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Biomedical subjects

R Kroon

Publications and source records attributed to R Kroon.

14 recordsLinked to original sources

Effects of liver blood flow on the pharmacokinetics of tissue-type plasminogen activator (alteplase) during thrombolysis in patients with acute myocardial infarction.

BACKGROUND: The removal of recombinant tissue-type plasminogen activator (rt-PA; alteplase) by the liver is so rapid that liver blood flow becomes rate determining for its clearance. In patients with myocardial infarction changes in liver blood flow may result from impaired cardiac performance or drug treatment. OBJECTIVE: To estimate the effect of variations in liver blood flow on t-PA plasma concentrations during thrombolytic therapy. METHODS: Fifteen patients with acute myocardial infarction were investigated in an open single-center study at the coronary care unit of University Hospital Leiden. Patients received thrombolytic treatment with 100 mg rt-PA over 3 hours. Liver blood flow was estimated by indocyanine green clearance and by Doppler echocardiography. Concentrations of t-PA antigen, t-PA activity, indocyanine green, alpha 2-antiplasmin, fibrinogen, and fibrin and fibrinogen degradation products were measured. RESULTS: Indocyanine green clearance and clearance of both t-PA antigen (r = 0.78; p < 0:01) and t-PA activity (r = 0.54; p < 0.05) were significantly related. Significant associations between t-PA antigen and fibrin and fibrinogen degradation products and between t-PA antigen and alpha 2-antiplasmin were also found. CONCLUSIONS: The liver blood flow of patients with myocardial infarction is inversely correlated with plasma concentrations of t-PA. In patients with severely impaired liver blood flow and heart failure, high t-PA plasma concentrations may occur if standard doses are given. This finding could contribute to optimization of the dosage of t-PA in certain patient groups.

Aged↗

The beta-gal interferon assay: a new, precise and sensitive method.

Cells of a human glioblastoma line were stably transfected with a glial fibrillary acidic protein (GFAP) promoter sequence/lacZ reporter gene. Following this modification, they produced Escherichia coli beta-galactosidase constitutively in amounts that could be measured through their conversion of an added fluorophore into a product readily estimated by fluorimetry. Human interferons (IFN) selectively and in a dose-dependent manner reduce the formation of beta-galactosidase in this system. We have used it as the basis for a novel assay that is sensitive (4-40 pg/ml), precise, completed in 30 h, and applicable to both type I and type II human IFNs. Statistical analysis showed interassay relative standard deviations ranging from 5% to 11%, and most individual assays revealed potencies with limits of error within 85%-115%. Neither partially trypsin-digested IFN nor the other cytokines and mitogens we tested reacted in this system, except for tumor necrosis factor-alpha (TNF-alpha). The high selectivity was further shown by the loss of response to IFN in the presence of the appropriate specific anti-IFN or anti-IFN-gamma receptor antibodies.

Biological Assay↗

Effect of changes in liver blood flow on the pharmacokinetics of saruplase in patients with acute myocardial infarction.

BACKGROUND: The recombinant unglycosylated single chain urokinase-type plasminogen activator saruplase is cleared for a large part by the liver. A large interindividual variation in saruplase concentration is found in acute myocardial infarction (AMI) patients. The variable cardiac performance after an infarct may induce differences in liver blood flow that could explain the concentration diversity. This study was performed to investigate the relation between hepatic blood flow and the pharmacokinetic and pharmacodynamic properties of saruplase. METHODS AND RESULTS: Thirteen AMI patients were enrolled in this open label study. Patients received a bolus injection of 20 mg saruplase followed by a one-hour infusion of 60 mg saruplase. Concurrently 36 mg intravenous indocyanine green (ICG) was given over 1 h to measure hepatic blood flow. Blood samples were taken at regular time intervals to measure plasma levels of urokinase-type plasminogen activator (u-PA) antigen and activity, the two-chain form (tcu-PA) activity, indocyanine green, fibrinogen, fibrin and fibrin degradation products, alpha2-antiplasmin and thrombin antithrombin III complex. A correlation was seen between the clearance of ICG and both those of u-PA antigen (r = 0.62; p <0.05) and u-PA activity (r = 0.57; p <0.05). A negative correlation was seen between the area under the curve of tcu-PA activity and the areas under the effect curves of both fibrinogen and alpha2-antiplasmin (r = -0.84; p <0.01 and r = -0.65; p <0.05). CONCLUSIONS: Liver blood flow is an important determinant of the clearance of u-PA antigen and activity and reduction of flow in patients with heart failure will lead to an increase in plasma concentrations. High plasma concentrations of tcu-PA activity lead to increased systemic fibrinogenolysis. These results may be used to optimize saruplase treatment in patients with impaired cardiac function or after co-medication with drugs that affect liver blood flow.

Aged↗

In vitro bioassay for human erythropoietin based on proliferative stimulation of an erythroid cell line and analysis of carbohydrate-dependent microheterogeneity.

The human erythroleukemia cell line TF-1 was employed for the determination of proliferative stimulation induced by recombinant human erythropoietin (rhEpo). Potencies of various intact and sugar-trimmed rhEpo preparations were estimated using the International Standard for Human r-DNA-derived Epo (87/684) as a reference for activity. The cellular response was measured in a multi-channel photometer using a colorimetric microassay, based on the metabolism of the tetrazolium dye 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide to formazan, by viable cells. The linear part of the log dose-response relationship encompassed 2.5-90 pM and activity of rhEpo preparations was measured at doses between 3 and 60 pM. The assay was designed as a parallel line test, using three or four concentrations for potency determinations, which fulfills pharmacopoeial requirements for assay validity. Inter-assay relative standard deviation varied between 4.1% and 12.6% and most assays revealed potencies with limits of error within 87-113%. In order to acquire an additional means for an efficient probing of physiologically relevant features of rhEpo, a luminiscence-dependent Western detection system, based on a combined isoelectric focusing/sodium dodecyl sulphate-polyacrylamide gel electrophoresis separation, was established. As opposed to conventional electrophoresis the two dimensional approach enabled the disclosure of minor truncations in the rhEpo-attached glycan moieties using picomolar quantities of the hormone. Moreover, the separated isoforms of rhEpo were quantified by computer-assisted densitometry and compared with the 87/684 standard. Accordingly, results obtained by the cellular response were balanced against the general pattern observed and the relative amounts of separated rhEpo isomers as determined by the quantitative Western analysis. The method described should be suitable for potency assessments of pharmaceutical formulations of rhEpo.

Antibodies↗

Effects of increased liver blood flow on the kinetics and dynamics of recombinant tissue-type plasminogen activator.

OBJECTIVE: To investigate the influence of increased liver blood flow on the pharmacokinetics and pharmacodynamics of recombinant tissue-type plasminogen activator (rt-PA) and to study the changes in endogenous urokinase-type plasminogen activator (u-PA). METHODS: This open, randomized, crossover trial was carried out in a clinical research unit. Eight healthy, nonsmoking volunteers received linear infusions of 24 mg rt-PA and 92 mg indocyanine green over 160 minutes. Sixty minutes after the infusions were started, the subjects consumed a standardized meal to increase liver blood flow on one occasion and abstained from taking food on the other occasion. Plasma concentrations of indocyanine green, tissue-type plasminogen activator (t-PA) antigen, t-PA activity, total u-PA antigen, plasmin-activatable single-chain u-PA (scu-PA), active two-chain u-PA (tcu-PA), fibrinogen, total fibrin, and fibrinogen/fibrin degradation products (TDP), and alpha 2-antiplasmin were measured. RESULTS: After the consumption of the meal, the area under the curve (AUC) was 35% (95% confidence interval [CI]: 25%, 43%) lower for indocyanine green, 15% (CI: 6%, 24%) lower for t-PA antigen, and 11% (CI: 2%, 19%) lower for t-PA activity compared to the AUC after subjects abstained from food. No changes were observed in fibrinogen, TDP, or alpha 2-antiplasmin concentrations that were attributable to the intake of food. The infusion of rt-PA caused a fivefold increase in the concentration of active tcu-PA and a concomitant decrease in scu-PA concentrations by more than 50%. CONCLUSIONS: Increased liver blood flow results in an increase in t-PA clearance. The conversion of the inactive zymogen scu-PA to the active tcu-PA is increased by an infusion of rt-PA, but total u-PA antigen concentrations remain unchanged.

Adult↗

Tolrestat pharmacokinetic and pharmacodynamic effects on red blood cell sorbitol levels in normal volunteers and in patients with insulin-dependent diabetes.

OBJECTIVES: To examine the effect of diabetes mellitus on the pharmacokinetics of tolrestat and to investigate its effect on red blood cell sorbitol levels according to a new pharmacodynamic model for this class of drugs. METHODS: Single and multiple doses of tolrestat (200 mg/twice a day) were administered to 12 patients with insulin-dependent (type I) diabetes and 12 healthy volunteers in an open parallel trial. RESULTS: Tolrestat disposition was characterized by first-order absorption and biexponential disposition: In normal subjects the terminal disposition half-life (t1/2) was 13 +/- 3 hours (mean +/- SD) and the apparent oral clearance (CL/F) was 48 +/- 9 ml/hr/kg, similar to the values in patients with type I diabetes mellitus (t1/2 = 14 +/- 4 hours; CL/F = 55 +/- 10 ml/hr/kg). Red blood cell sorbitol concentrations, which declined because of tolrestat's inhibition of aldose reductase, were characterized by an indirect-response model including a 50% inhibition constant (IC50) for production of sorbitol by aldose reductase. The removal of sorbitol (kout) was slower in patients with diabetes. The plasma IC50 averaged 2.0 +/- 1.3 micrograms/ml in normal subjects and 2.5 +/- 1.9 micrograms/ml in patients with diabetes. IC50 values expressed in free (unbound) concentrations (fu = 0.64%), which ranged from 12 to 16 ng/ml, were similar to the in vitro IC50 for inhibition of sorbitol accumulation in human red blood cells. CONCLUSIONS: Tolrestat pharmacokinetics were similar in normal subjects and in patients with diabetes; however, the patients with diabetes had higher baseline sorbitol levels (11 versus 5 nmol/ml for normal subjects) and slower sorbitol efflux rates. The proposed biochemically realistic, dynamic model characterized well the red blood cell sorbitol response patterns after administration of single and multiple doses of tolrestat.

Adult↗

Effects of changing liver blood flow by exercise and food on kinetics and dynamics of saruplase.

OBJECTIVE: To investigate the influence of changes in liver blood flow on the pharmacokinetics and pharmacodynamics of single-chain unglycosylated urokinase-type plasminogen activator. METHODS: This open, randomized, crossover trial was carried out in the clinical research unit. Infusions of 37.5 mg saruplase and 90 mg indocyanine green were administered over 150 minutes to 10 healthy male volunteers. After 60 minutes the subjects consumed a standardized meal to increase liver blood flow or performed an exercise test (20 minutes) to decrease liver blood flow. Indocyanine green concentrations, total urokinase-type plasminogen activator (u-PA) antigen, two-chain u-PA activity, fibrinogen, total degradation products, alpha 2-antiplasmin, and factor XII-dependent fibrinolytic activity were measured. Blood flow was measured after food intake in a portal vein branch with Doppler echography. RESULTS: The weighted average indocyanine green concentration after exercise was increased by 29% compared with baseline (steady-state concentration) values (95% confidence intervals [CI]: +6%, +56%). After food, the concentration was 27% lower compared with baseline values (95% CI: -35%, -19%), and portal vein flow was increased by a maximum of 103% (95% CI: +71%, +136%). Average maximal concentrations of u-PA antigen after exercise were increased by 130 ng/ml compared with baseline concentrations (95% CI: +65, +195 ng/ml) and, unexpectedly, 156 ng/ml higher after food (95% CI: +59, +253 ng/ml). Although not significant, an increase in average u-PA antigen concentration compared with baseline values was detected after both exercise (7%) and food (13%). This tendency toward a larger effect after food compared with the effect after exercise was reflected by minor changes in the pharmacodynamics. CONCLUSIONS: u-PA plasma concentrations were increased by reduced liver blood flow induced by exercise. Food intake produced an unexpected increase in u-PA concentrations despite increases in liver blood flow.

Adult↗

In vitro bioassay with enhanced sensitivity for human granulocyte colony-stimulating factor.

A method for the determination of human granulocyte colony-stimulating factor (hG-CSF) activity, based on stimulation of cellular proliferation, was developed using a subclone of the murine myeloid leukemia cell line NFS-60, with an improved sensitivity for hG-CSF, as indicator. The optimal range for quantitative analysis of hG-CSF was about 4-60 pg ml-1. The stimulatory effect was measured by a colorimetric microassay: the optical density of formazan, which is produced by viable cells from 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT), was obtained by reading plates in a multi-channel photometer. The assay was designed as a five-dose parallel line test, employing three or four doses for potency determinations, which fulfil pharmacopoeial requirements for assay validity. Inter-assay relative standard deviation (RSD) varied between 5.2 and 12.0%. Most assay experiments revealed potencies within limits of error of 90-110% and the mean index of precision value was 0.057. The recently developed yeast cell-derived International Standard (88/502) served as a reference for activity of rhG-CSF. Specificity of the assay was demonstrated by absence of response upon exposure to a panel of biomolecules, including recombinant human interleukin-3, and by the suppression of growth stimulation in the presence of neutralizing anti hG-CSF antibodies. Potency readings of unglycosylated rhG-CSF were dependent on pH of assay medium with higher relative activities observed at pH 6.6 than at 7.4. Moreover, SDS-PAGE analysis of the carbohydrate-deficient preparation, following incubation at physiological pH, revealed several high molecular weight rhG-CSF bands and decreased monomeric form. The method described was found suitable for potency assessments of pharmaceutical formulations of hG-CSF.

Animals↗

The bioavailability of digoxin from three oral formulations measured by a specific h.p.l.c. assay.

1. We have studied the absolute bioavailability of three oral formulations of digoxin, 1.0 mg, in 12 young healthy volunteers in a four way randomised cross-over study using an intravenous control. 2. Digoxin tablets (250 micrograms), liquid filled digoxin capsules (100 micrograms) and an experimental enteric-coated capsule (100 micrograms) were evaluated. In vitro dissolution at pH 1 demonstrated extensive hydrolytic breakdown of digoxin from the tablets and capsules but not from the enteric-coated capsules. 3. Serum 'digoxin' concentrations were measured by fluorescence polarization immunoassay (FPI). The systemic availability (+/- s.d.) of the capsules was 70.5 +/- 11.3%, and that of the tablets 71.5 +/- 8.6%. Drug was less available from the enteric-coated capsules (62.1 +/- 10.3%) measured with FPI. These results were reflected in the urinary drug recoveries measured by FPI. 4. By contrast, there were no differences in urinary recovery of unchanged digoxin between any of the oral treatments, when this was measured by h.p.l.c. The cross-reactivity of immunoassays for metabolites of digoxin may produce artefactual results and the optimal pharmaceutical formulation for digoxin remains to be determined.

Administration, Oral↗

Effects of temazepam on saccadic eye movements: concentration-effect relationships in individual volunteers.

Saccadic eye movements were analyzed after single oral doses of 20 mg temazepam and placebo in a randomized, double-blind crossover study in eight healthy volunteers. For an optimal evaluation of concentration-effect relationships, 18 blood samples and 43 effect measures were obtained over 33 1/2 hours. After placebo, saccadic peak velocity decreased within the first hour, with average values remaining 6.2% to 12.1% below baseline up to 15 hours after intake. After temazepam, significant changes in peak velocity occurred for 5 hours, with maximum decreases averaging 29.2% (95% confidence interval, 10.0 to 37.2). The apparent duration of effects ranged from 3 to 9 hours in individual subjects. Linear concentration-effect relationships were demonstrated for peak velocity, with individual slopes ranging from -0.11 to -0.46 deg/sec.(ng/ml)-1 (average r = -0.82, all p < 0.01). Differences in protein binding of temazepam did not account for the approximate fourfold variability in individual sensitivities to temazepam. By increasing the frequency of measurements, the accuracy of pharmacodynamic evaluations was clearly enhanced in this study.

Adult↗

Influence of gastric acidity on the bioavailability of digoxin.

OBJECTIVE: To study how changes in gastric acidity induced by omeprazole and pentagastrin affect the absorption of unchanged digoxin and its hydrolytic breakdown products. DESIGN: Double-blind, double-dummy, randomized, crossover study. SETTING: Academic department of clinical pharmacology. SUBJECTS: Six healthy male volunteers. INTERVENTIONS: Subjects received digoxin, 1 mg orally, on three separate occasions: first, after pretreatment with omeprazole; second, after pretreatment with pentagastrin; and third, after "pretreatment" with placebo. MEASUREMENTS: The in-vitro decomposition of digoxin wa studied using a standard dissolution test. The urinary excretion of digoxin over a 120-hour period was measured using selective high-pressure liquid chromatography (HPLC) and a polarization enzyme immunoassay (EIA). Plasma concentrations were measured at 2 hours with the EIA. MAIN RESULTS: Digoxin was rapidly released from the tablets in the in-vitro test. At acid pH, decomposition (as measured with HPLC) was rapid. Pentagastrin reduced the urinary excretion of unchanged digoxin, as measured by HPLC, from 34% to 21.4% of the dose (difference, -12.6%; 95% Cl, -23.5 to -1.8; P less than 0.05), whereas omeprazole increased urinary excretion to 47.4% (difference, 13.4%; 95 Cl, 2.5% to 24.4%; P less than 0.05). However, such differences were not found with the nonselective polarization EIA. CONCLUSIONS: Our data suggest that gastric acidity causes the breakdown of digoxin to products that cross-react in the assay (EIA) that is commonly used clinically. In patients with reduced gastric acidity, increased plasma concentrations of unchanged digoxin may not be detected because of limitations of the EIA, which may invalidate the quantitative use of the plasma digoxin concentration as a predictor of digoxin toxicity. Omeprazole, and presumably other gastric-acid inhibitors, may increase the bioavailability of unchanged digoxin.

Adult↗

A comparison of the sensitivities of adaptive tracking, eye movement analysis and visual analog lines to the effects of incremental doses of temazepam in healthy volunteers.

The effects of single oral doses of 5, 10, and 20 mg temazepam were evaluated with the adaptive tracking test, analysis of smooth-pursuit and saccadic eye movements, and visual analog lines in a placebo-controlled, double-blind, crossover experiment with 12 healthy volunteers. Pharmacodynamic testing was performed until 10 hours and pharmacokinetics were evaluated until 24 hours. Temazepam, 20 mg, caused effects in all tests, with peak effects occurring at 30 minutes. The 10 mg dose caused effects on saccadic eye movements and subjective scores of alertness, whereas 5 mg temazepam was detected only by analysis of saccadic eye movements. Linear relationships between plasma concentrations and effects were found in nine subjects for saccadic peak velocity and eight subjects for subjective scores of alertness. The results of this study demonstrate manifest differences in the sensitivities of performance tests and stress the importance of validation of methods when effects of drugs on human performance are studied.

Adult↗