreatitis. The source and role of oxygen-derived free radicals in three different experimental models. , 1985, Annals of surgery.
[32] J. Cameron,et al. The Role of Oxygen‐derived Free Radicals in the Pathogenesis of Acute Pancreatitis , 1984, Annals of surgery.
[33] Bulkley Gb. The role of oxygen free radicals in human disease processes. , 1983 .
[34] T. Dormandy,et al. LIPID-PEROXIDATION (FREE-RADICAL-OXIDATION) PRODUCTS IN BILE FROM PATIENTS WITH PANCREATIC DISEASE , 1983, The Lancet.
[35] T. Nevalainen,et al. Human acute pancreatitis: a light and electron microscopic study. , 1982, Acta pathologica, microbiologica, et immunologica Scandinavica. Section A, Pathology.
[36] K. Arfors,et al. Increase in microvascular permeability induced by enzymatically generated free radicals. I. In vivo study. , 1981, Microvascular research.
[37] K. Arfors,et al. Increase in microvascular permeability induced by enzymatically generated free radicals. II. Role of superoxide anion radical, hydrogen peroxide, and hydroxyl radical. , 1981, Microvascular research.
[38] B. Babior,et al. Oxygen-dependent microbial killing by phagocytes (second of two parts). , 1978, The New England journal of medicine.
[39] C. M. Steel,et al. Age-related changes in T and B cells , 1975, The Lancet.
[40] J. Ranson,et al. Early Respiratory Insufficiency in Acute Pancreatitis , 1973, Annals of surgery.
[41] J. Stocks,et al. The Autoxidation of Human Red Cell Lipids Induced by Hydrogen Peroxide , 1971, British journal of haematology.
[42] H. Taber,et al. Inactivating DNA alterations induced by peroxides and peroxide-producing agents. , 1967, Mutation research.
[43] L. Dintenfass. CARDIAC NERVE LESIONS IN CHAGAS' DISEASE. , 1965, Lancet.