Effects of oral contraceptives on carbohydrate metabolism.
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Biomedical subjects
Publications and source records attributed to R Daneels.
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Using a double-blind procedure, 29 patients with a recent myocardial infarction were randomly allocated to a placebo group (n = 14) and to a group receiving aspirin, 300 mg three times a day (n = 15) over 7 days. No change in renal function was observed in either treatment group. Compared with the placebo group, the 24-h urinary excretion of prostaglandin E2 (PGE2) was significantly suppressed in the aspirin group, but the urinary kallikrein activity was unchanged. These results contrast with our previous study of similar patients, in which sulfinpyrazone decreased renal function, as well as the urinary PGE2 and kallikrein excretions. These divergent effects of aspirin and sulfinpyrazone on urinary kallikrein activity could explain the different trends in renal function observed early after myocardial infarction.
In this randomized, double-blind, placebo-controlled trial the renal function was studied in 60 patients recovering from coronary artery bypass surgery treated with a daily dose of 800 mg sulphinpyrazone (SP) or 880 mg acetylsalicylic acid (ASA) or placebo. Serum creatinine level increased (p less than 0.05) during the first 2 days of SP treatment, but returned to its baseline level within 4 days under maintained therapy; during ASA and placebo therapy no significant changes occurred. Serum urea levels decreased (p less than 0.01) during ASA and placebo treatments as time from surgery subsided; the decrease of serum urea level was delayed in the SP group compared with the ASA and placebo groups. Urinary excretion of prostaglandin E2 (PGE2) was significantly decreased (p less than 0.01) during ASA treatment; in the SP group, urinary PGE2 excretion tended also to decrease during the first days of treatment, the decrease being significant only on the 4th day (p less than 0.01). The urinary excretion of kallikrein decreased significantly only in the SP group (p less than 0.01), while the changes in the ASA and placebo group were not significant. We suggest that the rapidly reversible acute renal impairment during SP therapy was probably due to a transient renal ischemia caused by a drug-related decrease in urinary kallikrein excretion rather than by renal prostaglandin inhibition.
Sulphinpyrazone administered acutely to 8 healthy male volunteers decreased the urinary (U) excretion of prostaglandin (PG)E2 (p less than 0.01)( but not of PGF2 alpha. Also, the ratio U-PGE2/U-PGF2 alpha and the urinary excretion of kallikrein declined (p less than 0.001 and p less than 0.05 respectively). Sulphinpyrazone therapy caused a significant inhibition of PRA (p less than 0.05). Renal function, as assessed by serum creatinine and creatinine clearance, remained constant in these normal men, possibly related to the fact that both the vasodilatory PG-kallikrein-kinin system and the vasoconstrictive renin-angiotensin system were inhibited by sulphinpyrazone. However, it is conceivable that in clinical situations where vasoconstrictive stimuli are enhanced, sulphinpyrazone can disturb the balance between those systems and can lead to an impaired renal function.