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Biomedical subjects

D D Breimer

Publications and source records attributed to D D Breimer.

At least 91 records · Page 5Linked to original sources

Comparative effects of felodipine, nitrendipine and nifedipine in healthy subjects: concentration-effect relationships of racemic drugs and enantiomers.

The effects of racemic (rac) felodipine, rac-nitrendipine and nifedipine (all 20 mg solution p.o.) on non-invasively measured blood pressure and heart rate were investigated in a randomised, double-blind, cross-over study in 12 normotensive, young, healthy males. Compared to baseline values, heart rate increased more after rac-felodipine treatment (+47% at maximum) than rac-nitrendipine (+40%) and nifedipine (+38%); only small and variable changes in blood pressure were observed with any of the drugs. The baseline-corrected area under the heart rate-time curve up to 4 h after the administration of rac-felodipine was 197% and 180% larger than after nifedipine and rac-nitrendipine treatment, respectively. The effects on heart rate could be fitted individually to a sigmoidal Emax-model without hysteresis for all drugs under investigation. The relative potencies of the unbound drugs for their indirect effects on heart rate were 1:7:43 for nifedipine, rac-nitrendipine and rac-felodipine, respectively. The active (S)-enantiomers of felodipine and nitrendipine appeared to be 9- and 60-times as potent as nifedipine in this respect, assuming no (inter)activity of the (R)-enantiomers. Individual and mean changes in blood pressure were small, they were not related to plasma concentrations, and did not differ between treatments.

Adult↗

Stereoselective pharmacokinetics of oral felodipine and nitrendipine in healthy subjects: correlation with nifedipine pharmacokinetics.

The pharmacokinetics of racemic (rac) felodipine, rac-nitrendipine and nifedipine (all given as an oral dose of 20 mg in solution) have been investigated in a randomised cross-over study in 12 healthy male subjects using stereoselective assays. Both felodipine and nitrendipine exhibited stereoselective pharmacokinetics. On average, the AUCs of the active (S)-enantiomers of felodipine and nitrendipine were 139% and 104% higher than those of their optical antipodes, but the elimination half-lives of the enantiomers of each racemate were not different. The AUCs of nifedipine, rac-felodipine, rac-nitrendipine and of their enantiomers were highly correlated (all r > 0.83), suggesting closely related rate limiting steps in the in vivo first-pass metabolism of these high-clearance drugs. Stereoselectivity was only a minor contributor to inter-individual variability in the oral pharmacokinetics of these compounds in healthy subjects.

Administration, Oral↗

Pharmacodynamic interactions of diazepam and intravenous alcohol at pseudo steady state.

Pharmacodynamic interactions of low doses of diazepam and alcohol were investigated in a double blind, randomised, 2 x 2 factorial, cross-over study in eight healthy volunteers. Alcohol or glucose 5% were administered intravenously at rates calculated to maintain breath alcohol levels of 0.5 g/l from 1.5 to 5.5 h after starting the alcohol infusion. Diazepam 5 mg or placebo were administered orally at 1.5 h. Evaluation of pharmacodynamic interactions was performed for the average results of tests performed at 2, 3.5 and 5 h. Plasma concentrations of (desmethyl-) diazepam and breath alcohol levels were measured for pharmacokinetic analysis. Breath alcohol reached pseudo steady state levels of 0.38 g/l (range: 0.24-0.57) after alcohol alone and 0.37 g/l (range: 0.27-0.52) in combination with diazepam. Alcohol effects were demonstrated for latency of saccadic eye movements, smooth pursuit eye movements and subjective drug effects. Diazepam impaired smooth pursuit and saccadic eye movements, adaptive tracking, digit symbol substitution and body sway. The effects of combined alcohol and diazepam were mostly additive without significant synergistic interactions. However, in two subjects large supra-additive effects occurred at 3.5 h following alcohol+diazepam, which were not explained by increased drug levels. The design and methods used in this study proved advantageous in evaluating low dose pharmacodynamic interactions. Despite the absence of significant synergistic interactions, unanticipated impairment of performance may occur in susceptible individuals when taking combined low doses of alcohol and diazepam.

Adult↗

The influence of a standard meal on Sinemet CR absorption in patients with Parkinson's disease.

We studied the influence of dietary protein intake on the plasma level profile of levodopa, carbidopa, and 3-O-methyldopa and clinical efficacy in 12 patients with idiopathic Parkinson's disease after intake of one levodopa-carbidopa 200/50 controlled release tablet (Sinemet CR; LC-CR). The tablet was given 1 h before the protein rich meal on one day (fasted) and together with the meal on an other day (non-fasted). Higher levodopa and carbidopa concentrations were reached when the LC-CR was taken 1 h before the meal, but the plasma level profile for levodopa was flatter in the non-fasted state. The area under the curve for levodopa was slightly higher in the fasted condition. For the clinical variables walking and tapping slightly better clinical results (P = 0.08) were found in the fasted condition with the higher levodopa levels. If the patient on levodopa is in a clinically satisfactory condition, then non-fasted condition could be preferred because of the smooth plasma level profile demonstrated. However, if the initial levodopa concentrations are not in the critical range to be effective for the patient, the advice should be to take the drug in a fasted condition.

Aged↗

Characterization of glutathione conjugation in humans: stereoselectivity in plasma elimination pharmacokinetics and urinary excretion of (R)- and (S)-2-bromoisovalerylurea in healthy volunteers.

Characterization of glutathione conjugation in vivo was performed in 12 healthy male volunteers by use of the racemic drug bromisovalum (bromisoval; 2-bromoisovalerylurea) as a model substrate. To study whether the pharmacokinetics of both bromisovalum enantiomers was related to the glutathione S-transferase class Mu phenotype, six subjects who were class Mu deficient and six subjects who were not class Mu deficient participated. After oral administration of 600 mg racemic bromisovalum, enantioselective measurement of unchanged bromisovalum (plasma and saliva) and the diastereomeric bromisovalum mercapturates (urine) showed a pronounced stereoselectivity in all subjects. The plasma clearance of R-bromisovalum was about 12 times higher than that of S-bromisovalum (9.3 +/- 3.7 and 0.78 +/- 0.38 L/min, respectively), which was in agreement with the higher urinary cumulative excretion for the mercapturate derived from R-bromisovalum: 26% +/- 4% of the dose versus 8% +/- 3% of the dose for the mercapturate derived from S-bromisovalum. Both the bromisovalum pharmacokinetics in general and the stereoselectivity in bromisovalum pharmacokinetics were not different for the subjects who were glutathione S-transferase class Mu deficient and the subjects who were not glutathione transferase class Mu deficient.

Administration, Oral↗

Cimetidine does not influence the metabolism of the H1-receptor antagonist ebastine to its active metabolite carebastine.

Ebastine is an H1-receptor antagonist with a relative lack of sedating properties. It is almost completely converted to carebastine, and it is this metabolite which is responsible for the antihistaminic effect. Twelve healthy subjects received a single 20 mg dose of ebastine on day 2 of a multiple oral dosing regimen of either cimetidine (400 mg three times daily and 800 mg in the evening on the day preceding ebastine administration and 400 mg four times daily on the 2 following days) or placebo in a randomised cross-over design. Significant plasma concentrations of ebastine were not detected after either treatment. The AUC of carebastine was not affected by cimetidine coadministration (4049 +/- 985 ng ml-1 h after cimetidine vs 3795 +/- 959 ng ml-1 h after placebo; 95% confidence interval of the difference: -412 to 919). Cimetidine coadministration did not induce any effect of ebastine on blood pressure and heart rate or cause sedation.

Adult↗

Interaction study between nifedipine and recombinant tissue-type plasminogen activator in healthy subjects.

1. In a previous study it was demonstrated that a decrease in liver blood flow produced a decrease in clearance of recombinant human tissue-type plasminogen activator (rt-PA). 2. The purpose of this randomized, double-blind, placebo-controlled, three-way, cross-over investigation was to determine the effect of nifedipine (20 mg orally), a compound that increases liver blood flow, on plasma concentrations of steady state endogenous and recombinant tissue-type plasminogen activator (t-PA and rt-PA) (35 mg of rt-PA over 2 h) in nine healthy male volunteers. 3. Nifedipine increased liver blood flow by 95% (42-167%) (mean (95% confidence interval)) as assessed by indocyanine green (ICG, 0.5 mg kg-1 i.v. bolus injection) clearance. 4. Nifedipine did not influence the plasma concentrations of total rt-PA antigen and activity as evaluated by the areas under the rt-PA curves from 30 min (time at which nifedipine was ingested) to 90 min during the rt-PA infusion (P > 0.05) and by analysis of a possible treatment x time interaction (P > 0.05). In addition, the plasma concentrations of endogenous t-PA remained unchanged when nifedipine was given alone. 5. In conclusion, by using nifedipine as a model compound it was demonstrated that the combination of rt-PA and a compound which increases liver blood flow probably does not lead to substantial changes in plasma concentrations of rt-PA.

Adult↗

CNS-related performance and haemodynamics of metoprolol-Oros and propranolol after single and 3 days dosing in healthy volunteers.

1. The effects of metoprolol-Oros 14/190 once daily, propranolol 80 mg twice daily and temazepam 10 mg once daily on central nervous system (CNS) related performance and haemodynamic variables were evaluated in a double-blind, randomized, placebo controlled, crossover study in 12 healthy volunteers. Drugs were administered for 3 consecutive days except for temazepam, which was administered on days 1 and 3 only. Treatment effects were evaluated at 0, 2, 5 and 8 h on days 1 and 3. 2. Neither beta-adrenoceptor blocker had significant effects in a battery of tests after single or 3 days dosing. Temazepam caused a decrease in saccadic peak velocity of 37.4 degrees s-1 (95% CI: 6.0, 68.9) at 2 h and an increase of auditory reaction times of 11.5 ms (0.2, 22.8) at 8 h on day 1. No significant effects of temazepam were detected on day 3. 3. Both beta-adrenoceptor blockers reduced exercise heart rate. Peak effects were measured at 2 h 40 min after propranolol but not metoprolol-Oros (difference, day 1:20 (11, 29) beats min-1, day 3:13 (8, 19) beats min-1). Both beta-adrenoceptor blockers significantly reduced baseline exercise heart rate on day 3. Compared with day 1, metoprolol-Oros caused larger reductions of exercise heart rate at all times on day 3. 4. Metoprolol-Oros and propranolol caused similar reductions of systolic- and diastolic blood pressure on days 1 and 3. Temazepam caused a small reduction in diastolic blood pressure at 5 h 40 min on day 1 but was otherwise devoid of haemodynamic effects.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

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↗

Characterization of the scavenger receptor on bovine cerebral endothelial cells in vitro.

Primary cultures of bovine brain capillary endothelial cells (BCEC), possessing tight junctions and high levels of gamma-glutamyl transpeptidase, were used as an in vitro model for the blood-brain barrier. The interaction of acetylated low density lipoprotein (AcLDL) with BCEC was studied to characterize the scavenger receptor on these cells. A saturable high affinity binding site was found with a dissociation constant of AcLDL of 5.4 micrograms/ml (3.1 nM) and a maximal binding ranging from 284 to 626 ng of AcLDL/mg of cell protein for eight primary cultures, and independent of the presence of calcium. Cell association was coupled to degradation, and both could be effectively competed for by polyinosinic acid and AcLDL but not by low density lipoprotein or by high density lipoprotein. Prolonged incubation showed an accumulation of the ligand in the cells. The rate of degradation of AcLDL was approximately 10-20-fold lower in BECEC than that of peripheral endothelial cells. No evidence for lysosomal degradation could be obtained. Binding of 1,1'-dioctadecyl-3,3,3'-tetramethylindocarboxyamine perchlorate-labeled AcLDL by BCEC was observed, which could be competed for by an excess of unlabeled AcLDL and polyinosinic acid. We have shown that in vitro BCEC possesses specific binding sites for AcLDL, whereas these cells show a relatively low degradative capacity.

Animals↗

The relationship between phenazone (antipyrine) metabolite formation and theophylline metabolism in healthy and frail elderly women.

The influence of aging on the metabolism of phenazone (antipyrine), and the relationship between the formation of 3 phenazone metabolites and the metabolic clearance of theophylline in healthy and frail elderly women, were examined. Whereas the elimination half-life did not change, clearance of phenazone decreased by about 50% with age in healthy women receiving phenazone without theophylline. However, the summation of the urinary recovery of phenazone and the measured metabolites, expressed as percentage of the phenazone dose, was lower in the healthy elderly (37 +/- 9% vs 74 +/- 15%). In both healthy and frail females the clearance of formation of 4-hydroxy-phenazone and the metabolic clearance of theophylline correlated strongly (r = 0.93 and 0.90, respectively). In non-healthy elderly females, strong correlations were also observed between the other metabolic pathways of phenazone and the metabolic clearance of theophylline. Coadministration of theophylline in the elderly increased the percentage of the phenazone dose excreted as the measured metabolites. A considerably higher interindividual variability in the disposition of phenazone and theophylline was observed in the frail elderly women. This high degree of variability in drug metabolism may be one of the explanations for the problems often occurring after drug prescription in the elderly.

Adult↗

Permeability enhancement in Caco-2 cell monolayers by sodium salicylate and sodium taurodihydrofusidate: assessment of effect-reversibility and imaging of transepithelial transport routes by confocal laser scanning microscopy.

The effects of sodium salicylate and sodium tauro-24,25-dihydrofusidate (STDHF) on the aqueous permeability of confluent monolayers of Caco-2 cells were studied. Measurements of transepithelial electrical resistance (TEER) showed a concentration-dependent effect of both compounds after apical incubation for 1 hr. Reductions in TEER resulting from EC50 concentrations (2.8 mM for STDHF; 173 mM for salicylate) were reversible within 5.75 hr. The transpithelial fluxes of two hydrophilic model compounds, sodium fluorescein F (molecular weight 376) and a fluorescein isothiocyanate-labeled dextran (mean molecular weight 4000) was significantly increased by STDHF (2.8 mM). Sodium salicylate (173 mM) only enhanced the transport of sodium fluorescein significantly. At the EC50 concentrations, confocal laser scanning microscopy (CLSM) visualized both fluorescent tracers mainly in the paracellular route. With higher enhancer concentrations (373 mM sodium salicylate and 8 mM STDHF), both transport markers appeared intracellularly as a result of cell death. STDHF rapidly extracted an exogenous lipophilic membrane probe, 5-(N-hexadecanoyl)aminofluorescein (HEDAF), from the apical part of Caco-2 plasma membranes, indicating qualitatively that STDHF interacts with the lipid portion of cell membranes. These results suggest that both sodium salicylate and STDHF can be used to reversibly increase paracellular permeability of Caco-2 cell monolayers, whereby STDHF appears to be advantageous compared to sodium salicylate. By adapting the Costar cell culture system to CLSM, we have shown that this technique is suitable to study membrane interactions qualitatively and for visualizing transport routes of hydrophilic tracers through nonfixed, filter-grown monolayers.

Adjuvants, Pharmaceutic↗

Drug transport across the blood-brain barrier. II. Experimental techniques to study drug transport.

This is part II of a review on the transport of drugs across the blood-brain barrier. In this part, the emphasis is on the various experimental techniques that can be used to characterize the blood-brain barrier transport of drugs. Generally speaking, three approaches can be distinguished: in vitro techniques using isolated brain capillaries, cerebrovascular endothelial cells in primary culture or endothelium-derived cell lines; in vivo techniques (both single-passage and multi-passage techniques) and in situ perfusion techniques. Each of these techniques has specific advantages and disadvantages associated with it. Therefore, in many instances, a combination of different approaches is needed to study the fundamental aspects of drug transport across the blood-brain barrier.

Animals↗

Influence of heparin and a low molecular weight heparinoid on specific endogenous and exogenous fibrinolytic factors during rest and exercise.

The effects of heparin (5,000 IU i.v.) and the low molecular weight heparinoid Org 10172 (Orgaran) (3,250 anti-Xa units i.v.) on components of the fibrinolytic system were studied in two double-blind, randomised, placebo-controlled, cross-over trials using healthy subjects. In study A (n = 6) the effects were studied during rest and standardized exercise and in study B (n = 6) during a low dose infusion of recombinant tissue-type plasminogen activator (rt-PA; 80 micrograms over 16 min). At rest, heparin and Org 10172 did not influence the plasma concentrations of endogenous t-PA antigen and activity, urokinase-type PA (u-PA) antigen, plasmin activatable pro-urokinase (scu-PA), active urokinase (tcu-PA) and plasminogen activator inhibitor-1 (PAI-1) antigen. Recombinant t-PA antigen and activity during rt-PA infusion were also not affected. During exercise, neither heparin nor Org 10172 influenced the area under the curve (AUC) of t-PA and u-PA antigen and t-PA activity when compared with placebo. Unexpectedly, after heparin the AUC of t-PA activity was 49% larger (range +19 to +245%) than after Org 10172 (p < 0.05). The last difference was considered spurious, scu-PA, tcu-PA and PAI-1 antigen levels at 2 min after termination of exercise were unaffected by both compounds (p > 0.05). Sulphated polysaccharides do not increase fibrinolytic activity of the plasma by changing the concentrations of the components of the fibrinolytic system.

Adult↗

Drug transport across the blood--brain barrier. I. Anatomical and physiological aspects.

This review describes various aspects of the transport of drugs across the blood-brain barrier and comprises three parts. In this first part, the anatomical and physiological aspects of blood-brain transport are discussed. It appears that the blood-brain barrier has an anatomical basis at the endothelium of the capillary wall. This endothelium is characterized by the presence of very tight junctions. As a result, the transport by passive diffusion of drugs with a low lipophilicity, is restricted. For certain classes of closely related relatively hydrophilic compounds, however, the presence of specialized carrier systems has been demonstrated which may facilitate transport. Also evidence is presently available, that the permeability of the blood-brain barrier may be under active regulatory control. It is expected that improved knowledge of the anatomical and physiological aspects of the blood-brain barrier and its regulation will provide a scientific basis for the development of strategies to improve the transport of drugs into the central nervous system.

Animals↗

Pronounced effects of the combination of a new thromboxane antagonist (GR32191) and heparin on bleeding time in man.

Potential pharmacokinetic and pharmacodynamic interactions between two oral doses of GR32191 (40 and 80 mg), a new thromboxane antagonist, and heparin (5,000 IU bolus + 1,000 IU/h for 3 h) were studied in eighteen healthy male volunteers using two separate double-blind, randomised, placebo-controlled, cross-over studies. Mean (range) bleeding time values were 8.4 min (7.5-9.7) during heparin/placebo, 12.1 min (9.2-18.6) (GR32191/placebo) and 16.3 min (11.5-21.4) (GR32191/heparin) in the 40 mg study, while these values were 8.7 min (5.5-15.5), 16.0 min (9.3 - greater than 36.0) and 23.8 min (10.7 - greater than 36.0), respectively in the 80 mg study. Compared to screening values, the combination of 80 mg of GR32191 and heparin had a greater effect on the bleeding time than the sum of the prolongations after the separate treatments (p = 0.05). In the 40 mg study this was not the case. Pharmacokinetics of heparin (as assessed by plasma anti-Xa and antithrombin activity) and GR32191 were unaltered during co-administration of the two drugs. GR32191 did not influence the effects of heparin on APTT. Heparin slightly diminished the inhibition of collagen induced platelet aggregation by 80 mg of GR32191 and the U-46619 (thromboxane A2-mimetic) induced platelet aggregation remained unchanged. Overall fibrinolytic activity (as evaluated by the fibrin plate test) was similar during all three treatments in the study with 80 mg. The combination of 80 mg of GR32191 and heparin caused a prolongation of the bleeding time which was more than expected on the basis of their individual effects.

Biphenyl Compounds↗

Liver blood flow as a major determinant of the clearance of recombinant human tissue-type plasminogen activator.

The influence of changes in liver blood flow on the clearance of rt-PA was studied both in healthy subjects and in a perfused rat liver model. Liver blood flow in healthy subjects was documented indirectly by the clearance of indocyanine green (ICG). Exercise reduced liver blood flow on average by 57% with a 95% confidence interval (95% CI) ranging from 51% to 62% (n = 5) and increased plasma levels of rt-PA activity (after an i.v. infusion of 18 mg of rt-PA over 120 min) by 119% (95% CI, 58%-203%) and rt-PA antigen by 91% (95% CI, 30%-140%). In the perfused rat liver model it was shown that halving or doubling of the physiological flow rate of a perfusate, containing rt-PA caused a proportional change in the clearance of rt-PA, while the extraction of rt-PA by the liver remained similar. In conclusion, liver blood flow is a major determinant of the clearance of rt-PA. This may have important implications for dosage of rt-PA in patients with myocardial infarction.

Adult↗

Enantioselective determination of R- and S-(alpha-bromoisovaleryl)urea in plasma using high-performance liquid chromatography after solid-phase extraction.

A stereoselective method has been developed for the determination of R- and S-(alpha-bromoisovaleryl)urea in plasma and saliva after oral administration. The chiral separation was carried out on Chiralcel OJ or OD columns with hexane--2-propanol as the mobile phase. The poor detection properties of the analyte required the development of an effective sample pretreatment procedure to enable ultraviolet detection at 210 nm. Solid-phase extraction using hydrophobic Amberlite XAD-2 in combination with washing steps at alkaline and acidic pH completely removed interfering components of the biological matrix and allowed the detection of the optical isomers at concentrations down to 10 ng/ml (0.05 microM). The method was validated by determining the recovery, linearity, accuracy and within-day and between-day repeatability at 50, 200 and 2000 ng/ml. Application to the analysis of plasma and saliva samples is demonstrated.

Bromisovalum↗