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Biochemical Pharmacology|October 20, 1992
Inhibition of sodium pump by bepridil. An in vitro and microcalorimetric studyH Kovacic, P Gallice, A CrevatThe Journal of Pharmacology and Experimental Therapeutics|December 1, 1993
Chloride dependent intracellular pH increase induced by bepridil in human red blood cells: a possible involvement in correction of ischemic acidosisH Kovacic, P Gallice, M Sarrazin, et al.Diabete & Metabolisme|May 1, 1992
Hypothesis: low Na/K-ATPase activity in the red cell membrane, a potential marker of the predisposition to diabetic neuropathyD Raccah, P Gallice, J Pouget, et al.Clinical Chemistry|October 1, 1985
Identification by nuclear magnetic resonance and mass spectrometry of a glucuronic acid conjugate of o-hydroxybenzoic acid in normal urine and uremic plasmaJ P Monti, P Gallice, A Crevat, et al.Biochimica Et Biophysica Acta|February 9, 1989
Phosphorus-31 and water proton relaxation in living erythrocytes. Application to uremiaJ P Monti, P Gallice, A Murisasco, et al.Nephron|January 1, 1991
Restoration by biotin of the in vitro microtubule formation inhibited by uremic toxinsD Braguer, P Gallice, H Yatzidis, et al.Clinica Chimica Acta; International Journal of Clinical Chemistry|March 18, 1997
Sodium pump and Na+/H+ activities in uremic erythrocytes. A microcalorimetric and pH-metric studyH Kovacic, P Gallice, P Brunet, et al.Biomedicine / [Publiee Pour L'A.A.I.C.I.G.]|October 1, 1979
Action of middle molecules from chronic renal insufficiency treated by hemodialysis on mitochondrial respirationJ B Rinaudo, P Gallice, A Crevat, et al.Clinical Nephrology|April 1, 1986
Inhibition of microtubule formation by uremic toxins: action mechanism and hypothesis about the active componentD Braguer, P Gallice, J P Monti, et al.Clinical Chemistry|October 1, 1988
23Na nuclear magnetic resonance study of Na+-K+ pump inhibition by a fraction from uremic toxinsP Gallice, J P Monti, M Baz, et al.Pageof 3