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Original Article

Susceptibility of Human Proximal Tubular Cells to Hypoxia: Effect of Hypoxic Preconditioning and Comparison to Glomerular Cells

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Pages 47-60 | Published online: 07 Jul 2009

References

  • Glazier S S, O'Rourke D M, Graham D I, Welsh F A. Induction of ischemic tolerance following brief focal ischemia in rat brain. J Cereb Blood Flow Metab 1994; 14: 545–553
  • Liu Y, Kato H, Nakata N, Kogure K. Temporal profile of heat shock protein 70 synthesis in ischemic tolerance induced by preconditioning ischemia in rat hippocampus. Neuroscience 1993; 56: 921–927
  • Simon R P, Niiro M, Gwinn R. Prior ischemic stress protects against experimental stroke. Neurosci Lett 1993; 163: 135–137
  • Marber M S, Latchman D S, Walker J M, Yellon D M. Cardiac stress protein elevation 24 hours after brief ischemia or heat stress is associated with resistance to myocardial infarction. Circulation 1993; 88: 1264–1272
  • Sun J Z, Tang X L, Knowlton A A, Park S W, Qiu Y, Bolli R. Late preconditioning against myocardial stunning: an endogenous protective mechanism that confers resistance to postischemic dysfunction 24 h after brief ischemia in conscious pigs. J Clin Invest 1995; 95: 388–403
  • Yellon D M, Baxter G F. A “second window of protection” or delayed preconditioning phenomenon: future horizons for myocardial protection. J Mol Cell Cardiol 1995; 27: 1023–1034
  • Yoshioka T, Bills T, Moore-Jarrett T, Greene H L, Burr I M, Ichikawa I. Role of intrinsic antioxidant enzymes in renal oxidant injury. Kidney Int 1990; 38: 282–288
  • Zager R A, Jurkowitz M S, Merola A J. Responses of the normal rat kidney to sequential ischemic events. Am J Physiol 1985; 249: F148–F159
  • Zager R A, Iwata M, Burkhart K M, Schimpf B A. Post-ischemic acute renal failure protects proximal tubules from O2 deprivation injury, possibly by inducing uremia. Kidney Int 1994; 45: 1760–1768
  • Yonemura K. Acquired resistance to acute renal failure in ischemic and uranium-induced renal failure of rabbits. Nippon Jinzo Gakkai Shi 1986; 28: 1221–1227
  • Zager R A, Burkhart K M, Gmur D J. Postischemic proximal tubular resistance to oxidant stress and Ca2+ ionophore-induced attack: implications for reperfusion injury. Lab Invest 1995; 72: 592–600
  • Bonventre J V. Mechanisms of ischemic acute renal failure. Kidney Int 1993; 43: 1160–1178
  • Paller M S. Pathophysiologic mechanisms of acute renal failure. Mechanisms of Injury in Renal Disease and Toxicity, R S Goldstein. CRC Press, Ann Arbor, MI 1994; 3–13
  • Wilson P D, Schrier R W. Nephron segment and calcium as determinants of anoxic cell death in renal cultures. Kidney Int 1986; 29: 1172–1179
  • Iwata M, Myerson D, Torok-Storb B, Zager R A. An evaluation of renal tubular DNA laddering in response to oxygen deprivation and oxidant injury. J Am Sac Nephrol 1994; 5: 1307–1313
  • Greene E L, Paller M S. Calcium and free radicals in hypoxia/reoxygenation injury of renal epithelial cells. Am J Physiol 1994; 266: F13–F20
  • Paller M S, Patten M. Protective effects of glutathione, glycine, or alanine in an in vitro model of renal anoxia. J Am Soc Nephrol 1992; 2: 1338–1344
  • Fish E M, Molitoris B A. Extracellular acidosis minimizes actin cytoskeletal alterations during ATP depletion. Am J Physiol 1994; 267: F566–F572
  • Sheridan A M, Schwartz J H, Kroshian V M, Tercyak A M, Laraia J, Masino S, Lieberthal W. Renal mouse proximal tubular cells are more susceptible than MDCK cells to chemical anoxia. Am J Physiol 1993; 265: F342–F350
  • Canfield P E, Geerdes A M, Molitoris B A. Effect of reversible ATP depletion on tight-junction integrity in LLC-PK1 cells. Am J Physiol 1991; 261: F1038–F1045
  • Venkatachalam M A, Patel Y J., Kreisberg J I, Weinberg J M. Energy thresholds that determine membrane integrity and injury in a renal epithelial cell line (LLC-PK1): relationships to phospholipid degradation and unesterified fatty acid accumulation. J Clin Invest 1988; 81: 745–758
  • Paller M S, Neumann T V. Reactive oxygen species and rat renal epithelial cells during hypoxia and reoxygenation. Kidney Int 1991; 40: 1041–1049
  • Turman M A, Bates C M, Mathews A, Haun S E. Effect of extracellular calcium on survival of human proximal tubular cells exposed to hypoxia. Renal Failure 1995; 17: 421–435
  • Steinmassl D, Pfaller W, Gstraunthaler G, Hoffmann W. LLC-PK1 epithelia as a model for in vitro assessment of proximal tubular nephrotoxicity. Vitro Cell Dev Biol 1995; 31: 94–106
  • Marano C W, Laughlin K V, Russo L M, Short T H, Mullin J M. cAMP modulates transepithelial resistance response of LLC-PK, renal epithelia to tumor necrosis factor. Am J Physiol 1995; 268: F315–F322
  • Gibson-D'Ambrosio R E, Samuel M, Chang C C, Trosko J E, D'Ambrosio S M. Characteristics of long-term human epithelial cell cultures derived from normal human fetal kidney. In Vitro Cell Dev Biol 1987; 23: 279–287
  • Detrisac C J, Sens M A, Garvin A J, Spicer S S, Sens D A. Tissue cullure of human kidney epithelial cells of proximal tubule origin. Kidney Int 1984; 25: 383–390
  • Courjault-Gautier F, Chevalier J, Abbou C C, Chopin D K, Toutain H J. Consecutive use of hormonally defined serum-free media to establish highly differentiated human renal proximal tubule cells in primary culture. J Am Soc Nephrol 1995; 5: 1949–1963
  • Mahan J D, van Setten P A, McAllister C, van den Heuvel L PWJ, Monnens L AH. Effect of Verotoxin-1 on viability and protein synthesis of human glomerular capillary endothelial cells. Recent Advances in Verocytotoxin-Producing Escherichia coli Infections, M A Karmali, A G Goglio. Elsevier Science BV, Amsterdam 1994; 325–328
  • Nahman N S, Jr, Leonhart K L, Cosio F G, Hebert C L. Effects of high glucose on cellular proliferation and fibronectin production by cultured human mesangial cells. Kidney Int 1992; 41: 396–402
  • Rovin B H, Yoshiumura T, Tan L. Cytokine-induced production of monocyte chemoattractant protein-1 by cultured human mesangial cells. J Immunol 1992; 148: 2148–2153
  • Borkan S C, Emami A, Schwartz J H. Heat stress protein-associated cytoprotection of inner medullary collecting duct cells from rat kidney. Am J Physiol 1993; 265: F333–F341
  • Bunnachak D, Almeida A R, Wetzels J F, Gengaro P, Nemenoff R A, Burke T J, Schrier R W. Ca2+ uptake, fatty acid, and LDH release during proximal tubule hypoxia: effects of mepacrine and dibucaine. Am J Physiol 1994; 266: F196–F201
  • Garza-Quintero R, Ortega-Lopez J, Stein J H, Venkatachalam M A. Alanine protects rabbit proximal tubules against anoxic injury in vitro. Am J Physiol 1990; 258: F1075–F1083
  • Alhunaizi A M, Yaqoob M M, Edelstein C L, Gengaro P E, Burke T J, Nemenoff R A, Schrier R W. Arachidonic acid protects against hypoxic injury in rat proximal tubules. Kidney Int 1996; 49: 620–625
  • Zager R A, Burkhart K M, Conrad D S, Gmur D J, Iwata M. Phospholipase A2-induced cytoprotection of proximal tubules: potential determinants and specificity for ATP depletion-mediated injury. J Am Soc Nephrol 1996; 7: 64–72
  • Kawamaura T, Yoshioka T, Bills T, Fogo A, Ichikawa I. Glucocorticoid activates glomerular antioxidant enzymes and protects glomeruli from oxidant injuries. Kidney Int 1991; 40: 291–301
  • Humes H D, Cieslinski D A, Coimbra T M, Messana J M, Galvao C. Epidermal growth factor enhances renal tubule cell regeneration and repair and accelerates the recovery of renal function in postischemic acute renal failure. J Clin Invest 1989; 84: 1757–1761
  • Hays S R. Ischemic acute renal failure. Am J Med Sci 1992; 304: 93–108
  • Chien K R, Sen A, Reynolds R, Chang A, Kim Y, Gunn M D, Buja L M, Willerson J T. Release of arachidonate from membrane phospholipids in cultured neonatal rat myocardial cells during adenosine triphosphate depletion: correlation with the progression of cell injury. J Clin Invest 1985; 75: 1770–1780
  • Choi K H, Edelstein C L, Gengaro P, Schrier R W, Nemenoff R A. Hypoxia induces changes in phospholipase A2 in rat proximal tubules: evidence for multiple forms. Am J Physiol 1995; 269: F846–F853
  • Nakamura H, Nemenoff R A, Gronich J H, Bonventre J V. Subcellular characteristics of phospholipase A2 activity in the rat kidney: enhanced cytosolic, mitochondrial, and microsomal phospholipase A2 enzymatic activity after renal ischemia and reperfusion. J Clin Invest 1991; 87: 1810–1818
  • Portilla D, Mandel L J, Bar-Sagi D, Millington D S. Anoxia induces phospholipase A2 activation in rabbit renal proximal tubules. Am J Physiol 1992; 262: F354–F360
  • Carter A J, Müller R E, Pschorn U, Stransky W. Preincubation with creatine enhances levels of creatine phosphate and prevents anoxic damage in rat hippocampal slices. J Neurochem 1995; 64: 2691–2699
  • Safirstein R, Price P M, Saggi S J, Harris R C. Changes in gene expression after temporary renal ischemia. Kidney Int 1990; 37: 1515–1521
  • Rosenberg M E, Paller M S. Differential gene expression in the recovery from ischemic renal injury. Kidney Int 1991; 39: 1156–1161
  • Yu L, Gengaro P E, Niederberger M, Burke T J, Schrier R W. Nitric oxide: a mediator in rat tubular hypoxia/ reoxygenation injury. Proc Natl Acad Sci USA 1994; 91: 1691–1695
  • López-Neblina F, Paez A J, Toledo A H, Toledo-Pereyra L H. Role of nitric oxide in ischemia/reperfusion of the rat kidney. Circ Shock 1994; 44: 91–95
  • Hoshida S, Yamashita N, Igarashi J, Nishida M, Hori M, Kamada T, Kuzuya T, Tada M. Nitric oxide synthase protects the heart against ischemia-reperfusion injury in rabbits. J Pharmacol Exp Ther 1995; 274: 413–418
  • Ghezzi P, Dinarello C A, Bianchi M, Rosandich M E, Repine J E, White C W. Hypoxia increases production of interleukin-1 and tumor necrosis factor by human mononuclear cells. Cytokine 1991; 3: 189–194
  • Ala Y, Palluy O, Favero J, Bonne C, Modat G, Dornand J. Hypoxia-reoxygenation stimulates endothelial cells to promote interleukin-1 and interleukin-6 production. Effects of free radical scavengers. Agents Actions 1992; 37: 134–139
  • Hammerman M R, Miller S B. Therapeutic use of growth factors in renal failure. J Am Soc Nephrol 1994; 5: 1–11
  • Matejka G L, Jennische E. IGF-I binding and IGF-I mRNA expression in the postischemic regenerating rat kidney. Kidney Int 1992; 42: 1113–1123
  • Van Why S K, Hildebrandt F, Ardito T, Mann A S, Siegel N J, Kashgarian M. Induction and intracellular localization of HSP-72 after renal ischemia. Am J Physiol 1992; 263: F769–F775
  • Jacobs W R, Sgambati M, Gomez G, Vilaro P, Higdon M, Bell P D, Mandel L J. Role of cytosolic Ca in renal tubule damage induced by anoxia. Am J Physiol 1991; 260: C545–C554

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