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  • 1
    ISSN: 1432-1041
    Keywords: sulphinpyrazone ; metabolism ; single dose ; chronic treatment ; pharmacokinetics ; healthy volunteers
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary The pharmacokinetics of sulphinpyrazone and its major metabolites (sulfide, sulfone, p-hydroxysulfone and p-hydroxy-sulphinpyrazone) were investigated in 9 volunteers after a single oral dose as well as after chronic treatment for 23 days. Chronic administration of sulphinpyrazone, in comparison with a single oral dose, led to significant changes in plasma AUC (115.86 to 42.90 mg/l·h), in renal clearance (1.06 to 1.80l/h), in hepatic intrinsic clearance (319.0 to 598.0l/h), and in the unbound fraction in plasma 1.15 to 1.69%) and in tissue (2.73 to 1.31%). The volume of distribution changed from 20.24 to 52.041. The steady state concentrations predicted from the single dose were significantly higher than the values found after chronic treatment. The results suggest that sulphinpyrazone induces its own metabolism. The metabolism of the sulfone, p-hydroxysulfone and the p-hydroxy-sulphinpyrazone to further degradation products was also induced. Chronic treatment with sulphinpyrazone reduced the plasma AUC of the sulfide and caused a decrease in its elimination half-life (20.9 to 14.3 h). Since considerable amounts of the sulfide are formed in the G.I. tract, it is suggested that besides the induction of metabolism, bacteria which reduce sulphinpyrazone to the sulfide may also be responsible for the observed pharmacokinetic changes.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    European journal of clinical pharmacology 26 (1984), S. 485-489 
    ISSN: 1432-1041
    Keywords: theophylline ; erythromycin ; interaction ; metabolism ; pharmacokinetics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary In 11 healthy volunteers the kinetics of theophylline and the plasma levels and the urinary excretion of its metabolites were studied before and after treatment with erythromycin for 10 days. Theophylline was administered as an intravenous bolus injection (280 mg) followed by a constant intravenous infusion (23.8±4.1 mg/h) for 6 hours. The total clearance of theophylline at steady-state (63.4±9.9 vs 63.8±14.4 ml/min, before vs after erythromycin treatment) and the elimination half-life after cessation of the infusion (6.7±2.6 vs 7.5±1.8 h, before vs after treatment) did not change during the treatment with erythromycin. No difference in the formation of metabolites before and after treatment with erythromycin was detected; the findings in urine were 40.4±5.0 vs 42.1±5.4% 1,3-dimethyluric acid, 29.6±4.6 vs 30.1±5.9% 1-methyluric acid and 13.4±3.5 vs 12.5±2.2% 3-methylxanthine before and after erythromycin treatment, respectively. It is concluded that a clinically relevant interaction between erythromycin and theophylline does not occur.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    European journal of clinical pharmacology 39 (1990), S. 577-581 
    ISSN: 1432-1041
    Keywords: Benzbromarone ; elimination phenotypes ; pharmacokinetics ; metabolism ; genetic variation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary Following oral administration of the uricosuric drug benzbromarone two major metabolites appear in the circulation, 1'-hydroxy-benzbromarone (M1), and a second product (M2) of unknown structure. The plasma concentrations of the parent drug and of M1 and M2 have now been compared in two different elimination phenotypes, 10 subjects who eliminated the drug rapidly (S1–10) and one individual (S11) whose elimination capacity was impaired, presumably due to genetic variation (S11). The AUC (0–96) of the parent drug in S11 was 145 gmg · ml−1 h, and in the other individuals it averaged 18.3 (11.4–24.5) μg · ml−1 h. The plasma elimination half life of benzbromarone was 3.34 (1.77–5.24) h in the rapid eliminators, and 13.08 h in the subject with the elimination defect. The mean plasma elimination half life of the metabolites in S1–10 amounted to 20.1 (11.9–41.2) h for M1, and 17.2 (12.9–30.7) h for M2. In S11 the plasma elimination half life of M1 was prolonged to 76.6 h, and of M2 to 75.4 h. Thus, the elimination defect in S11 was not restricted to the parent drug, but it also involved the two major metabolites M1 and M2. This might be a consequence of a hepatic enzyme deficiency, or be due to impairment of drug excretion.
    Type of Medium: Electronic Resource
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