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Original

CHANGES IN EXPRESSION OF SODIUM COTRANSPORTERS AND AQUAPORIN-2 DURING ISCHEMIA-REPERFUSION INJURY IN RABBIT KIDNEY

, MD, PhD, , &
Pages 407-421 | Published online: 07 Jul 2009

REFERENCES

  • Anderson R J, Schrier R W. Acute tubular necrosis. Acute renal failure, R Schrier, C Gottschalk. Little, Brown and Co., Boston, Toronto 1988; 1413–1446
  • Bonventre J V. Mediators of ischemic renal injury. Annu Rev Med 1988; 39: 531–544
  • Bonventre J V. Mechanisms of ischemic renal failure. Kidney Int 1993; 43: 1160–1178
  • Hostetter T H, Brenner B M. Renal circulatory and nephron function in experimental acute renal failure. Acute renal failure, B M Brenner, J M Lazarus. Churchill Livingstone, New York 1988; 67–89
  • Stein J H, Lifschitz M D, Barnes L D. Current concepts on the pathophysiology of acute renal failure. Am J Physiol 1978; 234: F171–F181
  • Oliver J, MacDowell M, Tracy A. The pathogenesis of acute renal failure associated with traumatic and toxic injury. J Clin Invest 1951; 30: 1307–1314
  • Berry C A, Rector F C, Jr. Renal transport of glucose, amino acid, sodium, chloride and water. The kidney, B M Brenner, F C Rector, Jr. Saunders Company, Philadelphia, London, Toronto 1991; 245–282
  • Hanley M J. Isolated nephron gegments in a rabbit model of ischemic acute renal failure. Am J Physiol 1980; 239: F17–F23
  • Kim Y K, Woo J S, Kim Y H, Jung J S, Kim B S, Lee S H. Effect of renal Ischemia on organic compound transport in rabbit kidney proximal tubule. Pharmacol Toxicol 1995; 77: 121–129
  • Spiegel D M, Wilson P D, Molitors B A. Epithelial polarity following ischemia: a requirement for normal cell function. Am J Physiol 1989; 256: F430–436
  • Kim S Y, Lim Y T, Kim B S, Cho S I, Woo J S, Jung J S, Kim Y K. Mechanism of reduced GFR in rabbits with ischemic acute renal failure. Renal Failure, (in press), 1999
  • Fiske C H, SubbaRow Y. The colorimetric determination of phosphorus. J Biol Chem 1925; 66: 375–400
  • Jung J S, Kim Y K, Lee S H. Characteristics of tetraethylammonium transport in rabbit renal plasma-membrane vesicles. Biochem J 1989; 259(2)377–383
  • Bradford M M. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 1976; 72: 248–254
  • Maples D, Christensen B M, Frokiaer J, Knepper M A, Nielsen S. Dehydration reverse vasopressin antagonist-induced diuresis and aquaporin-2 down regulation in rat. Am J Physiol 1998; 275: F400–F409
  • Xu J C, Lytle C, Zhu T T, Payne J A, Benz E, Jr, Forbush B. Molecular cloning and functional expression of the bumetanide-sensitive Na-K-Cl cotransporter. Proc Natl Acad Sci USA 1994; 91: 2201–2205
  • Gamba G, Miyanoshita A, Lombardi M, Lytton J, Lee W S, Hediger M A, Hebert S C. Molecular cloning, primary structure and characterization of two members of the mammalian eletroneutral sodium-(potassium)-chloride cotransporter family expressed in kidney. J Biol Chem 1994; 269: 17713–17722
  • Tsukaguchi H, Shayakul C, Berger U V, Hediger M A. Urea transporters in kidney: molecular analysis and contribution to the urinary concentrating process. Am J Physiol 1998; 275: F319–324
  • Nielsen S, Smith B L, Christensen E I, Knepper M A, Agre P. Water channels are localized in constitutively water-permeable segments of the nephron. J Cell Biol 1993; 120: 371–383
  • Molitoris B A, Kinne R. Ischemia induces surface membrane dysfunction. Mechanism of altered Na+-dependent glucose transport. J Clin Invest 1987; 80: 647–654
  • Kim Y K, Kim Y H, Jung J S, Lee S H. Effect of renal ischemia on organic anion and cation transport in rabbit proximal tubule. Kidney Blood Press Res 1996; 19: 332–339
  • Nihei H, Honda N, Suzuki K, Nagase M, Yoshitoshi Y. Renal hemodynamics and Medullary osmolal gradient in ischemic acute renal failure in rabbits. Jpn Heart J 1975; 16: 44–56
  • Wang Z, Rabb H, Haq M, Shull G E, Soleimani M. A possible molecular basis of natriuresis during ischemic-reperfusion injury in the kidney. J Am Soc Nephrol 1998; 9: 605–613
  • Nielsen S, Kwon T H, Christensen B M, Promeneur D, Frokiaer J, Marples D. Physiology and pathophysiology of renal aquaporins. J Am Soc Nephrol 1999; 10: 647–663
  • Agre P, Preston G M, Smith B L, Jung J S, Raina S, Moon C, Guggino W B, Nielsen S, Aquaporin CHIP. The archetypal molecular water channel. Am J Physiol 1993; 265: F463–F476
  • Nielsen S, DiGiovanni S R, Christensen E I, Knepper M A, Harris H W. Cellular and subcellular immunolocalization of vasopressin-regulated water channel in rat kidney. Proc Natl Acad Sci USA 1993; 90: 11663–11667
  • Knepper M A. Molecular physiology of urinary concentrating mechanism: Regulation of aquaporin water channels by vasopressin. Am J Physiol 1997; 272: F3–F12

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