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Biomedical subjects

G Grasmeijer

Publications and source records attributed to G Grasmeijer.

8 recordsLinked to original sources

Clinical pharmacokinetics and tolerability of alpidem in healthy subjects given increasing single doses.

In a double-blind, placebo-controlled, cross-over experiment in 21 healthy male volunteers, aged 19 to 27 y, the pharmacokinetics and tolerance of the new anxiolytic drug alpidem (SL80.0342) and its three major metabolites were studied after single doses of 25, 50, 100 and 200 mg. Plasma concentrations of alpidem (in 20 subjects) and metabolites (in 6 subjects) were measured by HPLC over a period of 54 h after dosing. Cmax, tmax and AUC(0-54) and, when possible, t1/2 were determined for alpidem and metabolites and the dose linearity of the parameters was investigated. The time to peak of alpidem was dose independent in most subjects and was short (1-4 h); the mean values at the four dosing levels were 1.9, 1.7, 1.6 and 1.8 h. The peak concentration increased with the dose, the mean values being 17, 34, 88 and 115 ng.ml-1, respectively. In 50% of the subjects Cmax tended to stabilize between the 100 and 200 mg dose. Dose linearity was also present for the AUC, which plateaued between the 100 and 200 mg dose in only 3 out of 20 subjects; the mean AUC was 119, 281, 669 and 1117 ng.ml-1.h, respectively. The apparent half-life of elimination appeared to be dose independent, mean values at the increasing dosing levels being 18.7, 19.9, 18.1, and 17.9 h. A similar relationship between the kinetics parameters and dose of the alpidem was observed for the metabolites SL83.0912, SL80.0522 and SL83.0725. The formation of metabolites was not saturated as their AUCs relative to corresponding alpidem AUCs were not dose related.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Effects of alpha-interferon on theophylline pharmacokinetics and metabolism.

1. The influence of alpha-interferon (Roferon-A) on the pharmacokinetics and metabolism of theophylline was studied in healthy adults. Roferon-A was administered as an intra-muscular injection (3 x 10(6) iu) once-a-day over 3 days. One week prior to and immediately after this course a single 20 min aminophylline infusion (4 mg kg-1) was given. 2. Blood samples for theophylline analysis were taken over 48 h. Urine was collected up to 72 h and assayed for theophylline and its major metabolites 3-methylxanthine, 1,3-dimethyluric acid and 1-methyluric acid. 3. Pharmacokinetic parameters for theophylline in plasma were calculated. From urinary excretion data the overall metabolic clearance of theophylline and clearances for formation of the metabolites were calculated. 4. After interferon administration, there was a significant increase of approximately 15% in the mean values of the terminal elimination half-life, area under the curve and mean residence time of theophylline in association with a similar decrease in plasma clearance (P less than 0.05). Formation clearances of the metabolites tended to be smaller after treatment, but only the change in the overall clearance of theophylline was significantly different (P less than 0.05). There was no systematic shift in the metabolic pattern of theophylline. 5. Additional investigations of the influence of the duration of alpha-interferon treatment are necessary before definite conclusions can be drawn about the mechanism and the clinical relevance of the described interaction.

Adult↗

Comparison of the in vitro dissolution properties and in vivo steady-state pharmacokinetics of two sustained-release theophylline preparations.

The sustained-release properties and relative bioavailability of Theolin Retard and Pharphylline Retard were studied in eight healthy adults after treatment for five days with twice daily 450 mg, respectively 425 mg. During the day-time dosing interval on the fourth and fifth day theophylline plasma concentrations were assayed by HPLC. After intake of Theolin Retard, minimum theophylline plasma concentrations were significantly higher, fluctuations in theophylline plasma concentrations were significantly smaller and t75 (the period within a dosing interval during which the plasma concentration exceeds 75% of the maximal concentration) was significantly longer than after Pharphylline Retard. Maximal concentrations and AUC values were not significantly different. For both products the plasma concentration time-curves on day 5 were significantly lower than on day 4. In vitro dissolution tests confirmed the more sustained release of theophylline from Theolin Retard. These results indicate an equal extent of absorption from the two products but better sustained-release properties for Theolin Retard.

Adult↗

Theophylline disposition after single-dose ingestion of a once-a-day preparation (Dilatrane A. P. 400 mg) with and without breakfast.

In a two-way single dose crossover experiment in 12 healthy young adults the influence of food (breakfast) on the absorption profiles and bioavailability of theophylline was investigated when the drug was given as Dilatrane A. P. 400 mg capsules (Fisons), a once-a-day sustained-release preparation. The capsule was taken at 8:00 a. m. either after a 10-h fast or immediately after a standard breakfast, yielding 1990 kJ. Theophylline in plasma was measured by high pressure liquid chromatography over a period of 48 h. The food caused a slight but not significant (p greater than 0.05, Student's paired t-test) increase in the time to peak (tmax, 9.4 +/- 1.3 h vs. 8.4 +/- 1.7 h, mean +/- SD) and in the area under the curve (AUC0-48, 114.3 +/- 41.7 mg.l-1.h vs. 105.3 +/- 36.5 mg.l-1.h), the relative bioavailability being 108.9 +/- 12.4%, as compared with ingestion of the capsule in fasted state. Maximum theophylline concentrations in plasma were slightly but significantly higher (cmax, 6.50 +/- 1.82 mg.l-1 vs. 5.26 +/- 1.36 mg.l-1, p less than 0.001) after intake with food but this will probably not be of any clinical relevance. The product is considered to be of good sustained-release quality which in practice may well be taken with food in order to reduce the incidence of locally mediated theophylline-induced gastrointestinal disturbances.

Adult↗

Single dose bioavailability of two different digoxin tablets.

In a single dose bioequivalence study in 10 healthy young adults the absorption profiles and bioavailability of two digoxin containing tablets (A = digoxin-Pharbita 0.25 mg and reference drug B) were compared and related to the in vitro dissolution rate of both tablets. Two tablets of each product (= 0.50 mg of digoxin) were taken at random on an empty stomach; two weeks elapsed between the two treatments. Frequent blood sampling was performed up to 24 h after intake of the dose. Digoxin plasma concentrations were measured by means of radioimmunoassay. No significant differences (p greater than 0.05) were found in the mean values of the peak plasma concentration (cmax), time to peak (tmax) and area under the plasma concentration versus time curve for the period of 0-10 h after drug intake (AUC0-10), although in most subjects the absorption process after intake of product A was slightly faster, with slightly higher peak. This might be related to a slightly faster release of digoxin from the product A dosage form, as was seen from the dissolution test data. The relative bioavailability of product A as compared to product B, accounted for 97.7 +/- 28.7% (mean +/- S.D.). These results indicate, that both products can be considered as being bioequivalent.

Adult↗

Single dose absorption profiles and bioavailability of two different salbutamol tablets.

In a single dose cross-over experiment in twelve healthy adults a comparison of the absorption profiles and the relative bioavailability was made between a new salbutamol containing tablet (preparation A = Salbutax) and a commercially available and accepted formulation as reference (preparation B), both containing 4 mg salbutamol. Salbutamol plasma concentrations were measured frequently during a period of 16 h post dosing. Maximum salbutamol plasma concentrations after intake of product A and product B on an empty stomach were reached after 2.3 +/- 0.9 (= mean +/- S.D.) and 2.4 +/- 1.1 h, respectively, and accounted for 14.3 +/- 2.5 and 12.8 +/- 2.6 micrograms X l-1, respectively. The differences were not found to be significant (p greater than 0.05). The areas under the plasma concentration-time curves (AUC0----16), as obtained after administration of tablet A and tablet B, accounted for 73.5 +/- 14.0 and 65.0 +/- 11.8 micrograms X l-1 X h, respectively, the difference being marginally significant (p = 0.05). This results in a relative bioavailability of 114.3 +/- 15.7% for the product A 4-mg tablets. It is concluded that both products can be considered as having comparable bioavailability.

Adult↗

Rectal versus oral absorption of codeine phosphate in man.

Rectal absorption of codeine phosphate from various dosage forms was studied in man. The rectal dosage forms included aqueous solutions and fatty suppositories. A comparison was made with an orally administered solution. The plasma concentrations of codeine were measured by means of HPLC analysis after a single dose of 60 mg codeine phosphate in a cross-over study in 7 volunteers. Compared with oral dosing rectal absorption from an aqueous solution or a fatty suppository produced an almost identical plasma concentration profile with similar interindividual variations. Comparing the absorption rate characteristics it appeared that rectal absorption from an alkaline solution containing codeine phosphate proceeded significantly (P less than 0.05) more rapid than after oral dosing. No essential difference in bioavailability was observed between the various rectal and oral dosage forms.

Administration, Oral↗