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Original Article

Hydroxyl Radical Scavenging Activity of Nonsteroidal Anti-Inflammatory Drugs

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Pages 419-427 | Received 21 Apr 1997, Published online: 07 Jul 2009

References

  • Del Maestro R. F. An approach to free radicals in medicine and biology. Acta Physiologica Scandinavica 1980; 492: 153–168, (Suppl)
  • Weiss S. J. Tissue destruction by neutrophils, New. England Journal of Medicine 1989; 320: 365–375
  • Dowling E. J., Symons A. M., Parke D. V. Free radical production at the site of an acute inflammatory reaction as measured by chemiluminescence. Agents and Actions 1986; 19: 203–207
  • Halliwell B., Hoult J. R., Blake D. R. Oxidants, inflammation, and anti‐inflammatory drugs. FASEB Journal 1988; 2: 2867–2873
  • Aruoma O. I., Wasil M., Halliwell B., Hoey B. M., Butler M. The scavenging of oxidants by sulphasalazine and its metabolites. A possible contribution to their anti‐inflammatory effects?. Biochemical PharmaCology 1987; 36: 3739–3742
  • Aruoma O. I., Halliwell B., Butler J., Hoey B. M. Apparent inactivation of αl‐antiproteinase by sulphur‐containing radicals derived from penicillamine. Biochemical Pharmacology 1989; 38: 4353–4357
  • Smith W. L., Lands W. E. M. Stimulation and blockade of prostaglandin biosynthesis. Journal of Biological Chemistry 1971; 246: 6700–6704
  • Moncada S., Ferreira S. H., Vane J. R. Inhibition of prostaglandin biosynthesis as the mechanism of analgesia of aspirin‐like drugs in the dog knee joint. European Journal of Pharmacology 1975; 31: 250–260
  • Pronai L., Ichikawa Y., Ichimori K., Nakazawa H., Arimori S. Hydroxyl radical‐scavenging activity of slow‐acting anti‐rheumatic drugs. Journal of Clinical Biochemistru and Nutrition. 1990; 9: 17–23
  • Udassin R., Ariel I., Haskel Y., Kitrossky N., Chevion M. Salicylate as an in vivo free radical trap: studies on ischemic insult to the rat intestine. Free Radical Biology and Medicine 1991; 10: 1–6
  • Parkash A. K., Sugden J. K., Yucan Z., Mingxin W. A rapid method for screening non steroidal anti‐inflammatory agents for hydroxyl radical scavenging. International Journal of Pharmaceutics 1993; 92: 151–155
  • Hiller K. O., Hodd P. L., Willson R. L. Antiinflammatory drugs: protection of a bacterial virus as an in vitro biological measure of free radical activity. Chemico‐Biological Interactions 1983; 47: 293–305
  • Aruoma O. I., Halliwell B. The iron‐binding and hydroxyl radical scavenging action of anti‐inflammatory drugs. Xenobiotica 1988; 18: 459–470
  • Oyanagui Y. Inhibition of superoxide anion production in macrophages by anti‐inflammatory drugs. Biochemical Pharmacology 1976; 25: 1473–1480
  • Puig‐Parellada P., Planas J. M. Synovial fluid degradation induced by free radicals. In vitro action of several free radical scavengers and anti‐inflammatory drugs. Biochemical Pharmacology 1978; 27: 535–537
  • Prasad K., Laxdal V. A. Hydroxyl radicalscavenging property of indomethacin. Molecular and Cellular Biochemistry 1994; 136: 139–144
  • Yoshikawa T., Naito Y., Tanigawa T., Yoneta T., Kondo M. The antioxidant properties of a novel zinc‐carnosine chelate compound, N‐(3‐aminopropi‐ony1)‐L‐histidinato zinc. Biochimica et Biophysica Acta 1991; 1115: 15–22
  • McCord J. M., Day E. D., Jr. Superoxide‐dependent production of hydroxyl radical catalyzed by iron‐EDTA complex, FEBS. Letters 1978; 86: 139–142
  • Halliwell B., Gutteridge J. M. C. Oxygen free radicals and iron in relation to biology and medicine: Some problems and concepts. Archives of Biochemistry and Biophysics 1986; 246: 501–514
  • Fahim A. T., Abd-El Fattah A. A., Agha A. M., Gad M. Z. Effect of pumpkin‐seed oil on the level of free radical scavengers induced during adjuvant‐arthritis in rats. Pharmacological Research 1995; 31: 73–79
  • McCord J. M. Free radicals and inflammation: Protection of synovial fluid by superoxide dismutase. Science 1974; 185: 529–531
  • Betts W. H., Cleland L. G. Effect of metal chelators and antiinflammatory drugs on the degradation of hyaluronic acid. Arthritis and Rheumatism 1982; 25: 1469–1476
  • Wong S. F., Halliwell B., Richmond R., Skowroneck W. R. The role of superoxide and hydroxyl radicals in the degradation of hyaluronic acid induced by metal ions and by ascorbic acid. Journal of Inorganic Biochemistry 1981; 14: 127–134
  • Halliwell B. Superoxide‐dependent formation of hydroxyl radicals in the presence of iron salts. FEBS Letters 1978; 96: 238–242
  • Greenwald R. A., Moy W. W. Effect of oxygen‐derived free radicals on hyaluronic acid. Arthritis and Rheumatism 1980; 23: 455–463
  • Keller R. J., Hinson J. A. Mechanism of acetaminophen‐stimulated NADPH oxidation catalyzed by the peroxidase‐H2O2 system. Drug Metabolism and Disposition 1991; 19: 184–187
  • Evans P. J., Cecchini R., HaUiwell B. Oxidative damage to lipids and al‐antiproteinase by phenylbutazone in the presence of haem proteins: protection by ascorbic acid. Biochemical Pharmacology 1992; 44: 981–984

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