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Biomedical subjects

P Jaillon

Publications and source records attributed to P Jaillon.

At least 73 records · Page 4Linked to original sources

Relationships between acute and chronic beta-blocking effects of bisoprolol in healthy volunteers: a practical approach to predict intensity of beta-blockade.

Bisoprolol is a selective beta 1-adrenoceptor antagonist devoid of partial agonist activity that can be used for treatment of chronic and acute myocardial ischemia. In this condition, it is important to demonstrate that a stable beta-blocking effect at steady state can be predicted by a mathematical model determined by plasma concentration-effect relationship after an acute intravenous (i.v.) dose. This relation was studied in 10 healthy volunteers in a double-blind, randomized, cross-over, placebo-controlled study after a 5-min i.v. infusion of bisoprolol (5 mg) or placebo. Standardized exercise tests were recorded at different times for 48 h after infusion with simultaneous bisoprolol assay (high-performance liquid chromatography, HPLC) in plasma. After a 1-week interval, subjects received oral bisoprolol (10 mg once daily) for 5 days and exercise tests were repeated on day 5 before and 2, 3, and 4 h after dosing, with bisoprolol plasma level determined simultaneously. In the acute period, bisoprolol significantly decreased exercise heart rate (HR: peak effect -20.5 +/- 4%) as compared with placebo. There was a direct relationship (no hysteresis) between beta-blockade and plasma concentrations with a sigmoid (7 subjects) or a linear (3 subjects) best-fit model. After repeated bisoprolol administration, steady-state plasma levels were achieved and 88% of the observed decreases in exercise HR were within the 95% confidence interval (CI) for individual prediction. These data suggest that bisoprolol-induced beta-blockade after repeated oral dosing can be predicted by single-test i.v. dose administration.

Adult↗

Clinical evaluation of pain during subcutaneous injections of low molecular weight heparins in healthy volunteers.

In order to compare the intensity and the duration of the pain following the subcutaneous injection of low molecular weight heparins, 0.4 ml nadroparin, 0.4 ml enoxaparin and 0.4 ml placebo (NaCl 0.9%) were administered at 1 week intervals to 12 healthy volunteers in a randomised, double-blind, three-period study. Pain was assessed by visual analogue and verbal category scales. Based on visual analogue scale scores, nadroparin resulted in significantly less pain than enoxaprin at 1 and 5 min after injection (6.2 +/- 2.6 mm vs 21.9 +/- 5.9 mm; P < 0.05 and 3.5 + 1.5 mm vs 14.3 +/- 4 mm; P < 0.05, respectively, mean +/- s.e. mean). Similar results were obtained using verbal category scale. Confidence interval testing for difference between groups showed that nadroparin injection resulted in less pain than enoxaparin at 1 min (-15.8: -31.2 to -0.4 mm).

Adult↗

Reproducibility of non-invasive measurement and of short-term variability of blood pressure and heart rate in healthy volunteers.

1. Spectral analyses of blood pressure and heart rate oscillations are increasingly used to assess the influences of diseases and drugs on the autonomic nervous system. Such influences can only be interpreted in view of the spontaneous variability of these oscillations. We therefore studied the reproducibility of power spectral analyses of blood pressure and heart rate fluctuations measured by a non-invasive finger plethysmographic method in 24 healthy volunteers. 2. Intra-observer reproducibility was assessed from measurements obtained on 3 consecutive days and 1 month later in each subject. Inter-observer reproducibility was assessed by comparing measurements made by two observers on one occasion. 3. There was no significant difference in standard haemodynamic and spectral analysis parameters (low frequency: 60-130 mHz and high frequency: respiration rate +/- 30 mHz) measured on 3 consecutive days and 1 month later in each subject. The standard deviation of differences between systolic blood pressure or heart rate oscillations on different occasions was in the 150-200 and 50-100 mm Hg Hz-1/2 or beats min-1 Hz-1/2 range for low frequency and high frequency oscillations respectively. Similar results were found when inter-observer reproducibility was considered. 4. From these results, we derived a sample-size table giving the number of subjects to be included in studies of cross-over or parallel design in order to detect a non-random difference in spectral analysis parameters.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Rapid development of nitrate tolerance in healthy volunteers: assessment using spectral analysis of short-term blood pressure and heart rate variability.

Nitrate tolerance is characterized by a loss of nitroglycerin (NTG) vasodilating and hypotensive effects during continuous administration, but is difficult to detect clinically. We hypothesized that the decrease in arterial blood pressure (BP) and the reflex sympathetic activation and tachycardia due to baroreflex deactivation associated with rapid intravenous (i.v.) infusion of NTG would be decreased during continuous NTG patch therapy as a result of tolerance to transdermal NTG. Sympathetic activation was measured as the change in amplitude of low-frequency (66-129 mHz) oscillations in BP and heart rate (HR) recorded by a noninvasive method. Eleven healthy male volunteers received rapid i.v. infusion of 0.45 mg NTG in 1 min on 3 consecutive days: before NTG patch, after 22.5 h of patch therapy, and 22.5 h after patch removal. The maximum decrease in systolic BP (SBP) and maximum reflex tachycardia as well as the sympathetic activation produced by i.v. NTG were compared during each of the three study periods. The maximum decrease in SBP was 38 +/- 8 mm Hg before NTG patch and 27 +/- 15 mm Hg during NTG patch (p < 0.05), with return to baseline values (37 +/- 13 mm Hg) after patch removal. There was no significant change in amplitude of reflex tachycardia among study periods. However, low-frequency oscillations in SBP increased by 40 +/- 31% in the absence of NTG patch and by only 9 +/- 35% after 22.5 h of patch therapy (p < 0.05). Patch removal resulted in a significant rebound increase in these oscillations (70 +/- 51%; p < 0.05 vs. baseline).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Rate-corrected QT interval: techniques and limitations.

The duration of the QT interval on the surface electrocardiogram represents the time required for all ventricular depolarization and repolarization processes to occur. Among the many physiologic and pathologic factors that contribute to the QT interval, heart rate plays a major role. Several approaches have been used to correct the QT interval, all of which take into account the heart rate at which the interval is measured. The simplest and most common approach to correcting the QT interval is to divide its value by the square root of the preceding RR interval expressed in seconds, i.e., by using Bazett's formula. This calculation provides a corrected QT (QTc) interval that represents the QT interval normalized for a heart rate of 60 beats/min. However, several studies have shown that Bazett's correction formula is not optimal. Fridericia's cube-root formula has been shown to perform better in correcting the QT interval for heart rate. Other formulas require the measurement of several QT-RR pairs at various heart rates to obtain a reliable QTc interval and are therefore not easily usable. Any correction formula is likely to introduce an error in assessing the QTc interval. Although the importance of this error should not be minimized, the corrected QT interval remains useful in assessing the effects of drugs on the duration of repolarization. For this purpose, Fridericia's cube-root formula is preferable to Bazett's square-root formula.(ABSTRACT TRUNCATED AT 250 WORDS)

Electrocardiography↗

Pharmacokinetics and platelet antiaggregating effects of beraprost, an oral stable prostacyclin analogue, in healthy volunteers.

Beraprost sodium (BPS) is an orally stable analogue of prostacyclin that inhibits adenylate-cyclase-dependent platelet aggregation and is proposed for treatment of chronic arterial occlusion. To determine the duration and intensity of platelet antiaggregation with BPS, 12 healthy, nonsmoking, male white volunteers participated in a double-blind, dose-escalating design with randomized placebo, placebo-controlled, cross-over study. After overnight fasting, single (20, 40, 60 micrograms and placebo) and repeated [20, 40, 60 micrograms and placebo) and repeated [20, 40, 60 micrograms and placebo three times daily (t.i.d.) for 3 days] oral doses of BPS were administered. Mean percentage of inhibition of ADP-induced aggregation normalized to placebo was measured for 8 h after drug administration and related to plasma concentrations (Cp) of the active enantiomer (APS 314d). BPS 40 and 60 micrograms decreased platelet aggregation 1 h after single doses, and 0.5 h and 1 h after repeated doses. BPS 20 micrograms had no significant effect. APS 314d pharmacokinetics was linear, and its terminal half-life (t 1/2) ranged from 0.50 +/- 0.21 to 0.91 +/- 0.27 h (mean +/- SD) independently of BPS dose. Antiaggregating effects were poorly related to Cp of APS 314d (r2 < or = 0.2). Some subjects complained of moderate postdrug absorption headaches (7 of 12 after single and 8 of 12 after repeated doses) and flushes (6 of 12 and 7 of 12, respectively). These data indicate that orally active prostacyclin BPS (40 or 60 micrograms) exerts its maximal antiaggregating effects between 0.5 and 1 h.

Administration, Oral↗

Influence of CYP2D6-dependent metabolism on the steady-state pharmacokinetics and pharmacodynamics of metoprolol and nicardipine, alone and in combination.

1 The metabolism of metoprolol depends in part on the genetically determined activity of the CYP2D6 isoenzyme. In vitro studies have shown that nicardipine is a potent inhibitor of CYP2D6 activity. Since the combination of metoprolol and nicardipine is likely to be used for the treatment of hypertension, we examined the interaction between these two drugs at steady-state. 2 Fourteen healthy volunteers, seven extensive and seven poor metabolisers of dextromethorphan were studied in a double-blind, randomised cross-over four-period protocol. Subjects received nicardipine 50 mg every 12 h, metoprolol 100 mg every 12 h, a combination of both drugs and placebo during 5.5 days. Steady-state pharmacokinetics of nicardipine and metoprolol were analyzed. Beta-adrenoceptor blockade was assessed as the reduction of exercise-induced tachycardia. 3 During treatment with metoprolol, alone or in combination with nicardipine, its steady-state plasma concentrations were higher in subjects of the poor metaboliser phenotype than in extensive metabolisers. Beta-adrenoceptor blockade was also more pronounced in poor metabolisers than in extensive metabolisers of dextromethorphan during treatment with metoprolol alone or in combination with nicardipine (24.0 +/- 2.4% vs 17.1 +/- 3.5% and 24.1 +/- 2.5% vs 15.4 +/- 2.7% reduction in exercise trachycardia, respectively, P < 0.01 in each case). 4 Nicardipine produced a small increase in plasma metoprolol concentration in extensive metabolisers from 35.9 +/- 16.6 to 45.8 +/- 15.4 ng ml(-1) (P < 0.02), but had no significant effect in poor metabolisers. However, nicardipine did not alter the R/S metoprolol ratio in plasma 3 h after dosing, the plasma concentration of S-(-)-metoprolol 3 h after dosing or the beta-adrenoceptor blockade produced by metoprolol in subjects of both phenotypes. The partial metabolic clearance of metoprolol to alpha-hydroxy-metoprolol was not altered significantly in extensive metabolisers. Plasma nicardipine concentration and beta-adrenoceptor blocking effects did not differ between the phenotypes and were not influenced by metoprolol. We conclude that beta-adrenoceptor blockade during repeated dosing with metoprolol is more pronounced in poor than in extensive metaboliser subjects, that nicardipine decreases a CYP2D6-independent route of metoprolol elimination but does not increase beta-adrenoceptor blockade during repeated dosing with metoprolol.

Adrenergic beta-Antagonists↗

Pharmacokinetic and pharmacodynamic interaction between toloxatone, a new reversible monoamine oxidase-A inhibitor, and oral tyramine in healthy subjects.

We examined the influence of toloxatone, a new reversible monoamine oxidase-A inhibitor used in the treatment of depression, on tyramine-induced pressor effect in healthy volunteers. The maximum increase in systolic blood pressure produced by four single oral doses of tyramine administered during a meal and ranging from 100 mg to 800 mg was compared during repeated (3 to 5 days) administration of placebo, 200 mg toloxatone three times a day and 400 mg toloxatone three times a day in a single-blind, three-period crossover study. Toloxatone by itself had no significant influence on blood pressure. During administration of toloxatone, no significant increase in tyramine-induced increase in systolic blood pressure was observed for tyramine doses of 200 mg or less that are consistently higher than those associated with normal food intake. However, toloxatone increased the tyramine-induced increase in blood pressure after 400 mg tyramine (400 mg toloxatone three times a day) and 800 mg tyramine (200 mg toloxatone three times a day and 400 mg toloxatone three times a day). This pharmacodynamic interaction could be explained by an increase in tyramine systemic bioavailability in the presence of toloxatone. It is concluded that interaction between tyramine in meals and toloxatone is unlikely to occur in patients after long-term administration of the drug at therapeutic dosages.

Administration, Oral↗

Prediction of sotalol-induced maximum steady-state QTc prolongation from single-dose administration in healthy volunteers.

The relationship between racemic sotalol plasma concentrations and QTc interval prolongation after both single-dose and repeated administration of three sotalol oral doses was studied in a randomized crossover protocol performed in 10 healthy volunteers. QTc interval increase was significant after the three single-dose sotalol administrations and was significantly related to the administered dose (p < 0.0001). In 21 of 30 analyses, QTc interval was linearly correlated with sotalol plasma concentrations. After the 320 mg dose, the linear model was a best fit for 90% of the cases, and no hysteresis was observed. After repeated sotalol administration, 69 of 87 QTc interval measurements at steady state could be predicted from the plasma concentration versus effect relationship established after single-dose 320 mg administration. Seventeen of 18 errors (94%) corresponded to QTc intervals that were significantly lower than predicted. These findings suggest that a short-term individual linear model determined after a 320 mg test dose of sotalol allows a good prediction of expected maximal increase in QTc duration in healthy subjects.

Administration, Oral↗

Relation between chloroguanide bioactivation to cycloguanil and the genetically determined metabolism of mephenytoin in humans.

It has been suggested recently that the bioactivation of chloroguanide hydrochloride (proguanil) to its active antimalarial metabolite cycloguanil cosegregates with the genetically determined polymorphism of mephenytoin hydroxylation. We determined the chloroguanide to cycloguanil ratio in urine after oral administration of a single dose of 200 mg proguanil either alone or together with 100 mg racemic mephenytoin or 40 mg dextromethorphan in a randomized crossover study performed in 24 healthy subjects. The mephenytoin hydroxylation index was also determined after administration of 100 mg racemic mephenytoin either alone or together with 200 mg proguanil. Two subjects were poor metabolizers and one subject was an intermediate metabolizer of mephenytoin. These three subjects had chloroguanide to cycloguanil ratios of more than 50. The 21 subjects with the extensive metabolizer phenotype for mephenytoin hydroxylation had chloroguanide to cycloguanil ratios of less than 10. The chloroguanide to cycloguanil ratio was not significantly altered by mephenytoin or dextromethorphan coadministration. The trend toward a correlation between chloroguanide/cycloguanil ratio and log mephenytoin hydroxylation index did not reach statistical significance. Inclusion of the dextromethorphan metabolic ratio into the model did not improve the relationship. These findings confirm that the bioactivation of chloroguanide to cycloguanil cosegregates with the genetically determined activity of the CYP2C family. However, the chloroguanide to cycloguanil ratio and the mephenytoin hydroxylation index do not similarly reflect the variable activity of CYP2C.

Adult↗

The pharmacokinetics of perindopril in patients with liver cirrhosis.

Perindopril is a non-sulphydryl angiotensin converting enzyme (ACE) inhibitor which requires hydrolysis to its active metabolite, perindoprilat, to produce its effects. Ten cirrhotic patients with mild to severe disease were studied after oral administration of a single 8 mg dose of perindopril as its tert-butylamine salt. Compared with a historical control group of young healthy volunteers receiving the same single oral dose of perindopril, mean AUC values of the prodrug perindopril were double in patients with liver cirrhosis (602 +/- 294 s.d. ng ml-1 h vs 266 +/- 70 s.d. ng ml-1 h) whereas the mean AUC of perindoprilat was found to be similar (134 +/- 139 ng ml-1 h vs 120 +/- 29 ng ml-1 h). The partial metabolic clearance of perindopril to perindoprilat was much lower in the cirrhotics (26 +/- 12 ml min-1 vs 58 +/- 22 ml min-1). The maximum inhibition of plasma ACE activity measured in the cirrhotic patients (87.5 +/- 5.1%) was comparable with that previously reported with perindopril in patients with mild hepatic impairment as well as in patients with essential hypertension. We suggest that liver cirrhosis may be associated with imparied deesterification of perindopril to its active metabolite perindoprilat but that no dosage adjustment of perindopril is required in cirrhotic patients.

Adult↗

Polymorphism of dextromethorphan metabolism: relationships between phenotype, genotype and response to the administration of encainide in humans.

The polymorphism of dextromethorphan and encainide metabolism is genetically determined and is related to the activity of hepatic CYP2D6. In order to examine the relations between CYP2D6 phenotype, genotype and the electrocardiographic response to the oral administration of encainide, 110 healthy subjects were studied. Metabolic ratios were calculated in urine after oral administration of 40 mg of dextromethorphan and in plasma obtained 2.5 h after oral administration of 50 mg of encainide. Encainide-induced electrocardiographic changes were measured 2.5 h after oral administration of the drug. Genotype was determined in 52 subjects. Results showed that phenotype, either extensive or poor metabolizer, for CYP2D6-dependent metabolism could be identified from the dextromethorphan metabolic ratio calculated in urine, from the encainide metabolic ratio calculated in plasma and from the genotype. However, despite the fact that the changes in atrioventricular (PR) and intraventricular (QRS) conduction times produced by encainide were different in extensive and poor metabolizer subjects and correlated with CYP2D6 activity, the electrocardiographic response was never 100% specific and sensitive for the identification of either phenotype. Moreover, genotypic identification of heterozygous and homozygous extensive metabolizer subjects did not predict CYP2D6 activity, as determined by dextromethorphan and encainide metabolic ratios, or encainide response, as determined by intraventricular and atrioventricular changes. Thus, CYP2D6 activity does not fully predict the electrocardiographic effects of encainide, and genotype, as determined in our study, cannot replace the determination of metabolic ratio in predicting CYP2D6 activity and encainide response in extensive metabolizer subjects.

Adult↗

Influence of amiodarone on genetically determined drug metabolism in humans.

Amiodarone has been shown to interact with the nongenetically determined hepatic elimination of several drugs, including phenytoin and digoxin. Its influence on genetically determined metabolic pathways has not been studied in humans. We examined the effects of oral amiodarone therapy on the genetically determined metabolism of isoniazid (N-acetyltransferase), mephenytoin (cytochrome P450MEPH), and dextromethorphan (CYP2D6). Eight patients with arrhythmias were studied before and 76 +/- 16 days after amiodarone (loading dose of 1000 mg/day for 10 days followed by a maintenance dose of 200 to 400 mg/day). Genetically determined enzyme activity was assessed indirectly by calculating the metabolic ratio (parent drug/metabolite in 8-hour urine for CYP2D6 and P450MEPH and N-acetylisoniazid/isoniazid in plasma for N-acetyltransferase) after oral administration of the parent compounds. At the time of phenotyping, plasma concentrations of amiodarone and N-desethylamiodarone were 0.66 +/- 0.35 micrograms/ml and 0.65 +/- 0.26 micrograms/ml, respectively. Amiodarone increased the log(metabolic ratio) of dextromethorphan from a median of -2.5 (range, -2.9 to -2.0) to a median of -1.9 (range, -2.5 to -1.5; p less than 0.02) but did not alter the metabolic ratio of mephenytoin or isoniazid. The amount of dextromethorphan excreted in urine increased from a median of 0.084 mumol/8 hours (range, 0.041 to 0.161 mumol/8 hours) to a median of 0.205 mumol/8 hours (range, 0.064 to 0.288 mumol/8 hours; p less than 0.02) and the amount of its metabolite (dextrorphan) tended to decrease from a median of 26 mumol/8 hours (range, 15 to 37 mumol/8 hours) to a median of 20 mumol/8 hours (range, 7 to 27 mumol/8 hours; p less than 0.09).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Oral pharmacokinetics of bisoprolol in resting and exercising healthy volunteers.

The effects of exercise on bisoprolol oral pharmacokinetics were studied in eight healthy male volunteers in an open, randomized, three-period, crossover trial. Oral bisoprolol (20 mg) was given either at rest during 24 h or with iterative stress tests before and 2.5, 5, 10, and 24 h after dosing. Exercise tests were repeated on a third placebo period. Bisoprolol was assayed in plasma and urines, and plasma catecholamines were measured before and after stress tests, Cmax, Tmax, elimination t1/2, and renal clearance of bisoprolol were not significantly modified by exercise. AUC0-infinity significantly decreased by 7.5% (p less than 0.05) with stress test resulting in an increase in apparent oral clearance. The beta-blocking effect peaked at 2.5 h, lasted greater than 24 h, and was related to plasma levels. The exercise-induced increase in plasma norepinephrine levels was significantly augmented with bisoprolol. These results suggest that repeated exercise tests exerted only limited effects on the oral pharmacokinetics of bisoprolol.

Adrenergic beta-Antagonists↗

A comparative pharmacokinetic and pharmacodynamic study of conventional and sustained-release preparations of acebutolol in healthy volunteers.

Pharmacokinetics and the degree of beta-blockade of sustained release (SR) acebutolol (500 mg/day) and conventional acebutolol (200 mg tid) were examined after the first oral dose and after 10 days of treatment in ten healthy volunteers. After the first dose, acebutolol Cmax did not significantly differ between the two formulations; however, on day 10 acebutolol Cmax was significantly higher after SR formulation. Cmax of diacetolol, the major metabolite, did not differ between SR and conventional acebutolol neither on day 1 nor on day 10. The dose-corrected relative bio-availability of acebutolol was not different from 100% on day 1 and day 10; however the dose-corrected diacetolol AUC, SR/conventional ratio, was significantly lower than 100% on days 1 and 10. Both acebutolol preparations exerted a significant reduction in exercise tachycardia over 24 h on day 1 and day 10; however, conventional acebutolol exhibited a greater reduction 24 h after the first dose. Exercise-induced increase in systolic blood pressure was similarly inhibited by both treatments except for 24 h after the first dose when systolic blood pressure was significantly higher with SR than with conventional acebutolol. The percent reduction in heart rate during exercise was linearly correlated with log acebutolol plasma concentrations for each treatment regimen. These results suggest that beta-blockade exerted by SR acebutolol in healthy volunteers is equivalent to that of conventional acebutolol.

Acebutolol↗

Rate dependence of sotalol-induced prolongation of ventricular repolarization during exercise in humans.

Studies in animals have shown that drug-induced action potential prolongation with class III antiarrhythmic agents increases with slow pacing rates. We studied the physiological rate dependence of sotalol effects on ventricular repolarization, measured as QT interval duration on the surface electrocardiogram at rest and during a maximal exercise test, in 10 normal volunteers. In a randomized, crossover study, three dosages of sotalol (160 mg/24 hr, 320 mg/24 hr, and 640 mg/24 hr) were administered during 4 days to each subject. In a control period, no drug was administered. During each period, 50-100 QT intervals were measured over a wide range of RR intervals recorded at rest and during the course of a maximal exercise test. Plasma sotalol concentration and beta-adrenoceptor blockade (percent reduction in peak exercise heart rate from control) were also measured. The QT-versus-RR relation was fitted to several formulas, and the overall best fit was used to calculate QT interval duration normalized for a heart rate of 60 beats/min (QTc) and to analyze the rate dependence of QT prolongation with sotalol. Sotalol-induced beta-adrenoceptor blockade and QTc prolongation were dose and concentration dependent. Sotalol reduced peak exercise heart rate by 13.8 +/- 7% at the dosage of 320 mg/24 hr and by 25.4 +/- 8% at the dosage of 640 mg/24 hr (both p less than 0.01). Sotalol prolonged QTc interval by 5.8 +/- 3.7% and 11.8 +/- 3% at these respective dosages (both p less than 0.01). The concentration of sotalol required to produce minimal (mean QTc prolongation, 5.6%; confidence interval, 0-11.2%) QTc prolongation (680 ng/ml) tended to be lower than that required for minimal (mean percent reduction in maximal exercise heart rate, 13.9%; confidence interval, 0-27.8%) beta-blockade (840 ng/ml). QT prolongation with sotalol increased with increasing RR intervals (i.e., decreasing heart rate) at all dosages. QT prolongation became statistically significant for RR of 800 msec or more at all dosages and for RR intervals of 600 msec or more at the dosage of 640 mg/24 hr. This rate dependence altered the relation between QT interval duration and sotalol plasma concentrations. These results suggest that sotalol prolongs QTc interval in humans at dosages and concentrations similar to those required to produce beta-adrenoceptor blockade, QT prolongation with sotalol is more pronounced when heart rate decreases and is not apparent during exercise-induced tachycardia, and the relation between QT prolongation with sotalol and plasma concentrations of the drug depends on the heart rate at which measurements are made.

Adult↗

[Methodology in clinical trials of anti-arrhythmia agents in ventricular arrhythmias. Analysis and perspective following results of the CAST study].

The results of the Cardiac Arrhythmia Suppression Trial (CAST) have not finished modifying the methodology and strategy of development of new antiarrhythmic agents for the treatment of ventricular arrhythmias. The demonstration of a dissociation between a proved antiarrhythmic effect and increased mortality in coronary patients treated with encainide or flecainide, means that, in this situation, antiarrhythmic efficacy cannot be considered to be a substitute criterion of therapeutic benefit. The consequences of these results are as follows: in phase II, the dose-effect relationships should be studied in patients with chronic ventricular extrasystole without ischemic heart disease. This model is sufficiently predictive for the selection of the dosage to be tested in phase III; in phase III, studies of benign ventricular arrhythmias, antiarrhythmic efficacy is demonstrated by ambulatory ECG recordings. If these studies include patients with ischemic heart disease, the patients must be placed on betablocker therapy and the benefits in terms of reduction of mortality have to be shown by controlled trials versus placebo. In malignant life-threatening arrhythmias, open clinical trials may be performed using provocative electrophysiological studies. The inclusion of patients with implanted automatic defibrillator devices could constitute control groups for the placebo group. The future of antiarrhythmic agents for the treatment of ventricular arrhythmias greatly depends on the search for criteria of severity of arrhythmias and the validation of intermediate criteria of efficacy.

Anti-Arrhythmia Agents↗

Effects of bepridil and diltiazem on ventricular repolarization in angina pectoris.

To examine the time-course and potential predictors of prolongation of ventricular repolarization with the calcium antagonist bepridil, the effects of bepridil (300 to 500 mg/day; n = 45) and diltiazem (180 to 300 mg/day; n = 42) on QT and QTc interval duration were analyzed in a randomized double-blind study in patients with angina pectoris. Electrocardiograms were recorded before and 14, 28, 70 and 112 days after treatment was begun. After 14 days, bepridil prolonged QT interval by 26 +/- 35 ms (range, -60 to 120 ms) and QTc (Bazett's formula) by 17 +/- 33 ms (range, -73 to 107 ms) compared to baseline (both p less than 0.05). QT or QTc did not significantly increase thereafter. However, among the 30 patients who had less than 40 ms QTc prolongation at day 14 compared with baseline, 13 (43%) exceeded this limit on at least 1 of the following visits. Diltiazem did not significantly alter QT or QTc intervals. The absolute change in QTc interval from baseline observed after 14 days of bepridil therapy was inversely proportional to the baseline QTc interval (r = -0.68; n = 42; p less than 0.001). The degree of bepridil-induced QTc prolongation on day 14 correlated with pretreatment RR interval (r = 0.36; n = 42; p less than 0.02). In conclusion, chronic administration of bepridil but not of diltiazem prolongs ventricular repolarization in patients with angina pectoris. The overall effects of bepridil therapy on QT and QTc intervals can be assessed by an electrocardiogram recorded after 14 days of treatment but subsequent measurements may be required in individual patients. A short baseline QTc interval and a slow initial heart rate may be potentially useful predictors of a greater QTc prolongation with bepridil.

Angina Pectoris↗