1
Views
5
CrossRef citations to date
0
Altmetric
Original Article

Nitrendipine and Superoxide Dismutase in Ischemic Renal Injury

, , , , , & show all
Pages 697-705 | Published online: 07 Jul 2009

References

  • Smithies N N, Cameron J S. Can we predict outcome in acute renal failure?. Nephron 1989; 51: 287–300
  • Galet J A, Robinson A V, Rhodes R S. Effect of hypoxia on renal flow. J Trauma 1988; 28: 955–961
  • Burke T J, Burnier M, Langberg H. Renal response to shock. Ann Emerg Med 1986; 15: 1397–1400
  • Kakreja R C, Hess M L. The oxygen free radical system: from equations through membrane-protein interactions to cardiovascular injury and protection. Cardiovasc Res 1992; 26: 641–655
  • Sela S, Shasha S N, Mashiach E. Effect of oxygen tension on activity of antioxidant enzymes and on renal function of the post ischemic reperfusion rat kidney. Nephron 1993; 63: 199–206
  • Kloner R A, Przyklenk K, Whittaker P. Deleterious effects of oxygen radicals on ischemia/reperfusion. Circulation 1989; 80: 1115–1127
  • Linas S L, Whittenburg D, Repine J E. Role of neutrophil-derived oxidants and elastase in lipopoly-saccharide-mediated renal injury. Kidney Int 1991; 39: 619–623
  • Bayati A, Hellberg O, Odlind B, et al. Prevention of ischaemic acute renal failure with superoxide dismutase and sucrose. Acta Physiol Scand 1987; 130: 367–372
  • Bratell S, Folmerz P, Hansson R, et al. Effects of oxygen free radical scavengers, xanthine oxidase inhibition and calcium entry-blockers on leakage of albumin after ischemia: an experimental study in rabbit kidneys. Acta Physiol Scand 1988; 134: 35–41
  • Bird J E, Milhoan K, Wilson C B, et al. Ischemic acute renal failure and antioxidant therapy in the rat: the relation between glomerular and tubular dysfunction. J Clin Invest 1988; 81: 1630–1638
  • Youn Y K, La Londe C, Demling R. Use of antioxidant therapy in shock and trauma. Circ Shock 1991; 35: 245–249
  • Punch J, Rees R, Cashmer B, et al. Xanthine oxidase: its role in no-reflow phenomenon. Surgery 1992; 113: 169–176
  • Wait R B, White G, Davis J H. Beneficial effects of verapamil on post-ischemic renal failure. Surgery 1983; 94: 276–282
  • Woolley J L, Barker G, Jacobsen W K, et al. Effect of the calcium entry blocker verapamil on renal ischemia. Crit Care Med 1988; 16: 48–51
  • Jacobsen W K, Cole D J, Stewart S C, et al. Effect of calcium entry blocker nitrendipine on renal function after renal vascular occlusion. Crit Care Med 1990; 18: 1403–1407
  • Nayler W G, Britnell S. Calcium antagonist and tissue protection. J Cardiovasc Pharmacol 1991; 18: S1–S5
  • Neumayer H H, Kunzendorf U. Renal protection with calcium antagonists. J Cardiovasc Pharmacol 1991; 18: S11–S18
  • Conger J D, Robinette J B, Hammond W S. Differences in vascular reactivity in models of ischemic acute renal failure. Kidney Int 1991; 39: 1087–1097
  • Gingrich G A, Barker G R, Lui P, et al. Renal preservation following severe ischemia and prophylactic calcium channel blockade. J Urol 1985; 134: 408–410
  • Matthys E, Patton N K, Osgood R W, et al. Alterations in vascular function and morphology in acute ischemic renal failure. Kidney Int 1983; 23: 717–724
  • Giovannetti S, Giuliano B. In defense of creatinine clearance. Nephron 1991; 59: 11–14
  • Gutierrez G. Cellular energy metabolism during hypoxia. Crit Care Med 1991; 19: 619–626
  • McCord J M. Oxygen-derived free radicals in post-ischemic tissue injury. N Engl J Med 1985; 312: 159–163
  • Wilson D R, Arnold P E, Burke T J, et al. Mitochondrial calcium accumulation and respiration in ischemic acute renal failure in the rat. Kidney Int 1984; 25: 519–526
  • Brezis M, Shim A, Kidroni G, et al. Calcium and hypoxic injury in the renal medulla of the perfused rat kidney. Kidney Int 1988; 34: 186–194
  • Stromski M E, Van Waard A, Avison M J, et al. Metabolic and functional consequences of inhibiting adenosine deaminase during renal ischemia in rats. J Clin Invest 1988; 82: 1694–1699
  • Hays S R. Southwestern Internal Medicine Conference: ischemic acute renal failure. Am J Med Sci 1992; 304: 93–108
  • Weinburg J N. The cell biology of ischemic injury. Kidney Int 1991; 39: 476–500
  • Shanley P E, Shapiro J I, Chan L, et al. Acidosis and hypoxic medullary injury in the isolated perfused kidney. Kidney Inr 1988; 34: 791–796
  • Schrier R W, Hansen J. Cellular mechanisms of ischemic acute renal failure: role of Ca2+ and calcium entry blockers. Klin Wochenschr 1988; 66: 800–807
  • Bonventre J V, Nemenhoff R. Renal tubular arachidonic acid metabolism. Kidney Int 1991; 39: 438–449
  • Arnold P E, Lumlertugul D, Burke T J, et al. In virro vs in vivo mitochondrial calcium loading in ischemic acute renal failure. Am J Physiol 1985; 248: F845–F850
  • Donohoe J E, Venkatachalan M A, Bernard D M, et al. Tubular leakage and obstruction after renal ischemia: structural-functional correlations. Kidney Int 1978; 13: 208–222
  • Hernandez L A, Granger D N. Role of antioxidants in organ preservation and transplantation. Crit Care Med 1988; 16543–549
  • Roy A T, Brautbar N, Lee D BN. Hydrocarbons and renal failure. Nephron 1991; 58: 385–392
  • Davies K JA, Lin S W, Pacifici R E. Protein damage and degradation by oxygen radicals. IV degradation of denatured protein. J Bid Chem 1987; 262: 9914–9920
  • Paller N S, Hoydal J R, Ferris T F. Oxygen free radicals in ischemic acute renal failure in the rate. J Clin Invest 1984; 74: 1156–1164
  • Ouriel K, Smedria N G, Ricotta J J. Protection of the kidney after temporary ischemia: free radical scavengers. J Vasc Surg 1985; 2: 49–53
  • Schneider J, Friderichs E, Giertz H. Comparison of the protective effects by human and bovine superoxide dismutase against ischemia- and reperfusion-induced impairment of kidney function in anesthetized rats. Free Radic Biol Med 1987; 3: 21–26
  • Shah S V, Walker P D. Evidence suggesting a role for hydroxyl radical in glycerol-induced acute renal failure. Am J Physiol 1988; 255: F438–F443
  • Bosco P J, Schweizer R T. IJse of oxygen radical scavengers on autografted pig kidneys after warm ischemia and 48-hour perfusion preservation. Arch Surg 1988; 123: 601–604
  • Bird J E, Evan A P, Peterson O W, et al. Early events in ischemic renal failure in the rat: effects of antioxidant therapy. Kidney Int 1989; 35: 1282–1289
  • Bratell S, Haraldsson G, Herlitr H, et al. Protective effects of pretreatment with superoxide dismutase, catalase, and oxypurinol on tubular damage caused by transient ischaemia. ActaPhysiol Scand 1990; 139: 417–425
  • Gower J D, Fuller B J, Green C J. Preservation by antioxidants of oxidative damage to rabbit kidneys subjected to cold ischemia. Biochem Pharmacol 1989; 38: 213–215
  • Rosati R, Stortoni F, Filingeri V, et al. Allopurinol and superoxide dismutase administration in prevention of rat kidney ischemic injury. Transplant Proc 1988; 20: 928–930
  • Garnelin L M, Zager R A. Evidence against oxidant injury as a critical mediator of post-ischemic acute renal hilure. Am J Phpid 1988; 255: F450–F460
  • Zager R A. Hypoperfusion-induced acute renal failure in the rat: an evaluation of oxidant tissue injury. Circ Res 1988; 62: 430–435
  • Konya L, Bencsath P, Szenasi G, et al. Effect of free radicals in ischemic renal failure in the dog. Acta Physiol Hung 1990; 76: 319–331
  • Bayati A, Kallskog O, Wolgast N. The long-term outcome of post-irchemic acute renal failure in the rat: a functional study after treatment with SOD and sucrose. Acta Physiol Scand 1990; 138: 25–33
  • Takano T, Soltoff S P, Murdaugh S. Intracellular respiratory dysfunction and cell injury in short-term anoxia of rabbit renal proximal tubules. J Clin Invest 1985; 76: 2377–2384
  • Zager R A, Gmur D J. Effect of xanthine oxidase inhibition on ischemic acute renal failure in the rat. Am J Physiol 1989; 257: F953–F958
  • Engerson T D, McKelvey T G, Rhyne D B, et al. Conversion of xanthine dehydrogenase to oxidase in ischemic rat tissue. J Clin Invest 1987; 79: 1564–1570
  • Burke T G, Arnold P E, Gordon J A, et al. Protective effect of intrarenal calcium membrane blockers before or after renal ischemia. J Clin Invest 1981; 74: 1830–1841
  • Silverman M, Rose H, Puschett J B. Modifications in proximal tubular function induced by nitrendipine in a rat model of acute ischemic renal failure. J Cardiovasc Pharmacol 1989; 14: 799–802
  • Duggan K A, McDonald G J, Charlesworth J A, et al. Verapamil prevents post-traumatic oliguric renal failure. Clin Nephrol 1985; 24: 1289–291
  • Rooth P, Dawidson I, Diller K, et al. Protection against cyclosporine-induced impairment of renal microcireulation by verapamil in mice. Transplantation 1988; 45: 433–437
  • Malis C D, Cheung J Y, Leaf A, et al. Effects of veraparmil in models of ischemic acute renal failure. Am J Physiol 1983; 245: F73–F742
  • Bock H A, Brunner F P, Torhorst J, et al. Failure of verapamil to protect from ischaemic renal damage. Nephron 1991; 57: 299–305
  • DeTorrente A, Miller P D, Cronin R E, et al. Effects of furosemide and acetylcholine in norepinephrine-induced acute renal failure. Am J Physiol 1978; 235: F131–F136
  • Epstein M, Loutzenhiser R D. Renal hemodynamic effects of calcium antagonists: implications for renal transplantation. Transplant Proc 1991; 23: 1775–1777
  • Schrier R W, Burke T J. Role of calcium-channel blockers in preventing acute and chronic renal injury. J Cardiovasc Pharmacol 1991; 18(suppl 6)S38–S43
  • Cotterill L A, Gower J D, Fuller B J, et al. Oxidative damage to kidney membranes during cold ischemia: evidence of a role for calcium. Transplantation 1989; 48: 745–751
  • Bolli P, Erne P, Hulthen U L, et al. Parallel reduction of calcium influx-dependent vasoconstriction on platelet-free calcium concentration uith calcium entry and β-adrenergic blockade. J Cardiovasc Pharmacol 1984; 6: S996–S1001

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.