Effect of vasopressin, cyclic 3',5'-AMP, and chlorpropamide on water permeability of toad urinary bladder
Urakabe, S.; Shirai, D.
Medical Journal of Osaka University 21(2): 151-159
1971
ISSN/ISBN: 0030-6169 PMID: 4334601 Document Number: 31693
Document emailed within 1 workday
Related Documents
Mann, W.A.; Stassen, F.; Huffman, W.; Kinter, L.B. 1986: Mechanism of action and structural requirements of vasopressin analog inhibition of transepithelial water flux in toad urinary bladder Journal of Pharmacology and Experimental Therapeutics 238(2): 401-406Bentley, P.J. 1972: Inhibition by dopamine of the hydro-osmotic response (water transfer) of the toad bladder to vasopressin Journal of Pharmacology and Experimental Therapeutics 181(1): 155-160
Levine, S.D.; Jacoby, M.; Satriano, J.A.; Schlondorff, D. 1981: The effects of amrinone on transport and cyclic AMP metabolism in toad urinary bladder Journal of Pharmacology and Experimental Therapeutics 216(2): 220-224
Coviello, A. 1973: Hydrosmotic effect of angiotensin Ii in the toad bladder: role of cyclic AMP Acta Physiologica Latino Americana 23(5): 350-357
Parnova, R.G.; Lavrova, E.A.; Bakhteeva, V.T.; Fok, E.M. 2004: Atrial natriuretic factor stimulates the frog urinary bladder osmotic permeability in presence of a cyclic nucleotide phosphodiesterase inhibitor Rossiiskii Fiziologicheskii Zhurnal Imeni I.M. Sechenova 90(2): 212-220
Sabatini, S.; Arruda, J.A. 1984: Effect of lanthanum on urinary acidification and sodium transport by the turtle and toad bladder Mineral and Electrolyte Metabolism 10(1): 12-20
Grosso, A.; Cox, J.A.; Malnoë, A.; de Sousa, R.C. 1982: Evidence for a role of calmodulin in the hydrosmotic action of vasopressin in toad bladder Journal de Physiologie 78(3): 270-278
Hutchinson, J.H.; Porter, G.A. 1972: The role of bacterial contamination in isolated toad urinary bladder: effect of antibiotics on aldosterone-stimulated active sodium transport and RNA specific activity Research Communications in Chemical Pathology and Pharmacology 3(3): 585-594
Delorenzo, R.J. 1975: Possible correlation between protein D phosphorylation and membrane permeability changes to sodium ions in the toad bladder and its relationship to neuropharmacology Bulletin of the Parenteral Drug Association 29(5): 250-260
Bagrov, I.I.; Manusova, N.B. 2000: Effect of pH on the osmotic water flow stimulated by arginine vasopressin added to the solution at the bladder mucosa from the frog Rana temporaria Rossiiskii Fiziologicheskii Zhurnal Imeni I.M. Sechenova 86(12): 1686-1688
Li, J.H.; Zuzack, J.S.; Kau, S.T. 1986: Effects of detergents on sodium transport in toad urinary bladder Journal of Pharmacology and Experimental Therapeutics 238(2): 415-421
Guay-Woodford, L.M.; Platt, O.; Harris, H.W. 1991: Toad urinary bladder epithelial cells contain an analogue of cytoskeletal protein 4.1 American Journal of Physiology 260(6 Pt 1): C1308-C1314
Halushka, P.V.; Levanho, A.; Auber, M. 1980: Arachidonic acid stimulates short-circuit current in the isolated toad urinary bladder Journal of Pharmacology and Experimental Therapeutics 213(3): 462-467
Geering, K.; Girardet, M.; Bron, C.; Kraehenbühl, J.P.; Rossier, B.C. 1982: Biosynthesis of the catalytic subunit of (Na+, K+)-ATPase in toad kidney and toad bladder epithelial cells Progress in Clinical and Biological Research 91: 537-542
Burch, R.M.; Halushka, P.V. 1983: 45Ca fluxes in isolated toad bladder epithelial cells: effects of agents which alter water or sodium transport Journal of Pharmacology and Experimental Therapeutics 224(1): 108-117
Herrera, F.C.; Herrera, A.M.; Egea, R. 1974: Relationship between ionic content and ionic transport, short-circuit current and potential difference in the epithelium of toad urinary bladder Revue Roumaine de Physiologie 11(2): 199-212
Winkler, S.N.; Torikai, S.; Levine, B.S.; Kurokawa, K. 1982: Effect of somatostatin on vasopressin-induced antidiuresis and renal cyclic AMP of rats Mineral and Electrolyte Metabolism 7(1): 8-14
Martines-Maldonado, M.; Stavroulaki-Tsapara, A.; Tsaparas, N.; Suki, W.N.; Eknoyan, G. 1975: Renal effects of lithium administration in rats: alterations in water and electrolyte metabolism and the response to vasopressin and cyclic-adenosine monophosphate during prolonged administration Journal of Laboratory and Clinical Medicine 86(3): 445-461
Kawamura, N.; Okada, K.; Kinoshita, H.; Sameshima, M.; Matsunaga, J.; Kawakami, T.; Hashimoto, T. 1987: Studies on the drug permeability of vesical walls. The permeability of mecillinam from the bladder Japanese Journal of Antibiotics 40(4): 739-742
Arruda, J.A.; Lubansky, H.; Dytko, G.; Mola, R.; Kleps, R.A.; Burt, C.T. 1984: Intracellular pH of the urinary bladder and red blood cells of the fresh water turtle Mineral and Electrolyte Metabolism 10(4): 232-238