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Biomedical subjects

R Dahlqvist

Publications and source records attributed to R Dahlqvist.

At least 19 recordsLinked to original sources

Comparative class 1 electrophysiologic and anticholinergic effects of disopyramide and its main metabolite (mono-N-dealkylated disopyramide) in healthy humans.

During steady-state treatment with disopyramide, its main and active metabolite, mono-N-dealkylated disopyramide, was reported to reach concentrations that were equal to or higher than the parent drug in 25% of 70 evaluated patients. This metabolite has been found to have a more pronounced anticholinergic action than the parent drug on in vitro evaluation, but neither its anticholinergic nor its direct electrophysiologic effects on the human heart have been properly assessed. We therefore compared the acute electrophysiologic and anticholinergic effects (the standard being atropine, 0.04 mg/kg) of disopyramide and its main metabolite, given 2 mg/kg body weight intravenously to 10 healthy individuals in a double-blind, randomized, crossover design. The anticholinergic effect of these substances on sinus and atrioventricular node function was unexpectedly found to be of similar magnitude and more pronounced than previously thought (at least one-third the effects of the atropine dose). The class 1 electrophysiologic effects were as follows: intra-atrial and His-Purkinje conduction (the PA and the HV interval, respectively) was prolonged 33% (95% CI: 18-47%) and 27% (21-32%) by disopyramide, and 15% (10-19%) and 13% (10-17%), respectively, by the metabolite. Disopyramide also prolonged the QRS, JT, and QT intervals by 15% (9-21%), 10% (8-13%), and 10% (7-12%), respectively. The metabolite caused a 9% (7-12%) prolongation of the QRS interval (significantly less than disopyramide), but shortened repolarization (as reflected by the JT interval) by -7% (-2 to -11%; p < 0.01), which is similar to the acute effects of lidocaine 2 mg/kg body weight.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Effect of salbutamol on digoxin pharmacokinetics.

A single dose of the beta 2-adrenoceptor agonist salbutamol has previously been shown to decrease serum digoxin concentration in healthy volunteers. A possible explanation of the phenomenon is a beta 2-adrenoceptor-mediated increase in the specific binding of digoxin to skeletal muscle. The present study was undertaken to further elucidate the effect of salbutamol on the pharmacokinetics of digoxin in man. Nine volunteers were studied on two occasions during salbutamol or placebo treatment. On test days salbutamol, 4 micrograms.kg-1.h-1 or saline was infused for 10 h, preceded and followed by four and three days, respectively, of oral administration. A single i.v. injection of digoxin 15 micrograms.kg-1, was given 20 min after starting the infusion. At the end of the infusion a muscle biopsy was taken from the vastus lateralis. Blood samples for the analysis of serum digoxin and potassium were repeatedly taken over 72 h. Urine was collected over a period of 24 h for determination of the renal excretion of digoxin and potassium. The serum digoxin concentration, expressed as the AUC 0-6 h was 15% lower during salbutamol infusion than during saline infusion. Salbutamol caused significantly faster elimination of digoxin from the central volume of distribution to deeper compartments. Salbutamol had no effect on the renal clearance of digoxin. The skeletal muscle digoxin concentration tended to be higher (48%) during salbutamol compared to placebo treatment. The serum potassium concentration was significantly lower after salbutamol compared to placebo, as was the rate of renal excretion of potassium.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Digoxin-interactions in man: spironolactone reduces renal but not biliary digoxin clearance.

The possibility of an inhibitory effect of spironolactone on the biliary clearance of digoxin has been investigated in 6 healthy subjects. Plasma clearance and the renal and biliary clearance of digoxin were determined twice at steady state (digoxin 0.5 to 1 mg.d-1 p.o. for 6 days), alone or in combination with spironolactone 200 mg daily, after an intravenous dose of digoxin (0.7 x oral dose) on Day 7. Plasma and urine were collected for 48 h. Biliary clearance of digoxin was determined on Day 8 by a duodenal perfusion technique. During spironolactone treatment plasma digoxin clearance tended to be lower (255 vs 224 ml/min; P = 0.057) and renal clearance significantly lower (166 vs 144 ml/min), while the biliary clearance of digoxin remained unchanged (106 vs 103 ml/min). Thus, spironolactone reduced the renal clearance of digoxin by an average of 13%, without affecting its biliary clearance.

Adult

Enantioselective steady-state kinetics of unbound disopyramide and its dealkylated metabolite in man.

Disopyramide is provided as a racemic mixture of R and S enantiomers, which have different pharmacodynamic and pharmacokinetic characteristics. Five volunteers were given racemic disopyramide 100 mg and 200 mg t.d.s. in a cross-over design. Plasma and urine concentrations of disopyramide and its active metabolite monodesisopropyl-disopyramide (MND) were determined at steady state by an enantioselective HPLC method. Unbound drug in plasma was measured after ultrafiltration. There was enantioselective clearance of unbound disopyramide (0.39 l.h-1.kg-1 for R-disopyramide and 0.58 l.h-1.kg-1 for S-disopyramide after 100 mg t.d.s.). The enantioselectivity was due to differences in the metabolism of disopyramide to MND and in further non-renal clearance, and the renal clearance of disopyramide was not enantioselective. The in vivo protein binding of disopyramide, which was saturable for both enantiomers, was also enantioselective. The difference in binding of the two enantiomers was explained by a difference in apparent binding capacity rather than in apparent binding affinity. The renal clearance of S-MND was significantly higher than R-MND (0.29 and 0.19 l.h-1.kg-1, respectively, after 100 mg t.d.s.). The renal clearance of MND also showed a tendency to saturation at higher concentrations.

Adult

Digoxin-verapamil interaction: reduction of biliary but not renal digoxin clearance in humans.

The interaction between digoxin and verapamil was studied in six patients (mean age +/- SD, 61 +/- 5 years) with chronic atrial fibrillation. The effects of adding verapamil (240 mg/day) on steady-state plasma concentrations and renal and biliary clearances of digoxin were studied in a crossover manner. The biliary clearance of digoxin was determined by a duodenal perfusion technique. Verapamil induced a 44% increase in steady-state plasma concentrations of digoxin, from 0.80 +/- 0.24 to 1.15 +/- 0.40 nmol/L (p less than 0.01). The biliary clearance of digoxin decreased by 43%, from 187 +/- 89 to 101 +/- 55 ml/min (p less than 0.05), in the presence of verapamil, whereas the renal clearance was unaffected (153 +/- 31 versus 173 +/- 51 ml/min; difference not significant). Our results indicate that the main inhibitory effect of verapamil on digoxin elimination is on the biliary route.

Bile

No effect of probenecid on the renal and biliary clearances of digoxin in man.

1. The cardiac glycoside digoxin is subject to a number of pharmacokinetic interactions. This study concerns the influence of the anionic transport inhibitor probenecid on the steady-state kinetics of digoxin. 2. Six healthy young men were enrolled in the study. After an administration period of 6 days with digoxin only (0.5 to 1 mg p.o. day-1) or digoxin in combination with probenecid (2 g p.o. day-1; 8 days), digoxin was administered intravenously (0.7 oral dose) on day 7. Plasma and urine samples were taken over 48 h. The biliary clearance of digoxin was measured during day 8 by a duodenal perfusion technique. 3. Probenecid did not affect the plasma clearance (mean +/- s.d.: 255 +/- 80 vs 266 +/- 40 ml min-1), renal clearance (166 +/- 17 vs 155 +/- 10 ml min-1), biliary clearance (106 +/- 40 vs 111 +/- 50 ml min-1), elimination half-life (34.4 vs 35.2 h) or volume of distribution (538 +/- 241 vs 566 +/- 60 l) of digoxin. 4. Our results suggest that different systems exist in man for the renal and biliary secretion of probenecid and digoxin.

Administration, Oral

Interactions in the renal and biliary elimination of digoxin: stereoselective difference between quinine and quinidine.

The interactions between digoxin and quinine and quinidine that affect the renal and biliary clearances of digoxin were investigated in eight healthy subjects. Digoxin (0.5 to 0.75 mg/day) was given alone and with concomitant administration of quinine (750 mg/day) to reach a steady-state level. In four of the subjects, the study was repeated by administration of equimolar doses of the diastereoisomer quinidine together with digoxin, enabling a within-subject comparison of the effects of the two isomers on digoxin clearance. The biliary excretion of digoxin was studied by use of a modified duodenal marker perfusion technique. A marked reduction was found in the steady-state biliary clearance of digoxin from control value 134 +/- 57 ml/min (mean +/- SD) to 87 +/- 39 ml/min during treatment with quinine (p less than 0.05) and from 95 +/- 24 to 55 +/- 27 ml/min during treatment with quinidine (p less than 0.01; n = 4). Quinidine reduced the renal clearance of digoxin (155 +/- 26 versus 110 +/- 21 ml/min) (p less than 0.05; n = 4), whereas quinine had no such effect (177 +/- 40 versus 185 +/- 53 ml/min; not significant). These findings explain the difference in magnitude between quinidine and quinine in regard to the interaction with digoxin and imply a different degree of stereoselectivity for these isomers in the renal and biliary secretory systems of digoxin.

Adult

The effect of food and bile acid administration on the relative bioavailability of cyclosporin.

1. The relative bioavailability of cyclosporin was studied in 11 healthy volunteers after single oral capsule doses of cyclosporin on three separate occasions; fasting, with breakfast and with breakfast together with bile acid tablets (400 mg of cholic acid and 100 mg of dehydrocholic acid). 2. There was a significant increase in the area under the blood concentration vs time curve (AUC) of cyclosporin when the drug was taken together with breakfast and bile acid tablets (9078 ng ml-1 h) as compared with breakfast alone (7453 ng ml-1 h, P less than 0.05) or fasting conditions (7283 ng ml-1 h, P less than 0.01). 3. A blood drug concentration vs time curve displaying two peaks was present in 9/11 subjects when cyclosporin was taken with breakfast or with breakfast and bile acid tablets, but only one peak was present when cyclosporin was taken during fasting, suggesting an enterohepatic circulation of cyclosporin or a second absorption phase after the meal. 4. In a separate study, 12 h trough blood cyclosporin concentrations were measured before and after 1 week of bile acid treatment in 19 clinically stable, out-patient transplant recipients who were treated with oral cyclosporin solution (mean dose 2.0 mg kg-1 twice daily). The administration of cyclosporin was not standardized with regard to food intake. There was no significant difference in the blood concentrations of cyclosporin before and after bile acid treatment (114 +/- 38 ng ml-1 vs 121 +/- 38 ng ml-1).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

A prospective study of cyclosporine concentration in relation to its therapeutic effect and toxicity after renal transplantation.

1. Cyclosporine (CsA) concentrations in plasma and whole blood were monitored prospectively in 66 consecutive kidney transplant recipients for 6 months after transplantation or until graft loss. Immunosuppression was based on treatment with CsA and prednisolone in 27 patients and CsA, azathioprine and prednisolone in 39 patients. 2. Whole blood and plasma samples (separated at 37 degrees C) were collected 10-12 h after CsA dosage twice weekly over the first 3 months and thereafter once weekly. CsA concentrations were measured by high pressure liquid chromatography (h.p.l.c.) in plasma, by specific and non-specific monoclonal radioimmunoassays (r.i.a.) in whole blood, and by polyclonal r.i.a. and polyclonal fluorescence polarization immunoassay (f.p.i.a.) in whole blood and plasma. 3. There were no differences between the treatment schedules regarding graft or patient survival, occurrence of acute rejection, nephrotoxicity or infection. 4. CsA concentrations were significantly lower at the time of acute rejection than one week earlier based on all of the analytical methods used except f.p.i.a. 5. The lowest CsA concentration, recorded during the first month after transplantation, was significantly lower in patients with than in patients without experience of acute rejection episodes when the CsA concentrations were measured by polyclonal r.i.a. in whole blood and plasma and by specific and non-specific monoclonal r.i.a. in whole blood, but not by h.p.l.c. in plasma or polyclonal f.p.i.a. in whole blood or plasma. 6. The highest CsA concentration recorded during the second post-transplantation month, was higher in patients with acute nephrotoxicity than in those without nephrotoxicity when CsA was measured by specific monoclonal r.i.a. in whole blood (471 +/- 409 ng ml-1 vs 327 +/- 150 ng ml-1, P less than 0.05), but not by the other methods. 7. The mean plasma h.p.l.c. concentration of CsA measured by h.p.l.c. during the first month after transplantation was significantly higher in patients who suffered from systemic infection than in patients who did not (116 +/- 70 ng ml-1 vs 82 +/- 52 ng ml-1; P less than 0.05). 8. Thus, significant relationships between CsA concentrations and clinical events were apparent using assay methods specific for CsA as well as using polyclonal r.i.a., but not using polyclonal f.p.i.a. When h.p.l.c. was used, however, plasma drug concentrations were often below the limit of determination. Our results suggest that specific analysis of CsA in whole blood allows the best distinction between patients who respond favourably and less favourably to treatment with CsA.

Adolescent

Felodipine reduces the absorption of theophylline in man.

Ten healthy male volunteers (mean age 26 years) received 200 mg theophylline aminopropanol orally 8-hourly for 4 days, followed by 5 mg felodipine 8-hourly for 6 days, and then the combination of oral felodipine and theophylline for a further 4 days. Plasma concentrations of theophylline and felodipine were determined, and theophylline and its metabolites in urine were also measured. Felodipine led to a reduction in the plasma AUC of theophylline of 18.3%. The metabolic and renal clearances of theophylline remained unchanged, but the total recovery of theophylline-derived products was significantly reduced during felodipine treatment. No change in felodipine pharmacokinetics was observed during simultaneous treatment with theophylline. Compared to theophylline treatment alone, the diastolic blood pressure was significantly reduced during felodipine treatment alone and in combination with theophylline. It is concluded that felodipine slightly but significantly lowered the plasma theophylline concentration by interfering with its absorption. The interaction in most instances would probably be of minor clinical consequence.

Adult

Induction of theophylline metabolism by pentobarbital.

Theophylline concentrations in plasma and urine were determined during maintenance treatment in nine healthy volunteers during one dosage interval before and after 10 days of simultaneous treatment with pentobarbital (100 mg each night). During the pentobarbital period, total plasma clearance of theophylline increased by 40% (range -4-79%), whereas renal clearance remained unchanged. It is concluded that therapeutic doses of pentobarbital induce the metabolism of theophylline with marked interindividual variation.

Adult

Intraindividual variability in the relative systemic availability of cyclosporin after oral dosing.

We have measured total and unbound plasma concentrations of cyclosporin A in seven healthy men after single oral doses (12 mg per kg body weight) on two occasions at least two weeks apart. There was an up to two-fold intraindividual and a more than three-fold interindividual variation in the AUCs of both total and unbound drug. The intraindividual variability in the AUC of cyclosporin is similar to that of many other drugs and needs to be taken into account in the planning of pharmacokinetic studies.

Administration, Oral

Inhibition of desipramine 2-hydroxylation by quinidine and quinine.

Urinary excretion of desipramine (DMI) and 2-hydroxydesipramine (2-OH-DMI) after single oral doses of 25 mg DMI was investigated in seven rapid and three slow debrisoquin hydroxylators, before and after pretreatment with either quinidine or its diastereoisomer quinine. After treatment with 800 mg quinidine daily for 2 days, excretion of 2-OH-DMI decreased by 96% in rapid hydroxylators and 68% in slow hydroxylators. After treatment with 750 mg quinine/day for 2 days, excretion of 2-OH-DMI in rapid hydroxylators was 54% lower than during the control experiment, whereas in slow hydroxylators no significant changes in the excretion pattern were observed. Unchanged DMI constituted only a minor fraction of recovered drug and no significant changes in its recovery were observed in either phenotypic group after pretreatment with quinidine or quinine. Thus both quinidine and quinine decreased the excretion of 2-OH-DMI. At similar does the effect of quinidine was much stronger than that of quinine, virtually transforming rapid hydroxylators into slow hydroxylators. The mechanism probably involves a stereoselective inhibition of DMI 2-hydroxylation.

Adult

Skeletal muscle binding and renal excretion of digoxin in man.

Ten healthy subjects were treated with three or four different doses of digoxin, 0.25 to 0.88 mg daily, in random order. Digoxin concentrations in serum (SDC) and skeletal muscle (SMDC) were determined as well as its renal clearance after 2 weeks of treatment with each dose. The mean ratio SMDC/SDC decreased non-significantly by about 20% from 33 +/- 15 at the lowest SDC interval (0.5-0.9 nmol/l) to 28 +/- 7 at the highest concentration interval (2.0-2.4 nmol/l). This is in accordance with findings from previous studies. No significant change was observed in the renal clearance of digoxin with increasing digoxin concentration, supporting the concept of first-order renal elimination of digoxin.

Adult

Quinidine reduces biliary clearance of digoxin in man.

Quinidine is known to reduce the renal clearance of digoxin, but this effect does not completely explain the influence of quinidine on the total clearance of digoxin. We therefore studied the effect of quinidine administration on biliary clearance of digoxin in five patients with atrial fibrillation. Biliary clearance of digoxin under steady state conditions before and during treatment with quinidine was investigated using a duodenal-marker-perfusion technique. Quinidine caused an average 42% (range 21-65%, P less than 0.02) reduction of the measured biliary clearance of digoxin. We conclude that the biliary effect adds to the previously demonstrated inhibitory effect of quinidine on the renal clearance of digoxin and helps to explain the decrease in total clearance of the drug. This is the first demonstration in man of a pharmacokinetic drug interaction at the level of biliary excretion.

Aged

Theophylline in maintenance treatment of chronic asthma: concentration-dependent additional effect to beta 2-agonist therapy.

The effect of long-term treatment with theophylline was studied in 20 chronic asthmatic patients receiving oral and inhaled beta 2-agonists. In a double-blind, randomized cross-over fashion during three consecutive 6-week periods, the patients received theophylline in individually adjusted dosages or placebo to obtain plasma concentrations of 25-45 mumol/l, 50-85 mumol/l and 0, respectively. PEF, beta 2-aerosol consumption, symptom scores and side-effects were recorded daily. The addition of theophylline caused a significant further bronchodilating effect. There was, however, a large interindividual variation in response to additional theophylline and only half of the subjects were responders. Those responding had increased therapeutic efficacy from a steady-state concentration in the range of 50-85 mumol/l compared to the lower concentration. The responders had, on average, more pronounced air-flow obstruction. The incidence of adverse reactions increased with increasing concentrations of theophylline.

Adrenergic beta-Agonists