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Biomedical subjects

W L Schary

Publications and source records attributed to W L Schary.

7 recordsLinked to original sources

Effect of moricizine on the pharmacokinetics and pharmacodynamics of warfarin in healthy volunteers.

Moricizine HCl, a new orally active antiarrhythmic agent, induces its own hepatic metabolism and consequently may interfere with the metabolism of warfarin, a drug used commonly by cardiac patients that also is subject to extensive hepatic metabolism. Both drugs are also highly protein bound in plasma. To assess the possibility of an interaction, single-dose sodium warfarin (25 mg oral Coumadin, Du Pont Pharmaceuticals, Wilmington, DE) pharmacokinetics, pharmacodynamics; and plasma protein binding were examined in 12 healthy male volunteers 14 days before and 14 days after starting chronic oral moricizine HCl administration (250 mg every 8 hours). The terminal elimination rate constant of warfarin was increased by about 10% when measured in the presence of chronic moricizine administration. However, oral plasma clearance, apparent volume of distribution, maximum peak plasma concentration, time to reach peak concentration, and protein binding were unaffected. More importantly, there was no evidence of a pharmacodynamic interaction based on the prothrombin time profile. It was concluded that no clinically significant interaction occurs under these conditions.

Adult

Influence of food on the oral absorption and bioavailability of moricizine.

Moricizine, a unique Class I antiarrhythmic agent, was orally administered with and without a meal to 24 healthy male subjects to determine the effect of food on moricizine absorption and bioavailability. Relative to the fasting state, a standardized breakfast delayed the time to peak plasma moricizine concentration (1.2 vs. 0.9 hr; P less than .03) and lowered peak plasma moricizine concentration by 24% (0.55 vs. 0.72 microgram/mL; P less than .03). Bioavailability, as measured by area under the plasma moricizine concentration versus time curve, was not significantly altered by the meal.

Administration, Oral

An in vitro study of drug displacement interactions: warfarin-salicylate and warfarin-phenylbutazone.

The binding interactions between warfarin-salicylate and warfarin-phenylbutazone in the presence of 4 g percent bovine serum albumin at 37 degrees C were studied using equilibrium dialysis. Methods of representing and analysing drug binding interactions are discussed. Scatchard plots, double reciprocal plots and the like are shown to be of no use in representing drug displacement interactions since they display only one drug and they can be potentially misleading. It is argued that a preferable method of analysing drug displacement interaction data is in terms of a stepwise multiple equilibria model. The numerical problems associated with fitting this kind of model to the data are discussed. A three-dimensional representation of the binding surface is proposed as a superior means of visualizing drug displacement interactions.

Animals

Influence of acute viral hepatitis on disposition and pharmacologic effect of warfarin.

Five patients received a small oral dose of warfarin during and after recovery from acute viral hepatitis. Mean (+/- SD) clearance, volume of distribution, and half-life of the drug were 6.1 +/- 0.9 ml/hr/kg, 0.09 +/- 0.04 L/kg, and 23 +/- 5 hr, respectively, during the acute period. After apparent recovery, observed values were 6.1 +/- 0.7 ml/hr/kg, 0.21 +/- 0.02 L/kg, and 25 +/- 3 hr. These differences were not significant. Pattern of renal elimination of warfarin metabolites and drug protein binding did not change between the two phases. During the acute period of illness, prothrombin time increased in 2 of the 5 subjects, but remained within normal limits in all participants during the recovery period. This study shows that warfarin disposition may not change as a consequence of mild or moderate hepatic impairment.

Adult

Warfarin-phenylbutazone interaction in man: a long term multiple dose study.

The effect of phenylbutazone on the disposition of warfarin was studied in a subject given warfarin daily for one month. During concomitant phenylbutazone administration, the total plasma warfarin concentration declined from 4.2 to 2.0 mg/L. In contrast, the unbound warfarin plasma concentration rose from 0.020 to 0.033 mg/L. The plasma concentration and daily urinary excretion of 7-hydroxywarfarin fell during phenylbutazone administration. Warfarin is administered as a racemate. Exclusive to and the major metabolic route of the more potent S-isomer is 7-hydroxylation. It is concluded that inhibition of S-warfarin metabolism can help explain the increased anticoagulation seen when phenylbutazone is added to the dosage regimen of a patient stabilized on warfarin.

Adult