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Original

ANTIOXIDANTS MODULATE ADENOSINE METABOLISM IN RAT MESANGIAL CELLS CULTURED UNDER HIGH GLUCOSE CONDITIONS

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Pages 691-701 | Published online: 07 Jul 2009

REFERENCES

  • Buschaunsen L., Seibold S., Gross O., Matheaus T., Weber M., Schulze-Lohoff E. Regulation of Mesangial Cell Function by Vasodilatory Signaling Molecules. Cardiovasc. Res. 2001; 51(3)463–469
  • Parving H.H. Renoprotection in Diabetes: Genetic and Non-Genetic Risk Factors and Treatment. Diabetologia 1998; 41(7)745–759
  • Olivera A., Tomas M., Lopez-Novoa J.M. Effect of Adenosine A1 and A2 Agonists and Antagonists on cAMP and Ca2+ in Cultured Rat Mesangial Cells. Am. J. Physiol. 1992; 262(4)C840–C844
  • Stefanovic V., Savic V., Vlahovic P., Ardallou N. Ecto 5′-Nucleotidase of Cultured Rat Mesangial Cells. Renal Physiol. Biochem. 1988; 11(1–2)89–100
  • Olivera A., Lamas S., Rodriguez-Puyol D., Lopez-Novoa J.M. Adenosine Induces Mesangial Cell Contraction by an A1-Type Receptor. Kidney Int. 1989; 35(6)1300–1305
  • Spielman W.S., Thompson C.I. A Proposed Role for Adenosine in the Regulation of Renal Hemodynamics and Renin Release. Am. J. Physiol. 1982; 242(5)F423–F435
  • Kammer G.M. Adenosine: Emerging Role as an Immunomodifying Agent. J. Lab. Clin. Med. 1987; 110(3)255–256
  • Nosaka K., Takahashi T., Miyanoshita A., Nishi T., Suzuki K., Kurokawa K., Endou H. Effect of Adenosine on Phorbol Myristate Acetate Induced-Reactive Oxygen Metabolite Production in Cultured Mesangial Cells. Free Rad. Biol. Med. 1996; 20(1)151–155
  • Schulze-Lohoff E., Ogilvie A., Sterzel R.B. Extracellular Nucleotides as Signaling Molecules for Renal Mesangial Cells. J. Auton. Pharmacol. 1996; 16(6)381–384
  • Wakade T.D., Palmer K.C., McCauley R., Przywara D.A., Wakade A.R. Adenosine-Induced Apoptosis in Chick Embryonic Sympathetic Neurons: A New Physiological Role of Adenosine. J. Physiol. 1995; 488(Pt3)123–138
  • Kitakaze M., Hori M. It is a Time to Ask What Adenosine Can Do for Cardioprotection. Heart Vessels 1998; 13(5)211–228
  • Fox I.H., Kelley W.N. The Role of Adenosine and Deoxyadenosine in Mammalian Cells. Ann. Rev. Biochem. 1978; 47: 655–686
  • Foidart J.B., Dechenne C.A., Mahieu P., Creutz C.E., De Mey J. Tissue Culture of Normal Rat Glomeruli. Isolation and Morphological Characterization of Two Homogenous Cell Lines. Invest. Cell. Pathol. 1979; 2(1)15–26
  • Wood R.J., Williams D.G. Colorimetric Determination of Serum 5′-Nucleotidase without Deproteinization. Clin. Chem. 1981; 27(3)464–465
  • Kocic G., Vlahovic P., Pavlovic D., Kocic R., Jevtovic T., Cvetkovic T., Stojanovic I. The Possible Importance of the Cation-Binding Site for the Oxidative Modification of Liver 5′-Nucleotidase. Arch. Physiol. Biochem. 1998; 106(2)91–99
  • Kocic G., Pavlovic D., Jevtovic T., Kocić R., Bojić A., Djordjević V., Sokolović D., Djindjić B. Oxidative Modification of Rat Liver 5′-Nucleotidase: The Mechanisms of Protection and Reactivation. Arch. Physiol. Biochem. 2001; 109(4)323–330
  • Pederson R.C., Berry A.J. Sensitive, Optimized Assay for Serum AMP Deaminase. Clin. Chem. 1977; 23(9)1726–1733
  • Lauber K. Photometric Determination of Nitrogen. Wet Incineration Followed by Formation of Indophenol Blue with Salicylate/Hypochlorite. Clin. Chim. Acta 1976; 67(1)107–110
  • Lowry O.H., Rosenbrough N.J., Farr A.L., Randall R. Protein Measurement with the Folin Phenol Reagent. J. Biol. Chem. 1951; 193: 265–275
  • Montecinos V.P., Aguayo C., Flores C., Wyatt A.W., Pearson J.D., Mann G.E., Sobrevia L. Regulation of Adenosine Transport by d-Glucose in Human Fetal Endothelial Cells: Involvement of Nitric Oxide, Protein Kinase C and Mitogen-Activated Protein Kinase. J. Physiol. 2000; 15(3)777–790
  • Olmo N., Turnay J., Risse G., Detzmann R., Von der Mark K., Lizarbe M.A. Modulation of 5′-Nucleotidase Activity in Plasma Membranes and Intact Cells by the Extracellular Matrix Proteins Laminin and Fibronectin. Biochem. J. 1992; 282(1)181–188
  • Stochaj U., Richter H., Mannherz H.G. Chicken Gizzard 5′-Nucleotidase is a Receptor for the Extracellular Matrix Component Fibronectin. Eur. J. Cell. Biol. 1990; 51(2)335–338
  • Dieckhoff J., Mollenhauer J., Kuhl U., Niggemeyer B., Von der Mark K., Mannherz H.G. The Extracellular Matrix Proteins Laminin and Fibronectin Modify the AMP-ase Activity of 5′-Nucleotidase from Chicken Gizzard Smooth Muscle. FEBS Lett. 1986; 195(1–2)82–86
  • Baker A.J., Mooney A., Hughes J., Lombardi D., Johnson R.J., Savill J. Mesangial Cell Apoptosis: The Major Mechanism for Resolution of Glomerular Hypercellularity in Experimental Mesangial Proliferative Nephritis. J. Clin. Invest. 1994; 94(5)2105–2116
  • Imura T., Shimohama S. Opposing Effects of Adenosine on the Survival of Glial Cells Exposed to Clinical Ischemia. J. Neurosci. Res. 2000; 62(4)539–546
  • Benveniste P., Cohen A. p53 Expression is Required for Thymocyte Apoptosis Induced by Adenosine Deaminase Deficiency. Proc. Natl. Acad. Sci. USA 1995; 92(18)8373–8377
  • Williams B., Schrier R.W. Glucose-Induced Protein Kinase C Activity Regulates Arachidonic Acid Release and Eicosanoid Production by Cultured Glomerular Mesangial Cells. J. Clin. Invest. 1993; 92(6)2889–2896
  • Ayo S.H., Radnik R., Garoni J.A., Troyer D.A., Kreisberg D.I. High Glucose Increases Diacylglycerol Mass and Activates Protein Kinase C in Mesangial Cell Culture. Am. J. Physiol. 1991; 261(4Pt2)F571–F577
  • Haneda M., Araki S., Togawa M., Sugimoto T., Isono M., Kikkawa R. Mitogen-Activated Protein Kinase Cascade is Activated in Glomeruli of Diabetic Rats and Glomerular Mesangial Cells Cultured Under High Glucose Conditions. Diabetes 1997; 46(5)847–853
  • Ishii H., Jirousek M.R., Koya D., Takagi C., Xia P., Clermont A., Bursell S.E., Kern T.S., Ballas L.M., Health W.F., Stramm L.E., Feener E.P., King G.L. Amelioration of Vascular Dysfunctions in Diabetic Rats by an Oral PKC Inhibitor. Science 1996; 272(5262)728–731
  • Krump E., Borgeat P. Adenosine. An Endogenous Inhibitor of Arachidonic Acid Release and Leukotriene Biosynthesis in Human Neutrophils. Adv. Exp. Med. Biol. 1999; 447: 107–115
  • Lewis E., Hunsicker L., Bain R., Rhode R. The Effect of Angiotensin-Converting Enzyme Inhibition on Diabetic Nephropathy. N. Engl. J. Med. 1993; 329(20)1456–1462
  • Mathiesen E.R., Hommel E., Hansen H.P., Parving H.H. Preservation of Normal GFR with Long-term Captopril Treatment in Normotensive IDDM Patients with Microalbuminuria. J. Am. Soc. Nephrol. 1997; 8: 115A
  • Ichikawi I., Harris R.C. Angiotensin Actions in the Kidney: Renewed Insight into the Old Hormone. Kidney Int. 1991; 40(4)583–596
  • Egan T.M., Minta J.O., Scrimgeour K.G., Cooper J.D. Captopril—A Potential Free Radical Scavenger: Inhibition of PMN NADPH Oxidase. Clin. Invest. Med. 1988; 11(5)351–356
  • Rovin B.H., Dickerson J.A., Tan L.C., Fassler J. Modulation of IL-1 Induced Chemokine Expression in Human Mesangial Cells Through the Alteration in Redox Status. Cytokine 1997; 9(3)178–186
  • Shan Z., Tan D., Satriano D., Silbiger S., Schlondorf D. Intracellular Glutathione Influences Collagen Generation by Mesangial Cells. Kidney Int. 1994; 46(2)388–395
  • Chin T.A., Templeton D.M. Protective Elevations of Glutathione and Metallothionein in Cadmium-Expressed Mesangial Cells. Toxicology 1993; 29(1–2)145–156
  • Parks L.D., Zalups R.K., Barfuss D.W. Heterogeneity of Glutathione Synthesis and Secretion in the Proximal Tubule of the Rabbit. Am. J. Physiol. 1998; 274(5)F924–F931
  • Morgan P.J. Molecular Signaling via the Melatonin Receptor. Adv. Pineal Res. 1991; 5: 191–197
  • Vanecek J. Cellular Mechanisms of Melatonin Action. Physiol. Rev. 1998; 78(3)687–721
  • Montilla P., Tunez I., Munoz M.C., Lopez A., Soria J.V. Hyperlipidemic Nephropathy Induced by Adriamycin: Effect of Melatonin Administration. Nephron 1997; 76(3)345–350
  • Daniels W.M., Reiter R.J., Melchiorri D., Sewerynek E., Pablos M.I., Ortiz G.C. Melatonin Counteracts Lipid Peroxidation Induced by Carbon Tetrachloride but does not Restore Glucose-6 Phosphatase Activity. J. Pineal Res. 1995; 19(1)1–6
  • Sener G., Satiroglu H., Kabasakal L., Arbak S., Oner S., Ercan F., Keyer-Uysa M. The Protective Effect of Melatonin on Cisplatin Nephrotoxicity. Fundam. Clin. Pharmacol. 2000; 14(6)553–560
  • Ha H., Yu M.R., Kim K.H. Melatonin and Taurine Reduce Early Glomerulopathy in Diabetic Rats. Free Rad. Biol. Med. 1999; 26(7–8)944–950
  • Sugden D., Rowe S.J. Protein Kinase C Activation Antagonizes Melatonin-Induced Pigment Activation in Xenopus Laevis Melanophores. J. Cell. Biol. 1992; 119(6)1515–1521

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