Hydrochlorothiazide, amiloride and tolmetin in the treatment of diabetes insipidus of Brattleboro rats. 1985

U Alon, and M D Wellons, and J C Chan

To test the effects of hydrochlorothiazide (HCTZ) alone and in combination with amiloride or tolmetin in the treatment of nephrogenic diabetes insipidus, metabolic studies of 12 days each were carried out in 36 male, Brattleboro rats. They were divided into five groups as follows: (A) controls; (B) high dose HCTZ at 6 mg/rat/day; (C) low dose HCTZ at 3 mg/rat/day; (D) HCTZ identical to (C) but with addition of amiloride at 0.6 mg/rat/day; (E) HCTZ identical to (C) but with addition of tolmetin at 40 mg/rat/day. The immediate response to treatment was a significant increase in urinary sodium excretion from mean values (mEq/kg/day) of less than 11 to values higher than 13, except group E with mean value of 12. There was marked increase in urinary potassium excretion (mEq/kg/day), from mean control value of 15.5 to 21.5, 20.8, 18.5 and 17.7 in groups B, C, D and E, respectively. During the last three days of the study, mean urine osmolality (Uosm) and free water reabsorption (TCH2O) increased significantly: [formula: see text]. These indices were higher in groups B, D and E than in group C. Serum osmolality decreased only in groups B, C and D but not in the HCTZ-tolmetin groups. Similarly, serum sodium concentration was significantly lower in groups B, C and D compared to the control and the HCTZ-tolmetin groups. Serum potassium concentration was reduced in all the treated groups, but in both the groups treated with HCTZ-amiloride and HCTZ-tolmetin, the reduction was smaller than the one observed in the high-HCTZ treated group.(ABSTRACT TRUNCATED AT 250 WORDS)

UI MeSH Term Description Entries
D008297 Male Males
D009318 Natriuresis Sodium excretion by URINATION. Natriureses
D009994 Osmolar Concentration The concentration of osmotically active particles in solution expressed in terms of osmoles of solute per liter of solution. Osmolality is expressed in terms of osmoles of solute per kilogram of solvent. Ionic Strength,Osmolality,Osmolarity,Concentration, Osmolar,Concentrations, Osmolar,Ionic Strengths,Osmolalities,Osmolar Concentrations,Osmolarities,Strength, Ionic,Strengths, Ionic
D011188 Potassium An element in the alkali group of metals with an atomic symbol K, atomic number 19, and atomic weight 39.10. It is the chief cation in the intracellular fluid of muscle and other cells. Potassium ion is a strong electrolyte that plays a significant role in the regulation of fluid volume and maintenance of the WATER-ELECTROLYTE BALANCE.
D011758 Pyrroles Azoles of one NITROGEN and two double bonds that have aromatic chemical properties. Pyrrole
D011910 Rats, Brattleboro A mutant strain of Rattus norvegicus used in research on renal function and hypertension and as a disease model for diabetes insipidus. Brattleboro Rats
D001769 Blood The body fluid that circulates in the vascular system (BLOOD VESSELS). Whole blood includes PLASMA and BLOOD CELLS.
D003919 Diabetes Insipidus A disease that is characterized by frequent urination, excretion of large amounts of dilute URINE, and excessive THIRST. Etiologies of diabetes insipidus include deficiency of antidiuretic hormone (also known as ADH or VASOPRESSIN) secreted by the NEUROHYPOPHYSIS, impaired KIDNEY response to ADH, and impaired hypothalamic regulation of thirst.
D004231 Diuresis An increase in the excretion of URINE. (McGraw-Hill Dictionary of Scientific and Technical Terms, 6th ed) Diureses
D004359 Drug Therapy, Combination Therapy with two or more separate preparations given for a combined effect. Combination Chemotherapy,Polychemotherapy,Chemotherapy, Combination,Combination Drug Therapy,Drug Polytherapy,Therapy, Combination Drug,Chemotherapies, Combination,Combination Chemotherapies,Combination Drug Therapies,Drug Polytherapies,Drug Therapies, Combination,Polychemotherapies,Polytherapies, Drug,Polytherapy, Drug,Therapies, Combination Drug

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