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Biomedical subjects

S Sundberg

Publications and source records attributed to S Sundberg.

At least 19 recordsLinked to original sources

Simultaneous inhibition of catechol-O-methyltransferase and monoamine oxidase A: effects on hemodynamics and catecholamine metabolism in healthy volunteers.

OBJECTIVE: To evaluate the effects of simultaneous pharmacologic inhibition of catechol-O-methyltransferase (COMT) and monoamine oxidase type A (MAO-A) on hemodynamics and catecholamine metabolism in healthy volunteers at rest and during exercise. BACKGROUND: Entacapone, a COMT inhibitor, is studied as an adjunct to levodopa treatment in patients with Parkinson's disease. Moclobemide, an MAO-A inhibitor, is already in clinical use as an antidepressant. It is likely that entacapone and moclobemide will be used concomitantly in the future in patients who have both Parkinson's disease and depression. It was therefore considered to be important to investigate the tolerability of combined COMT and MAO-A inhibition with entacapone and moclobemide. DESIGN AND METHODS: This was a randomized, single-dose, double-blind crossover study of 12 healthy male volunteers. The treatments were either placebo, 200 mg entacapone, 150 mg moclobemide, or the combination of entacapone and moclobemide in single doses. Heart rate, blood pressure, impedance cardiography, and plasma concentrations of catecholamines and their metabolites were measured both at rest and during submaximal standardized bicycle exercise. RESULTS: Entacapone and moclobemide (either alone or in combination) did not change heart rate, blood pressure, or any hemodynamic parameter at rest or during exercise compared with placebo. Neither were the concentrations of norepinephrine and epinephrine in plasma influenced. Both drugs had the expected effects on catecholamine metabolite concentrations in plasma. The decrease in the concentration of 3-methoxy-4-hydroxyphenylglycol (MHPG) induced by moclobemide was not potentiated by entacapone. CONCLUSION: The combined use of therapeutic single doses of entacapone and moclobemide in healthy volunteers did not affect the hemodynamics or concentrations of unconjugated norepinephrine and epinephrine in plasma. Other mechanisms are capable of regulating the concentrations of norepinephrine and epinephrine in circulating blood (and apparently also at receptors in the heart and vascular tissue) when both COMT and MAO-A activity are inhibited to a significant extent. This was also the case during marked sympathetic stimulation. The changes in the catecholamine metabolite concentrations provide evidence of effective COMT and MAO inhibition. Concentrations of MHPG in plasma are determined mainly by MAO-A activity because COMT inhibition did not have an additional effect on the moclobemide-induced decrease in plasma MHPG.

Administration, Oral

Hemodynamic and neurohumoral effects of levosimendan, a new calcium sensitizer, at rest and during exercise in healthy men.

Levosimendan is a novel inodilator that increases the calcium sensitivity of troponin C in a calcium-dependent way. Cardiac function (impedance cardiography, systolic time intervals), neurohumoral responses at rest and during exercise at 2 workloads, and peripheral blood flow (plethysmography) were studied in 14 healthy young men. Vehicle and 2 doses of levosimendan (6.5 micrograms/kg, low dose [LD]; and 25 micrograms/kg, high dose [HD]) were given intravenously in a crossover study. Measurements taken 15 minutes after a supine rest showed HD levosimendan shortened electromechanical systole (QS2i) by 16 ms maximally (p < 0.001), and decreased systemic vascular resistance by 25% (p < 0.001), compared with baseline values. Diastolic blood pressure fell by 9 mm Hg (p < 0.01). When the changes after vehicle were compared with the changes after HD levosimendan, the difference was 2.1 L/min after 25 micrograms/kg (p < 0.001), caused by an increase in stroke volume, with the heart rate being unaffected. Leg blood flow increased by 35% (p < 0.001). During exercise at the lower workload, HD levosimendan increased cardiac output by 1.5 L/min (p < 0.05), compared with that caused by vehicle, by an increase in heart rate, with the stroke volume being unchanged. Electromechanical systole was shortened significantly (20 ms, p < 0.001 after HD; 12 ms, p < 0.01 after LD). At the higher workload, no effects on electromechanical systole or cardiac output compared with that associated with administration of vehicle were seen, but the mean heart rate increased (p < 0.001, LD and HD) and mean diastolic blood pressure decreased (p < 0.01, HD).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

The effect of entacapone on the disposition and hemodynamic effects of intravenous isoproterenol and epinephrine.

BACKGROUND: Entacapone is a potent, selective catechol-O-methyltransferase (COMT) inhibitor. Entacapone could potentiate the hemodynamic effects of exogenously administered catecholamines, which are substrates of the COMT enzyme. DESIGN AND METHODS: Originally, the study was to follow a placebo-controlled, randomized crossover design. Because of two cases of ventricular arrhythmia, a decision was made to terminate the study before its completion. Six subjects went through the isoproterenol and epinephrine infusions while taking placebo and five other subjects while taking entacapone. The actual design was thus one with two parallel groups with random allocation and double-blind drug administration. The subjects were given either a single dose of 400 mg entacapone or placebo 30 minutes before the start of isoproterenol or epinephrine infusions. Four dosages of epinephrine (1.5, 3, 6, or 12 micrograms/min) and isoproterenol (0.5, 1, 1.5, or 2 micrograms/min) were infused (5 minutes for each level). Heart rate and blood pressure were measured and ECG was monitored. The concentrations of isoproterenol and epinephrine in plasma were determined by HPLC. RESULTS: The maximal increase in heart rate during isoproterenol infusion after entacapone administration (40 +/- 11 beats/min, mean +/- SD) was statistically greater (p = 0.0496) than after placebo administration (27 +/- 7 beats/min). The increase in heart rate during epinephrine infusion was 25 +/- 13 beats/min after entacapone administration and 14 +/- 9 beats/min after placebo administration (p = 0.127). There were no statistically significant differences between entacapone and placebo in blood pressure or in plasma concentrations of isoproterenol and epinephrine. CONCLUSION: We conclude that entacapone may potentiate the chronotropic and arrhythmogenic effects of exogenously administered isoproterenol and epinephrine.

Adult

Variation in plethysmographically measured limb blood flow using two study designs.

Ingestion of food is known to influence peripheral blood flow. In clinical drug trials it is important to obtain values which do not fluctuate because of exogenous factors. In the study reported here, the variability of limb blood flow was assessed using two study designs: after a light standard breakfast with nothing more to eat (Day A); and after an overnight fast followed by a heavy non-standardized lunch (Day B). Calf and forearm blood flow (BF), venous capacity (VC) and maximal venous outflow (MVO) were measured by means of strain-gauge venous occlusion plethysmography in 10 young healthy subjects six times during a period of 8 h. The most stable values were recorded from the calf on Day A, when no statistically significant variation occurred in any of the parameters. Mean values for calf BF ranged from 3.9 to 4.3 ml min-1 100 ml-1 (SEM 0.3-0.4) at the different time points on Day A. The corresponding values for VC were 3.4-3.7 ml 100 ml-1 (SEM 0.2-0.3) and for MVO were 100-112 ml min-1 100 ml-1 (SEM 7-10). Within-subject coefficients of variation were 13-16%. After lunch on Day B, both calf and forearm BF increased significantly, by 40-60%, as compared with prelunch values, and remained at about this level throughout the rest of the day. The corresponding postlunch increase in VC was 25-40%, and that in MVO was 20-25%. A study design in which the subjects ate a light, standard breakfast before the start of measurements and fasted thereafter gave fairly stable plethysmographic results.

Adult

Hemodynamic effects of the novel cardiotonic drug simendan: echocardiographic assessment in healthy volunteers.

Simendan is a novel cardiotonic drug with mixed properties, including calcium sensitization. Simendan was given intravenously to eight healthy volunteers in doses from 0.1 to 10.0 mg to define its safety and dose-response effects. Its effects on myocardial function were recorded by echocardiography with simultaneous measurement of heart rate (HR) and blood pressure (BP). A linear dose response was observed in all echocardiographic indices. Fractional shortening increased from a basal value of 29.5% to 32.4% (p < 0.05), 34.7% (p < 0.001), and 39.4% (p < 0.001) 10 minutes after doses of 1.0, 2.0, and 5.0 mg of simendan, respectively. The mean velocity of maximal circumferential fiber shortening increased from the baseline of 2.22 lengths/sec to 2.7 lengths/sec after the 2.0 mg dose (p < 0.05) and to 3.31 lengths/sec after the 5.0 mg dose (p < 0.001). Mean BP decreased slightly and mean HR increased only by 5.2 beats/min after the 5.0 mg dose. Because of the potent effect seen on hemodynamic indices and due to two vasovagal reactions, 10 mg was given to two subjects only. These results revealed that simendan has hemodynamic effects that can be explained by positive inotropy as well as vasodilatation, in agreement with preclinical findings. Further studies with patients disabled by heart failure are warranted.

Adult

Haemodynamic dose-efficacy of levosimendan in healthy volunteers.

Levosimendan is a new calcium-sensitiser intended for the treatment of congestive heart failure. The results of preclinical studies indicate it has positive inotropic and vasodilator effects. In the open study reported here up to 5 mg levosimendan and vehicle were administered to 8 healthy male volunteers at one- to 2-week intervals. Efficacy was evaluated using M-mode echocardiography, and by measuring systolic time intervals, recording ECG and measuring blood pressure. For almost all haemodynamic parameters except heart rate (HR) the maximum effect was seen 10 or 20 min after drug infusion. Effects 10 min after infusion of drug and vehicle were compared. HR was significantly increased 10 min only after infusion of 5 mg: significant increases were seen 60 min after infusions of 2, 3 and 5 mg (4, 8 and 17 beats.min-1, respectively). Diastolic blood pressure was significantly lower after doses of 1 mg or more. The decrease after 5 mg was 17 mmHg. Systolic blood pressure tended to increase. Fractional shortening (FS) and ejection fraction (EF) increased significantly after doses of 1 mg and higher. EF 10 min after infusion of vehicle was 54%. It increased to 73% after 5 mg. Decreases in electromechanical systole (QS2i) 10 min after 2, 3 and 5 mg were significant. There were no clinically significant adverse events or changes in laboratory safety values. The changes in QS2i, FS, EF and blood pressure indicate that levosimendan has positive inotropic and vasodilator effects in healthy subjects.

Adult

COMT inhibition by high-dose entacapone does not affect hemodynamics but changes catecholamine metabolism in healthy volunteers at rest and during exercise.

We studied the effects of catechol-O-methyltransferase (COMT) inhibition with entacapone on hemodynamics and catecholamine metabolism in healthy volunteers at rest and during a bicycle exercise test. Entacapone was given orally during two periods of seven days each to eleven healthy male volunteers; on the first period 400 mg t.i.d. and on the second 800 mg t.i.d. A submaximal exercise test giving a heart rate of about 163-167 beats/min with the highest predetermined work load was performed on a bicycle ergometer, and blood pressure, heart rate and ECG were recorded. The concentrations of adrenaline, noradrenaline, 3,4-dihydroxyphenylglycol (DHPG), 3-methoxy-4-hydroxyphenylglycol (MHPG) and 3,4-dihydroxyphenylacetic acid (DOPAC) in plasma were determined. Blood pressure, heart rate, ECG, and plasma concentrations of unconjugated adrenaline and noradrenaline were not influenced after single and repeated dosing of entacapone. The plasma concentrations of DHPG (a monoamine oxidase (MAO)-dependent metabolite) increased maximally by 245% compared to the control day. DOPAC (a MAO-dependent metabolite) increased maximally by 144% and MHPG (a COMT-dependent metabolite) decreased by 54%. The increase in DHPG and DOPAC was significantly greater with the 800 mg dose than with the 400 mg dose. The decrease in MHPG was significantly greater with the repeated dosing than with the single dose of entacapone. COMT inhibition by entacapone seems not to affect hemodynamics or plasma concentrations of unconjugated adrenaline and noradrenaline in healthy volunteers either at rest or during exercise.(ABSTRACT TRUNCATED AT 250 WORDS)

3,4-Dihydroxyphenylacetic Acid

The effects of the COMT inhibitor nitecapone for one week on exercise haemodynamics and catecholamine disposition.

We have studied resting and exercise haemodynamics and catecholamine disposition after catechol-O-methyl-transferase (COMT) inhibition with nitecapone 100 mg t.d.s. for 7 days in 15 healthy men (aged 21 to 28 y) in a placebo-controlled, cross-over study. Nitecapone did not alter resting or exercise heart rates, blood pressure, or plasma catecholamine concentrations, but it altered the metabolic profile of endogenous catecholamines, as shown by: (1) a fall in the concentrations of the COMT-dependent metabolite 3-methoxy-4-hydroxy-phenylglycol (MHPG) by 22% (P < 0.01), (2) increases in plasma concentrations of the monoamine oxidase-dependent metabolites 3,4-dihydroxyphenylglycol (DHPG) by up to 90% (P < 0.001) and 3,4-dihydroxyphenylacetic acid (DOPAC) by 67% (P < 0.05), (3) a three-fold increase in the concentration of circulating conjugated adrenaline (P < 0.001).

Adult

Efficacy of conventional and sustained-release verapamil in stable angina pectoris.

The efficacy of sustained-release (s.r.) verapamil and conventional verapamil were compared in a double blind, crossover study in 20 patients (age 53 +/- SD6 years) who had stable effort angina and had used betablockers and long acting nitrates for at least two weeks. All patients received s.r. verapamil 200 mg b.i.d. and conventional verapamil 120 mg t.i.d. in a randomised order for two weeks. A symptom limited bicycle exercise test was performed at the end of the patients' previous medication period with betablocker plus long acting nitrate and at the end of both verapamil treatments in the morning before drug administration and three hours thereafter. All the patients improved subjectively during both verapamil regimens according to NYHA classification and they had fewer anginal attacks. The time to onset of ST-segment depression during exercise remained shorter during beta-blockade and long acting nitrates than during both verapamil regimens (P less than 0.05). During the peak action three hours after drug administration conventional verapamil was most effective at comparable workloads (P less than 0.05), whereas the exercise time was slightly prolonged with s.r. verapamil before drug administration.

Adrenergic beta-Antagonists

COMT inhibition with nitecapone does not affect the tyramine pressor response.

Nitecapone (OR-462) is a new selective COMT inhibitor with gastroprotective properties. The aim of the present study was to determine whether nitecapone potentiates the haemodynamic effects of a tyramine-induced increase in catecholamine release. The systolic blood pressure response to tyramine was studied in 11 healthy male volunteers (age 20-32 years). Tyramine was given i.v. as rapid bolus injections in increasing doses without drug intake and after oral intake of single doses of 25 mg and 100 mg of nitecapone. The tyramine dose required to increase systolic blood pressure by 30 mm Hg ('pressor dose') was 4.98 mg, 5.04 mg and 4.88 mg after no medication, and with 25 mg and 100 mg of nitecapone, respectively. There were also no differences in the systolic blood pressure response vs time curves between the three regimens. COMT inhibition with nitecapone did not potentiate the haemodynamic responses to tyramine-induced catecholamine release.

Adult

Exercise hemodynamics and catecholamine metabolism after catechol-O-methyltransferase inhibition with nitecapone.

The effect of catechol-O-methyltransferase inhibition with nitecapone (OR-462) on the hemodynamic responses to exercise and catecholamine metabolism was studied in 10 healthy male volunteers (aged 19 to 26 years). Nitecapone, a new specific and selective catechol-O-methyltransferase inhibitor, was given at increasing single oral doses up to 100 mg. Nitecapone did not influence resting or exercise heart rate, blood pressure, systolic time intervals, or plasma catecholamine levels. It altered the metabolic profile of catecholamines as shown by (1) an increase of 140% in the plasma concentration of the monoamine oxidase-dependent metabolite 3,4-dihydroxyphenylethyleneglycol (p less than 0.001), (2) a decrease of 27% in the plasma concentration of its methylation product 3-methoxy-4-hydroxyphenylethyleneglycol (p less than 0.05), and (3) a 25% reduction in the urinary excretion of the methylated metabolites 3-methoxy-4-hydroxymandelic acid and homovanillic acid (p less than 0.05). Nitecapone was well tolerated and seemed to be hemodynamically safe in humans.

Adult

Effects of captopril on blood pressure and respiratory function compared to verapamil in patients with hypertension and asthma.

Seventeen adult patients with moderate and stable bronchial asthma and established essential hypertension (WHO I or II) were evaluated in a randomized, double-blind, crossover study of the effects of captopril (50-100 mg/day) and verapamil (160-240 mg/day) on blood pressure, orthostatic reactions, respiratory function, and asthmatic symptoms. The effect of both drugs on blood pressure was significant. Blood pressure (mean of 161/98 mm Hg initially) decreased to a mean of 147/90 and 160/91 mm Hg on captopril and verapamil, respectively, with normal orthostatic changes. There were no significant differences in forced vital capacity (FVC), forced expiratory volume in 1 s (FEV1), maximal expiratory flow at 50% of FVC (MEF50), or peak expiratory flow (PEF) measurements at the end of each treatment period. The subjective severity of asthma did not change significantly during the trial. No significant cough symptoms were reported on captopril.

Aged

Comparison of potassium alone and potassium-magnesium supplementation in patients with heart failure using hydrochlorothiazide.

Supplementation of potassium alone and in combination with magnesium was compared in 10 patients with chronic compensated heart failure receiving hydrochlorothiazide 50 mg twice daily for the whole trial. After a 3-week run-in period, the patients were randomized to receive active supplementation for 6 weeks in a double-blind cross-over manner. A 3-week wash-out period was kept in between. Addition of 2 g potassium chloride daily (27 mmol K+) did not efficiently correct the serum potassium concentration. After the combined supplementation of 2 g potassium and 1 g magnesium (27 mmol K+ and 17 mmol Mg2+ daily), both serum potassium and magnesium concentrations increased statistically significantly during the first 2 weeks of treatment. After a longer treatment of 6 weeks, the effect of combined supplementation was less clear, even though a trend toward a better maintenance of serum potassium was still evident.

Aged

Rapid reversal of circadian blood pressure rhythm in shift workers.

The blood pressure and heart rates of seven normotensive shift workers were monitored automatically for 24 h with a non-invasive ambulatory method on 3 different days. The first monitoring session took place at the end of an ordinary work period of morning shifts, the second on the first day of a period of night shifts, and the third on the last day of a period of night shifts. The circadian blood pressure rhythm, which showed a normal pattern during the daytime work shift, was totally reversed from the first day of the night shift. The blood pressure rhythm closely followed the sleep-wakefulness cycle. The changes in circadian heart rate rhythm were not as pronounced as those in blood pressure but showed a similar trend.

Adult

Exercise capacity and hemodynamics in persons aged 20 to 50 years with systemic hypertension treated with diltiazem and atenolol.

Hemodynamic responses and exercise capacity were studied during maximal exercise in 25 young hypertensive persons (mean age 40 years) taking placebo, diltiazem (mean 216 mg/day) and atenolol (mean 80 mg/day). The study was a crossover, double-blind, randomized trial, each medication period lasting 2 months. Sitting blood pressure (BP) was 160 +/- 19/109 +/- 8 mm Hg after run-in. Both drugs decreased BP significantly, diltiazem by 10/ 11 mm Hg and atenolol by 16/14 mm Hg (difference not significant between drugs). During exercise there were no differences among patients taking placebo, diltiazem and atenolol in peak workload and rating of perceived exertion. Atenolol significantly attenuated the increase in heart rate, BP and heart rate-BP product at each workload. Diastolic BP during exercise was significantly lower (6 to 10 mm Hg) during diltiazem therapy than during placebo at each workload. Thus, both diltiazem and atenolol decrease rest BP significantly without impairing exercise capacity.

Adult