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Biomedical subjects

E Matusik

Publications and source records attributed to E Matusik.

4 recordsLinked to original sources

Kinetics of procainamide and N-acetylprocainamide in renal failure.

Four normal subjects and four functionally anephric patients were given 6.5 mg/kg of body wt of procainamide hydrochloride i.v., and plasma concentrations of procainamide (PA) and its major active metabolite N-acetylprocainamide (NAPA) were measured. Two individuals in each group were fast isonicotinic acid hydrazide (INH) and PA acetylators. The pharmacokinetics of PA and NAPA were analyzed with a computer program (SAAM 23). Volume of distribution (Vdss) and renal clearance of PA were similar in normal subjects regardless of acetylator phenotype. Nonrenal clearance was faster (383 vs. 244 ml/min), and PA elimination half-life (t 1/2) was shorter (2.6 vs. 3.5 hr) in fast acetylators. In the functionally anephric patients, Vdss was similar to that of normal subjects. Nonrenal clearence was faster (117.5 vs. 93.5 ml/min) and PA t 1/2 shorter (10.8 vs. 17.0 hr) in fast than in slow acetylators. In these patients, acetylation accounted for 56% of PA elimination, and NAPA concentrations reached 0.8 microgram/ml or more. The t 1/2 of NAPA in renal failure was 41.5 hr, in accord with predictions from studies in normal subjects, assuming no impairment in nonrenal NAPA elimination. PA metabolism, however, is severely impaired by renal failure, so PA t 1/2 was prolonged to an unpredictably greater extent than would be expected from studies in normal subjects.

Adult↗

Artificial kidneys and clearance calculations.

Clearance of solutes by artificial kidneys can be calculated using plasma flow and solute concentration, whole blood flow and plasma solute concentration, and midpoint of dialysis blood or plasma solute concentration and total amount of solute removed. Using these methods, the clearance of procainamide (PA) and N-acetylprocainamide (NAPA) was determined in 4 patients. In all but one case clearances using total amount recovered were greater than clearances using whole blood flow and plasma concentration. Without exception, clearance determined using amount recovered was substantially greater than clearance using plasma flow and plasma levels, suggesting that both PA and NAPA are removed not only from plasma but also from red blood cells. In vitro clearance of PA, NAPA, quinidine, and phenobarbital by 11 clinically available artificial kidneys and an XAD-4 hemoperfusion column was determined and differences were found.

Blood Flow Velocity↗

Acetylation of procainamide in man and its relationship to isonicotinic acid hydrazide acetylation phenotype.

To assess the extent of the acetylation of procainamide (PA) to N-acetylprocainamide (NAPA) in man, and its relation to isonicotinic acid hydrazide (INH) acetylation phenotype, the following study was done. Fourteen subjects received 500 mg of PA - HCL orally. INH acetylation phenotype was determined by the serum half-life of INH after 4 mg/kg of INH orally. Each urine voided for 96 hr after procainamide was saved and levels of procainamide and NAPA measured by gas-liquid chromatography. The 14 subjects eliminated 52 plus or minus 4 percent of the dose as procainamide and 16 plus or minus 2 percent of the dose as NAPA. Four fast INH acetylators eliminated 23 plus or minus 3 percent of the dose as NAPA compared to 12 plus or minus 1 percent by the slow acetylators (p smaller than 0.05). The amount of unaltered procainamide excreted by the fast and slow INH acetylators was not significantly different, 50 plus or minus 4 percent and 53 plus or minus 4 percent, respectively. Of the total amount of drug recovered in the urine of the fast and slow INH acetylators, NAPA accounted for 32 percent and 19 percent, respectively (p smaller than 0.01). There appears to be a positive correlation between the ability to acetylate INH and the ability to acetylate procainamide.

Acetylation↗

Fluorometric assay for N-acetylprocainamide.

We describe a simple, rapid fluorometric assay for separate quantitative analysis of procainamide and N-acetylprocainamide in mixtures. The effective lenear range (fluorescence vs. concentration) in serum is 0.1 to 10.0 mg/liter, regardless of the ratio (by weight) of the two drugs from 1:10 to 10:1. Analytical recoveries by the extraction method used were 100.0 +/- 3.0% and 98.0 +/- 4.0%, respectively. For determination of either compound, the maximum coefficient of variation was 10%.

Humans↗