Drug Metabolism and Disposition 1980-01-01

Absorption and disposition of furosemide in healthy volunteers, measured with a metabolite-specific assay.

D E Smith, E T Lin, L Z Benet

Index: Drug Metab. Dispos. 8(5) , 337-42, (1980)

Full Text: HTML

Abstract

The objectives of this study were to qualitatively and quantitatively compare the metabolism, pharmacokinetics, and bioavailability of furosemide in healthy volunteers after intravenous and oral administration. We also determined the plasma protein binding of furosemide in vivo after iv administration. Nine males received furosemide (Hoechst, 40 mg iv and 80 mg po) in a random crossover fashion. Serial plasma samples were collected over 24 hr. Fluid and electrolyte urinary losses were replaced throughout the study. Furosemide as well as its potential metabolites were measured by a rapid, sensitive, and specific spectrofluorimetric HPLC assay. Total plasma clearance averaged 164 +/- 26 (SD) ml/min, of which 66.2 +/- 6.8% represented renal clearance of unchanged drug. Volume of distribution (steady-state) was 109 +/- 19 ml/kg. These clearance and volume measurements are in good agreement with data previously published by our group. The mean absolute bioavailability of furosemide was 42.8 and 44.0%, as calculated from plasma and urine data, respectively. Protein binding of furosemide in vivo was determined by a spectrofluorimetric HPLC assay and ranged from 98.5 to 99.1%. Approximately 5.5 mg of furosemide was excreted as a glucuronide conjugate after iv dosing and about 5.1 mg after po administration. We found no evidence of the proposed metabolite of furosemide, 2-amino-4-chloro-5-sulfamoylanthranilic acid (CSA) in any of our plasma or urine samples. In addition, we conclusively demonstrated CSA to be an analytical artifact.


Related Compounds

  • 4-Chloro-5-sulfamo...

Related Articles:

The use of HPLC to elucidate the metabolism and urinary excretion of furosemide and its metabolic products.

1981-09-01

[Acta Pharmacol. Toxicol. (Copenh.) 49(3) , 223-9, (1981)]

The binding of furosemide to serum proteins in elderly patients: displacing effect of phenprocoumon.

1980-09-01

[Acta Pharmacol. Toxicol. (Copenh.) 47(3) , 202-7, (1980)]

Furosemide accelerates gentamicin accumulation in cultured renal cells (LLC-PK1 cells).

1989-01-01

[Nephron 53(2) , 138-41, (1989)]

The urinary excretion of frusemide and its metabolites by kidney transplant patients.

1987-01-01

[Eur. J. Clin. Pharmacol. 32(3) , 313-5, (1987)]

Microbial models of mammalian metabolism. N-dealkylation of furosemide to yield the mammalian metabolite CSA using Cunninghamella elegans.

1992-01-01

[Drug Metab. Dispos. 20(6) , 882-8, (1992)]

More Articles...