Propoxyphene bioavailability.
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Biomedical subjects
Publications and source records attributed to R G Stoll.
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A specific high-pressure liquid chromatographic method for the determination of chlorpheniramine and pseudoephedrine in urine was developed and applied in a urinary excretion study of normal healthy subjects who received a sustained-release dosage form contianing 8 mgof chlorpheniramine maleate and 120 mg of pseudoephedrine hydrochloride. Five subjects received one dose on Day 1, followed by multiple dosing every 12 hr for 7 days without ammonium chloride administration. Four subjects received one dose of the sustained-release dosage form together with ammonium chloride. Urine samples were collected during the 1st day and at steady state. The method is specific and simultaneously determines choorpheniramine, two metabolites (mono- and di-desmethylchlorpheniramine), pseudoephedrine, and norpseudoephedrine. The assay recovery was less than 97% (0.06-3 microgram/ml) for chlorpheniramine maleate and less than 98% (1.5-75 microgram/ml) for pseudoephedrine hydrochloride. Excretion of chlorpheniramine and its two metabolites in urine was enhanced after ammonium chloride administration. At steady state, a change in urine pH from 5.69 to 6.46 resulted in more than a 25% decrease in chlorpheniramine and monodesmethylchlorpheniramine excretion. In spite of expected changes in its biological half-life, the overall amount of unchanged pseudoephedrine excreted in urine was not affected by urine pH, presumably because it is primarily excreted in urine as intact drug.
Two methaqualone tablets that exhibited different in vitro dissolution rates were administered to 11 normal healthy male volunteers. Serial blood samples were withdrawn following administration of each tablet, and plasma methaqualone concentrations were determined by an established spectrophotofluormetric assay. Both tablets produced virtually identical plasma concentration versus time profiles in humans, and no statistically significant differences in either the rate or extent of drug absorbed were detected. The results indicate that there is no correlation between in vivo bioavailability and the modified NF in vitro dissolution test used.
The effect of a kaolin--pectin suspension on the bioavailability of orally administered digoxin was evaluated when both drugs were given concomitantly and when their time of administration was separated by 2 hr. Coadministration of the antidiarrheal with the cardiac glycoside delayed absorption of the latter and, at the same time, decreased by 62% the amount of drug absorbed. Intersubject variation in digoxin bioavailability also was increased more than twofold. When the kaolin--pectin suspension was given 2 hr before the cardiac glycoside, the digoxin absorption rate was not affected, although its relative extent of absorption was reduced by about 20%. In contrast, when the antidiarrheal was given 2 hr after digoxin, neither the rate nor the extent of absorption of the cardiac glycoside was perturbed. No change in the intersubject variability in digoxin bioavailability was noted whether the antidiarrheal was given 2 hr before or 2 hr after the cardiac glycoside.
Plasma level data on two investigational capsule formulations of propoxyphene with similar physicochemical parameters demonstrate that the formulations have different in vivo bioavailabilities. The potential bioavailability problems with water-soluble drugs and the lack of correlation of in vitro and in vivo parameters for equivalent drug formulations are discussed.
In a crossover study of the bioavailability of marketed nitrofurantoin tablets, there were significant differences in the urinary excretion of nitrofurantoin suggestive of bioavailability problems with this drug. Standard in vitro assessments of dissolution rate and disintegration time were not correlated with bioavailability and failed to detect 3 to 18 fold differences in the amount of nitrofurantoin absorbed. In fact, four lots, made by the same manufacturer had almost identical in vitro measurements (dissolution rate; distinegration time), yet two of these lots were only 6.6 and 26% as available as the reference nitrofurantoin product, and two others were comparatively available. The need for the development of an in vitro - in vivo correlation for control of lot to lot uniformity has clearly been demonstrated for nitrofurantoin. Such correlations must include tests other than those presently required.
The protein binding of warfarin was determined in the serum of 18 normal adult subjects (8 males and 10 females). A statistically significant negative correlation between free fraction of warfarin and albumin concentration was found. The free fraction of warfarin in the serum of women was significantly larger than that in the serum of men, apparently due to the lower albumin concentration in the serum of women.
All antibiotics marketed in the United States must undergo batch certification by the Food and Drug Administration. It is often assumed that the different brands of a particular antibiotic that pass in vitro batch certification tests have equal in vivo bioavailability. The fallacy of this assumption is clearly supported for commercially available lots of tetracycline hydrochloride that had passed batch certification tests yet had different serial serum concentrations.
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