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S Stavchansky

Publications and source records attributed to S Stavchansky.

4 recordsLinked to original sources

Pharmacokinetic and metabolic disposition of p-chloro-m-xylenol (PCMX) in dogs.

The pharmacokinetic and metabolic profile of p-chloro-m-xylenol (PCMX) was studied in healthy mongrel dogs after intravenous and oral administration of single doses of 200 and 2000 mg of PCMX, respectively. Calculation of pharmacokinetic parameters was based on compartmental and noncompartmental methods. The mean pharmacokinetic parameters of elimination half-life and mean residence time were 1.84 and 1.69 hr, respectively. The apparent volume of distribution at steady state was estimated to be 22.4 liters, and the plasma clearance was 14.6 liters/hr. The bioavailability of PCMX was 21%, indicating low absorption for this drug. PCMX's metabolite data show that a presystemic elimination process (first-pass effect) is also occurring. PCMX plasma concentrations after intravenous administration of 500-, 200-, and 100-mg doses were found to be proportional to the dose given, demonstrating that the pharmacokinetic profile of PCMX is linear over the dose range studied. Biotransformation studies showed that urinary excretion was not the major route for rapid elimination of unchanged PCMX and almost all material excreted in urine was associated with the conjugated species (glucuronides and sulfates). Statistical significant differences were not found (P greater than 0.05) between the percentages excreted in urine of PCMX and its conjugated metabolites after intravenous and oral administration. The percentages excreted in urine after iv and oral doses of unchanged PCMX were, respectively, 0.45 and 0.37; total conjugates, 46.3 and 43.3; sulfates, 38.1 and 33.2; and glucuronides, 8.2 and 10.2.

Administration, Oral

A method to predict infinity values for biexponential processes.

An equation is presented which allows infinity values for biexponential processes to be predicted in the early nonlinear phase when samples are taken at equal time intervals. This equation is independent of the value or ratio of the rate constants involved in the process. However, this method is very sensitive to noise normally associated with urine data.

Digoxin

Solvent system effects on drug absorption.

The in situ rat gut technique was used to determine 14-C salicylic acid absorption from aqueous solutions containing 20% glycerol, 20% propylene glycol, 10% ethanol, and 20% polyethylylene glycols (PEG) 4000 and 6000. A phosphate buffer solution of salicylic acid served as a control. Observed rate constants for disappearance of activity from the gut are 0.031 min-1 for glycerol, 0.0327 min-1 for PEG 6000, 0.0395 min-1 for propylene glycol, 0.475 min-1 for polyethylene glycol 4000, 0.0558 min-1 for ethanol, and 0.0752 min-1 for the control. The rate of disappearance from the gut is significantly slower than control for 20% glycerol, PEG 4000 and PEG 6000 solutions (p less than or equal to 0.01). Activity disappears more rapidly from 10% ethanol solutions than from PEG 6000 and glycerol (p = 0.01). Water flux into and out of the intestinal lumen was estimated from tritiated inulin concentrations in the perfusate. A trend for increased loss of activity from ethanol and control solutions associated with net water efflux from the intestine was observed. These results suggest that the composition of drug delivery systems may significantly affect the absorption of drugs from solution.

Animals