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Biomedical subjects

A W Peck

Publications and source records attributed to A W Peck.

At least 19 recordsLinked to original sources

Sodium valproate acutely inhibits lamotrigine metabolism.

Concomitant administration of sodium valproate (VPA) reduced lamotrigine (LTG) total clearance by approximately 21% and increased elimination half-life and AUC. Reduced elimination occurred acutely within the first hour. Renal elimination of LTG was not impaired. The most probable explanation for this effect is hepatic competition between VPA and LTG for glucuronidation. Volume of distribution and parameters related to absorption, Cmax and tmax were unchanged.

Adult↗

Clinical pharmacology of lamotrigine.

The pharmacokinetics and pharmacodynamics of lamotrigine (LTG), a new antiepileptic drug (AED), were studied in healthy volunteers. In an open dose-escalating study, LTG 240 mg produced peak plasma concentrations of around 3 micrograms/mg with no significant adverse events. Subsequent pharmacokinetic studies revealed complete oral absorption, first-order kinetics with a mean half-life of approximately 1 day, and elimination mainly as a glucuronide in the urine. Early studies in patients with epilepsy revealed more rapid metabolism when given with enzyme-inducing AEDs and delayed metabolism by valproate. A placebo-controlled, double-blind study compared LTG 120 and 240 mg with phenytoin (PHT) 500 and 1,000 mg, and diazepam (DZP) 10 mg. Visual analogue scales showed sedation after PHT 1,000 mg and DZP 10 mg, but not after LTG. Smooth pursuit eye movements and adaptive tracking were impaired by DZP and PHT 1,000 mg. LTG did not affect these variables. A comparison of LTG 150 and 300 mg and carbamazepine (CBZ) 200, 400, and 600 mg demonstrated impairment of smooth pursuit and saccadic eye movements by CBZ 600 and 400 mg, but not by LTG. Additionally, CBZ 600 mg impaired adaptive tracking and increased body sway and heart rate. These studies have shown LTG to have desirable and predictable pharmacokinetic properties for an AED. Pharmacodynamic effects were absent, suggesting a high therapeutic index.

Administration, Oral↗

Analgesic, central, cardiovascular and endocrine effects of the enkephalin analogue Tyr-D.Arg-Gly-Phe(4NO2)-Pro-NH2 (443C81) in healthy volunteers.

443C81 is a synthetic enkephalin thought to act on peripheral opiate receptors. The analgesic, central, cardiovascular and endocrine effects of two i.v. doses of 443C81 were investigated in 12 healthy male volunteers. Its effects were compared with those of placebo and the classical opiate dipipanone given orally using a double dummy design. 443C81 produced dose-related analgesia; dipipanone 10 mg had a greater effect than the high dose 443C81. In contrast to dipipanone, 443C81 did not cause significant miosis or reduce minute volume on rebreathing CO2 and there was no evidence of sedation. Dry mouth was reported frequently and associated with reduced salivation after all active treatments. Both 443C81 and dipipanone increased circulating prolactin and growth hormone and reduced cortisol levels. This novel enkephalin appears to possess analgesic activity and some other properties of opiates but is devoid of clinically relevant narcotic effects.

Adult↗

The pharmacokinetics of lamotrigine (BW430C) in healthy subjects with unconjugated hyperbilirubinaemia (Gilbert's syndrome).

A single oral dose of lamotrigine was administered to seven volunteers with Gilbert's Syndrome (unconjugated hyperbilirubinaemia). Plasma samples were assayed by high performance liquid chromatography (h.p.l.c.) and pharmacokinetic parameters were compared with those of a group of nine normal volunteers. In the subjects with Gilbert's Syndrome mean oral clearance (CLpo) was 32% lower (P less than 0.01) and the plasma elimination half-life (t1/2) was 37% lower (P less than 0.02) than in the normal controls. The amount of unchanged lamotrigine excreted in the urine was 30% greater in the Gilbert's subjects (P less than 0.01) although this only amounted to 9.5% of the administered dose. Subjects with Gilbert's Syndrome have some impairment of lamotrigine elimination but this is unlikely to be clinically important.

Adult↗

Comparison of the effects of lamotrigine and phenytoin on the EEG power spectrum and cortical and brainstem-evoked responses of normal human volunteers.

Phenytoin and lamotrigine (a new antiepileptic drug with an animal experimental profile resembling phenytoin) have closely similar effects on the quantitative pharmaco-electroencephalogram. These characteristics do not provide a basis for the functional classification of antiepileptic drugs nor for prediction of clinical efficacy, but they do give some insight into the probable secondary psychotropic effects which may arise with use of these drugs. Central conduction in cortical (visual) and brainstem (auditory) event-related potentials are not influenced by either drug, but peripheral nerve conduction is delayed with the use of phenytoin as reflected in increased latency wave I in the brainstem auditory-evoked response. The evidence suggests that in equivalent therapeutic dosage, lamotrigine may be less neurotoxic than phenytoin.

Adult↗

A preliminary study of the pharmacodynamics and pharmacokinetics of a novel enkephalin analogue [Tyr-D.Arg-Gly-Phe (4NO2).Pro.NH2 (BW443C)] in healthy volunteers.

We have studied 16 healthy men to evaluate preliminary pharmacodynamics and kinetics of BW443C given by i.v. infusions. Four volunteers received escalating doses at weekly intervals, starting at 0.1 microgram.kg-1 for 60 min and increasing to a maximum of 2.0 micrograms.kg-1.min-1 for 180 min. Subsequently 12 different subjects received single i.v. infusions of 10 micrograms.kg-1.min-1 for 20 min. Subjective effects were reported and objective measurements made of central nervous and cardiovascular effects. Blood was sampled at intervals on all occasions, plasma concentrations were determined by radioimmunoassay and pharmacokinetic profiles were analysed using NONLIN. Dry mouth and some nasal stuffiness were reported and postural hypotension occurred in 5/16 subjects at plasma concentrations greater than 0.8 microgram.ml-1. Supine blood pressure was well maintained in all subjects and hypotension resolved within 60-90 min of discontinuing the infusion. There was no evidence of sedation, mood change, nausea, vomiting, miosis, change in accommodation or respiratory depression. Rapid infusions produced transient feelings of warmth, heavy eyelids, heavy legs, and increased bowel sounds, which resolved despite increasing plasma concentrations. The disposition of the peptide was adequately described by a 2-compartment model with a mean +/- SD plasma clearance of 123 +/- 18 ml.min-1 and a half-life of 2.0 +/- 0.4 h.

Adult↗

The effects of acrivastine (BW825C), diphenhydramine and terfenadine in combination with alcohol on human CNS performance.

Two studies were performed to measure the effects of acrivastine (BW825C), an antihistamine, in combination with alcohol on the central nervous system. In one study acrivastine 8 mg, diphenhydramine 50 mg and alcohol 32 ml were administered alone and in combination and compared with placebo. In a second study terfenadine 60 and 120 mg and acrivastine 4 and 8 mg combined with alcohol 32 ml were compared with placebo and alcohol alone. Each study was a double-blind, randomised cross-over design using twelve healthy volunteers. Adaptive tracking, reaction time, body sway, eye movements and subjective effects were measured at intervals after treatments. Acrivastine 8 mg alone did not affect any of these measures in contrast with diphenhydramine. Acrivastine in combination with alcohol caused significantly more impairment of some of the tests than placebo or alcohol alone, but significantly less than diphenhydramine/alcohol, which also affected more tests. In the second study no significant differences were seen between the effects of alcohol alone and combinations of either terfenadine or acrivastine with alcohol. It was concluded that acrivastine 8 mg alone did not impair CNS performance in the tests used. In combination with alcohol significant impairment was seen, but this was less pronounced than after diphenhydramine/alcohol. The second study failed to demonstrate differences between drug/alcohol combinations and alcohol alone confirming that the effect of acrivastine in combination with alcohol is small.

Adolescent↗

Indomethacin: effects on cold-induced pain and the nervous system in healthy volunteers.

The sensitivity of the cold-induced pain (CP) model to the non-steroidal anti-inflammatory drug (NSAID) indomethacin was studied in healthy volunteers. Effects on the central nervous system were also sought. Subjects received single oral doses of indomethacin 50 and 100 mg, dipipanone 8 mg and placebo, according to a double-blind, randomised, balanced, cross-over design with an interval of 7 days between occasions. A test battery was performed before each treatment and then at 45, 105 and 165 min post treatment. Pain scores were unaltered by indomethacin at either dose, but the drug certainly affected the CNS, increasing respiratory drive and changing self-assessed mood. It is concluded that the CP model is insensitive to indomethacin, even in doses which have clear-cut CNS effects. The respiratory stimulant action of indomethacin may deserve further study.

Adult↗

Lamotrigine: single-dose pharmacokinetics and initial 1 week experience in refractory epilepsy.

Twenty-three residential patients on chronic antiepileptic drugs (AEDs) were entered into an open study of 4 weeks duration. Baseline variables and seizure frequency were determined in the first week. All patients received a single dose of lamotrigine in the second week to determine single-dose pharmacokinetic parameters. Twenty patients then received daily or twice daily lamotrigine for a week. Post-treatment seizure frequency was observed for a further week. Patients taking liver enzyme inducing antiepileptic drugs showed a mean lamotrigine plasma elimination half-life (T1/2) of 14 h (+/- 7) (T1/2 of normal volunteers = 24 h) and those taking sodium valproate and an inducing AED showed a mean lamotrigine T1/2 of 30 h (+/- 10). The plasma concentrations of co-administered sodium valproate, phenytoin, carbamazepine, phenobarbitone and primidone were not altered by 1 week lamotrigine dosing. There was a significant reduction in complex partial seizures in the treatment week compared with baseline. Some patients showed a marked increase in seizure frequency on stopping lamotrigine. There was an increase in reports of drowsiness during lamotrigine administration, but there were no clinically significant changes in any safety measure.

Adolescent↗

Seven day administration of lamotrigine in epilepsy: placebo-controlled add-on trial.

A double-blind placebo-controlled trial of 7 days administration of lamotrigine as add-on therapy was performed in 10 patients with frequent therapy-resistant, chiefly partial, seizures. Dosage was adjusted on the basis of estimated half-life. Six patients showed a 50% seizure reduction on lamotrigine and two an increase. Side effects (ataxia, dizziness and apathy) occurred in 3 patients, but only at blood levels above 3 micrograms/ml, and were rapidly relieved when the dose was reduced in two. EEG spike counts were significantly reduced on lamotrigine. There was no evidence of interactions with co-medication.

Adolescent↗

Lamotrigine, a new anticonvulsant: pharmacokinetics in normal humans.

The pharmacokinetics of lamotrigine, a new anticonvulsant, were studied in three studies in normal volunteers. In the first study, five subjects received oral doses of lamotrigine up to 240 mg. A linear relationship was observed between dose administration and both peak drug concentration and AUC. In a second study 10 subjects received 120 mg lamotrigine and the mean (+/- SD) of the elimination half-life (t1/2) was 24.1 +/- 5.7 hours and of volume of distribution/bioavailability 1.2 +/- 0.12 L/kg. Saliva concentrations were 46% of the plasma concentration. Total urinary recovery of drug over 144 hours was 70.5% of the oral dose. A glucuronide conjugate accounted for 89.4% of the urinary recovery. In a third study the kinetics of repeated administration were studied. Fifteen subjects were randomized to lamotrigine (n = 10) or placebo (n = 5) and received multiple doses over 7 days. The overall plasma elimination t1/2 calculated from data during the 7 days was 25.5 +/- 10.2 hours. Observed pharmacokinetics on multiple administration obeyed closely those predicted from the single-dose experiment, suggesting the absence of autoinduction of metabolism. No clinically important side effects or changes in central nervous system or cardiovascular system variables, hematology, biochemistry, or urinalysis occurred during the 7 days.

Anticonvulsants↗

Effects of triprolidine and dipipanone in the cold induced pain test, and the central nervous system of healthy volunteers.

1 Twelve healthy volunteers took part in a study of the interaction between the antihistamine triprolidine and the opioid dipipanone in the cold induced pain (CP) test and tests of sedation. They received placebo, triprolidine 2.5 mg, dipipanone 8 mg or the combination of the two active treatments according to a double-blind, randomised, balanced, crossover design. 2 Antihistamine activity was demonstrated by triprolidine reducing the size of wheals and flares produced by intradermal histamine 1.6 micrograms. However, triprolidine produced no analgesia in the CP test, nor did it enhance the analgesia produced by dipipanone alone. 3 Neither treatment alone produced statistically significant sedation, assessed by visual analogue scales (VAS), side effect check list, body sway and reaction times. However, the combination did cause significant sedation. 4 Dipipanone reduced pupil size, depressed respiration, and decreased salivation. Triprolidine had no effects on pupil size and respiration, but reduced salivation slightly. It was concluded that histaminergic (H1) mechanisms are unlikely to be involved in pain produced by cold.

Adult↗

Dipipanone and nifedipine in cold induced pain; analgesia not due to skin warming.

The mechanism of the pain relief produced by opiates in normal volunteers in the cold induced pain test has been investigated. In a double-blind placebo controlled study, hand skin temperature during a 3 min immersion in water at 1 degree C was not affected by either the opioid dipipanone 8 mg or the vasodilator nifedipine 10 and 20 mg. During this immersion, dipipanone produced significant pain relief. Nifedipine reduced pre-immersion blood pressures and raised heart rates, however, it did not significantly alter pain scores. It is concluded that vasodilatation and local warming do not play a role in the relief of pain by opiates in the cold immersion test.

Adult↗

The disposition of bupropion and its metabolites in healthy male volunteers after single and multiple doses.

The pharmacokinetics of bupropion and 3 of its basic metabolites were determined in 8 young, healthy, male volunteers after single and multiple oral doses of bupropion. Plasma profiles were obtained: 1) after a single 100 mg oral dose of bupropion hydrochloride, 2) following administration of 100 mg 8-hourly for 14 days and 3) again after a single 100 mg dose 14 days later. Plasma concentrations of the parent drug and metabolites were determined by high-performance liquid chromatography. Saliva secretion and pupil diameters were measured, subjective assessments of sleep made using visual analogue scales and side effects, blood counts and biochemistry were monitored. After the first dose mean elimination half lives (t1/2) of bupropion, and metabolites I and II were 8, 19 and 19 h respectively. On repeated administration there was little accumulation of the parent drug and no evidence for induction of its own metabolism. Accumulation of I was consistent with its rate of elimination after single doses while that of II was greater than predicted with prolongation of t1/2 to 35 h. Metabolite III was barely detectable after single doses but its accumulation on multiple dosing was consistent with its long half life (35 h) determined on occasion 2. Saliva secretion was significantly reduced during the multiple dosing period but there were no complaints of dry mouth. Subjective assessments of sleep were not significantly altered though one subject reported vivid dreams. There were no other adverse reactions.

Adult↗

Pharmacodynamic and pharmacokinetics of BW 825C: a new antihistamine.

The new H1-receptor antagonist BW 825C and triprolidine (2.5 and 5 mg) were administered to 12 healthy male volunteers in a double blind placebo controlled, balanced, crossover design. Histamine antagonism was measured by assessment of flare and weal areas after intradermal injection of histamine. The 2 compounds were approximately equipotent in blocking the flare and weal response to intradermal histamine and had a similar duration of action. Triprolidine impaired performance of vigilance and reaction time (p less than 0.05) compared with placebo while BW 825C did not. Drowsiness measured using visual analogue scales followed both triprolidine treatments, but not BW 825C. BW 825C had a plasma half-life (t1/2) of 1.7 +/- 0.2 h and triprolidine of 4.6 +/- 4.3 h. The peak plasma level of BW 825C was approximately 6 times that of triprolidine. It was concluded that BW 825C might be a clinically active H1-antagonist with reduced sedative side-effects.

Adult↗

Pharmacokinetics and Pharmacodynamics of procyclidine in man.

The pharmacokinetics and pharmacodynamics of procyclidine (10 mg) after oral and intravenous administration were studied in six healthy volunteers. Treatment order was randomised and the study was placebo-controlled and conducted blind. After oral dosing the mean peak plasma concentration was 116 ng/ml and mean bioavailability was 75%. After both oral and intravenous dosing the mean values for the volume of distribution, total body clearance and plasma elimination half-life of procyclidine were in the order of 1 l/kg, 68 ml/min and 12 h respectively. Autonomic effects were maximal within 0.5 h of intravenous administration and at about 1-2 h after oral dosing. Significant effects on pupil diameter, visual near point, salivary secretion and heart rate occurred after intravenous treatment and similar but less marked effects occurred after the oral dose. Significant autonomic effects were still detectable 12 h after both forms of treatment.

Administration, Oral↗

The acute effects of acrivastine (BW825C), a new antihistamine, compared with triprolidine on measures of central nervous system performance and subjective effects.

The new H1-antagonist acrivastine (BW825C) in doses of 4, 8, and 16 mg was compared with triprolidine HCl (2.5 and 5 mg) in a double-blind crossover study in 12 subjects. Adaptive tracking performance 1.5 hours after dosing was impaired by triprolidine, 2.5 and 5 mg; the impairment was still detectable 3.5 hours after 5 mg. Acrivastine did not impair adaptive tracking after any of the doses. Triprolidine increased reaction times after 1.5 hours (2.5 and 5 mg) and 3 hours (5 mg), but acrivastine did not have any effect on reaction time at any dose. Both doses of triprolidine caused subjective central nervous system effects after 1.5 hours, and triprolidine, 5 mg, still had some detectable effects on subjective rating scales after 3 hours. No subjective effects were noted after acrivastine. We conclude that acrivastine at doses causing more peripheral H1-antagonism than triprolidine has considerably reduced central nervous system activity.

Administration, Oral↗

Lamotrigine (BW430C), a potential anticonvulsant. Effects on the central nervous system in comparison with phenytoin and diazepam.

Twelve healthy male volunteers received phenytoin 0.5 and 1 g, lamotrigine (a new anticonvulsant) 120 and 240 mg, diazepam 10 mg and placebo orally in a double-blind, cross-over, randomized trial. Maximum drug concentrations at 4 h, measured in plasma were 11.5 +/- 2.2 micrograms ml-1 for phenytoin and 2.7 +/- 0.4 micrograms ml-1 for lamotrigine. These levels were in the therapeutic range for phenytoin and the putative therapeutic range for lamotrigine. Side effects after diazepam (mainly sedation) and phenytoin (mainly unsteadiness) differed markedly from lamotrigine which produced no important side effects. Subjective effects as measured by visual analogue scales were caused by phenytoin and diazepam but not by lamotrigine. Diazepam impaired eye movements, adaptive tracking and body sway. Phenytoin impaired adaptive tracking, increased body sway and impaired smooth pursuit eye movement. Lamotrigine produced only a possible slight increase in body sway. There were significant correlations between performance and saliva levels of phenytoin and diazepam. It was concluded that the tests used were suitable for monitoring CNS effects of anticonvulsants and that lamotrigine possibly could have a more favourable CNS side effect profile than phenytoin.

Adult↗