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Biomedical subjects

A Richens

Publications and source records attributed to A Richens.

At least 37 records · Page 2Linked to original sources

Genetic mapping of a major susceptibility locus for juvenile myoclonic epilepsy on chromosome 15q.

The epilepsies are a group of disorders characterised by recurrent seizures caused by episodes of abnormal neuronal hyperexcitability involving the brain. Up to 60 million people are affected worldwide and genetic factors may contribute to the aetiology in up to 40% of patients. The most common human genetic epilepsies display a complex pattern of inheritance. These are categorised as idiopathic in the absence of detectable structural or metabolic abnormalities. Juvenile myoclonic epilepsy (JME) is a distinctive and common variety of familial idiopathic generalised epilepsy (IGE) with a prevalence of 0.5-1.0 per 1000 and a ratio of sibling risk to population prevalence (lambda(s)) of 42. The molecular genetic basis of these familial idiopathic epilepsies is entirely unknown, but a mutation in the gene CHRNA4, encoding the alpha4 subunit of the neuronal nicotinic acetylcholine receptor (nAChR), was recently identified in a rare Mendelian variety of idiopathic epilepsy. Chromosomal regions harbouring genes for nAChR subunits were therefore tested for linkage to the JME trait in 34 pedigrees. Significant evidence for linkage with heterogeneity was found to polymorphic loci encompassing the region in which the gene encoding the alpha7 subunit of nAChR (CHRNA7) maps on chromosome 15q14 (HLOD = 4.4 at alpha = 0.65; Z(all) = 2.94, P = 0.0005). This major locus contributes to genetic susceptibility to JME in a majority of the families studied.

Chromosome Mapping↗

Effects of felbamate on veratridine- and K(+)-stimulated release of glutamate from mouse cortex.

Felbamate is a novel anticonvulsant which may modulate the strychnine-insensitive glycine site of the N-methyl-D-aspartate (NMDA) receptor complex. This study examined the effect of felbamate and 5,7-dichlorokynurenic acid on veratridine (20 microM)- and K+ (60 mM)-stimulated release of amino acids in mouse cortical slices. Felbamate significantly decreased veratridine-induced release of glutamate at 400 microM and 800 microM but had no effect on K(+)-stimulated release. 5,7-Dichlorokynurenic acid had no effect on amino-acid release in concentrations up to 200 microM. The inhibitory effect of felbamate on veratridine-induced release of glutamate may be due to inactivation of voltage-sensitive Na+ channels.

Animals↗

Effect of age and gender on pharmacokinetics of atorvastatin in humans.

Atorvastatin is a new 3-hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA) reductase inhibitor that reduces plasma cholesterol by inhibiting cholesterol synthesis and increasing cellular uptake of low density lipoproteins. The effects of age and gender on the pharmacokinetics of atorvastatin after administration of single 20-mg tablets of atorvastatin were studied in 16 young and 16 elderly volunteers (8 men and 8 women in each age group). Plasma equivalent concentrations of atorvastatin were quantitated by a validated enzyme inhibition bioassay. Atorvastatin was well tolerated by the participants. The equivalent maximum concentration (Cmax) of atorvastatin was 42.5% higher in elderly participants (age, 66-92 years) than in young participants (age, 19-35 years) and 17.6% higher in women than in men. In addition, mean area under the concentration-time curve (AUC0-infinity) and half-life (t1/2) were 27.3% greater and 36.2% longer, respectively, in elderly adults than in young adults and 11.3% lower and 19.9% shorter, respectively, in women than in men. Because the primary site of action for HMG-CoA reductase inhibitors is the liver and atorvastatin is subject to extensive first-pass hepatic metabolism, it is unclear whether these age- and gender-related differences in the pharmacokinetics of atorvastatin will be clinically important. Results of subsequent safety and efficacy trials should help clarify the clinical significance of these pharmacokinetic differences.

Adult↗

Mutual interaction between remacemide hydrochloride and carbamazepine: two drugs with active metabolites.

PURPOSE: We wished to determine mutual interaction of two drugs with active metabolism: remacemide, hydrochloride and carbamazepine (CBZ). METHODS: A randomized, double-blind, placebo-controlled cross-over study of add-on remacemide hydrochloride was performed in 10 of 14 recruited patients being treated with CBZ monotherapy. Forty-eight-hour concentration profiles of CBZ, its active epoxide metabolite (CBZ-E), remacemide, and its desglycinyl metabolite (ARL12495XX) were assayed after single and multiple dosing. RESULTS: After patients were treated with 300 mg remacemide hydrochloride twice daily for 14 days, the mean area under the concentration-time curve (AUC) of CBZ was increased by 22% (p = 0.12), Cmax was increased by 27% (p = 0.07), and Cmin was increased by 22% (p = 0.29). Trough concentrations of CBZ were higher (p = 0.0037) during active treatment as compared with placebo treatment. CBZ-E levels were unaffected. No symptoms of CBZ toxicity were reported. There was no evidence of autoinduction of remacemide metabolism. However, in CBZ-treated patients, the AUC of remacemide and its active metabolite was 60 and 30%, respectively, of values observed in healthy volunteers treated previously with the same dose. CONCLUSIONS: Remacemide hydrochloride inhibits CBZ metabolism, which itself induces that of remacemide hydrochloride and its active metabolite. This mutual interaction between remacemide hydrochloride and CBZ is predictable and modest and should not present a barrier to their clinical use in combination.

Acetamides↗

Linkage analysis of juvenile myoclonic epilepsy and microsatellite loci spanning 61 cM of human chromosome 6p in 19 nuclear pedigrees provides no evidence for a susceptibility locus in this region.

Linkage analysis in separately ascertained families of probands with juvenile myoclonic epilepsy (JME) has previously provided evidence both for and against the existence of a locus (designated "EJM1"), on chromosome 6p, predisposing to a trait defined as either clinical JME, its associated electroencephalographic abnormality, or idiopathic generalized epilepsy. Linkage analysis was performed in 19 families in which a proband and at least one first- or two second-degree relatives have clinical JME. Family members were typed for seven highly polymorphic microsatellite markers on chromosome 6p: D6S260, D6S276, D6S291, D6S271, D6S465, D6S257, and D6S254. Pairwise and multipoint linkage analysis was carried out under the assumptions of autosomal dominant inheritance at 70% and 50% penetrance and autosomal recessive inheritance at 70% and 50% penetrance. No significant evidence in favor of linkage to the clinical trait of JME was obtained for any locus. The region formally excluded (LOD score < -2) by using multipoint analysis varies depending on the assumptions made concerning inheritance parameters and the proportion of linked families, alpha-that is, the degree of locus heterogeneity. Further analysis either classifying all unaffected individuals as unknown or excluding a subset of four families in which pyknoleptic absence seizures were present in one or more individuals did not alter these conclusions.

Adolescent↗

Double-blind comparison of lamotrigine and carbamazepine in newly diagnosed epilepsy. UK Lamotrigine/Carbamazepine Monotherapy Trial Group.

Lamotrigine has been licensed widely as adjunctive therapy for partial and secondary generalised seizures. Use of the drug as monotherapy was investigated in a double-blind, randomised, parallel-group comparison with carbamazepine in newly diagnosed epilepsy. After 4 weeks of planned, fixed dose escalation, doses were adjusted according to efficacy, adverse events, and plasma concentrations. 151 of 260 patients (131 lamotrigine, 129 carbamazepine) in eight UK centres completed the 48-week trial. No differences in efficacy between the drugs were found for partial seizures with or without secondary generalisation or for primary generalised tonic-clonic seizures. The proportion of patients maintained seizure-free during the last 24 weeks of treatment was almost the same in both groups (39% lamotrigine, 38% carbamazepine). More patients with primary generalised tonic-clonic seizures (47% both groups) than those presenting with a focal onset (35%, 37%) were fully controlled. Overall, fewer patients on lamotrigine than on carbamazepine withdrew because of adverse events (15 vs 27%). The commonest side-effect leading to withdrawal with either drug was rash (9%, 13%). Sleepiness was less common in lamotrigine than in carbamazepine recipients (12 vs 22%, p < 0.05). More lamotrigine than carbamazepine recipients (65 vs 51%, p = 0.018) completed the study (hazard ratio 1.57 [95% CI 1.07-2.31]). Lamotrigine and carbamazepine showed similar efficacy against partial onset seizures and primary generalised tonic-clonic seizures in newly diagnosed epilepsy. Lamotrigine, however, was better tolerated.

Adolescent↗

Adjunctive treatment of partial seizures with tiagabine: a placebo-controlled trial.

Tiagabine is a new antiepileptic drug which acts by a novel mechanism, inhibiting the reuptake of the inhibitory neurotransmitter gamma-aminobutyric acid (GABA) into neurons and glia. A double-blind, placebo-controlled, crossover trial was undertaken, based upon a response-dependent design. Ninety-four patients with complex partial seizures with or without secondary generalised tonic-clonic seizures were recruited into an open screening phase and tiagabine was added to their existing drug therapy in doses titrated to reduce seizure frequency by > or = 25% or to the limit of tolerance. Forty-six responders were subsequently randomised to a double-blind crossover trial in which tiagabine was compared with placebo. Forty-two patients completed the trial. A significant reduction in the frequency of complex partial and secondary generalised tonic clonic seizures was seen. Twenty-six percent had a reduction of > or = 50% in the frequency of their complex partial seizures, and of the 27 patients who also had secondary generalised tonic clonic seizures, 63% experienced a reduction of > or = 50%. No interactions with baseline antiepileptic drugs were detected and no serious adverse reactions occurred. The commonest adverse events were tiredness, dizziness and headache. We conclude that tiagabine has promising antiepileptic effects. Further trials are underway.

Adolescent↗

Psychiatric morbidity and psychodynamics of patients with convulsive pseudoseizures.

Forty-six female patients with pseudoseizures were compared with 50 female patients referred to a psychiatric outpatient clinic. Patients with convulsive pseudoseizures were more likely to be single and childless. An abnormal EEG was more frequently reported in patients with convulsive pseudoseizures, contributing to their earlier diagnosis of epilepsy. The defence mechanisms of patients with convulsive pseudoseizures using the Defense Mechanisms Inventory (DMI) were particularly characterized by higher scores on the 'reversal' scale and lower scores on the 'turning against self' scale. Mood disorders were more common in general psychiatric patients, while one-third of convulsive pseudoseizure patients did not complain of psychiatric symptoms.

Comorbidity↗

Rational polypharmacy.

The development of assays for plasma antiepileptic drug concentrations has led to the discovery of many pharmacokinetic interactions, some causing drug intoxication and others resulting in ineffective drug concentrations. In the 1970s, a number of epileptologists began to argue that single drug therapy was desirable in the treatment of epilepsy and this has become the accepted policy when initiating therapy. About 75% of patients treated in this way will achieve remission with a minimum of adverse drug reactions. The remainder, however, continue to have unacceptable seizures and usually receive combinations of drugs. Evidence indicates that the response rate on adding a second drug is low, although in some studies of new drugs such as vigabatrin up to one-half of patients receiving add-on therapy experience a 50% or greater reduction in seizure frequency, and 10-15% are seizure-free in the short term. Unfortunately, randomized placebo-controlled studies have not been undertaken to compare the relative merits of monotherapy and combination therapy with respect of seizure control and adverse effects. It is argued that the time has come to do so, particularly in view of the known mode of action of some of the new drugs. Perhaps blocking excitation with one drug at the same time as enhancing inhibition with another may be better than doing only one or the other.

Anticonvulsants↗

The effect of the desglycinyl metabolite of remacemide hydrochloride (FPL 12495AA) and dizocilpine (MK-801) on endogenous amino acid release from mouse cortex.

1. In this study the effect of FPL 12495AA, the desglycinyl metabolite of remacemide hydrochloride and dizocilpine (MK-801), on potassium- and veratridine-stimulated release of neurotransmitter amino acids from mouse cortical slices was investigated. 2. Veratridine (20 microM) and potassium (60 mM) produced a preferential release of glutamate and aspartate. Potassium-stimulated release was calcium-dependent, while veratridine-stimulated release was only partially affected by removal of calcium from the medium. 3. FPL 12495AA significantly inhibited veratridine- and potassium-stimulated release of glutamate and aspartate. Lower concentrations of FPL 12495AA were needed to inhibit veratridine-stimulated release of glutamate (12.5 microM) than potassium-stimulated release (100 microM). 4. Dizocilpine significantly inhibited veratridine- and potassium-stimulated release of glutamate and aspartate at concentrations of 100 microM and above. 5. FPL 12495AA and dizocilpine both have an affinity for the ion channel subsite of the N-methyl-D-aspartate (NMDA) receptor. The reduction of potassium-stimulated release of glutamate and aspartate by FPL 12495AA and dizocilpine is probably due to NMDA receptor blockade. 6. FPL 12495AA inhibited veratridine-stimulated release at a concentration of 12.5 microM while dizocilpine was effective only at a concentration of 100 microM. This difference in efficacy is probably due to the higher affinity of FPL 12495AA compared to dizocilpine at the veratridine-binding site on the sodium channel.

Acetamides↗

Pharmacokinetic and pharmacodynamic drug interactions during treatment with vigabatrin.

Pharmacokinetic drug interactions take place when one drug interacts with another at the level of metabolism, absorption or excretion. Pharmacodynamic interactions take place at the level of receptor sites, where they may have additive or potentiating effects. Vigabatrin is relatively free of pharmacokinetic interactions, and though it is associated with about a 20% decrease in serum levels of concomitantly administered phenytoin, the reduction is of little clinical significance. The mechanism underlying this effect is unknown. Because vigabatrin increases GABA-mediated inhibition in the brain (an action that is believed to account for its anticonvulsant effects), it might be expected to potentiate the CNS effects of benzodiazepines and alcohol. However, very sensitive eye movement studies have failed to detect any evidence of such an interaction. Overall, vigabatrin appears to be remarkably free of drug interactions. As a result, it is easier to use in clinical practice than older anti-epilepsy agents. Perhaps the most important finding of the interaction studies with vigabatrin is that there is no need for patients receiving the drug to be told to avoid alcohol.

Anticonvulsants↗

Vigabatrin-induced psychosis--management problems.

A 22-year-old patient with partial seizures developed schizophreniform psychosis following the introduction of vigabatrin. She stopped her anticonvulsant medication as a consequence of her persecutory delusions. She subsequently suffered status epilepticus with severe brain damage. It is essential to outline a management plan for patients to detect and treat vigabatrin-induced psychosis.

Adult↗

Safety of lamotrigine.

Clinical trials of lamotrigine (LTG) began in 1984. By November 1992 about 5,800 patient-years' experience of adverse effects had been compiled. In general, LTG has an acceptable safety profile. Mild central nervous system adverse effects such as ataxia, dizziness, and headache occur significantly more frequently with LTG than with placebo but seldom demand discontinuation of LTG therapy. Dosage-related allergic skin rash occurs in about 5% of patients. The rash rarely is severe enough to require hospitalization. The adverse-reaction profile of LTG compares favorably with that of traditional antiepileptic drugs.

Adult↗

A multicentre comparative trial of sodium valproate and carbamazepine in adult onset epilepsy. Adult EPITEG Collaborative Group.

The long-term efficacy and safety of sodium valproate and carbamazepine in adult outpatients with newly diagnosed primary generalised or partial and secondarily generalised seizures were compared in a randomised, open, multicentre study at 22 neurology outpatient clinics. Patients were randomised to oral sodium valproate (Epilim EC enteric coated 200 mg tablets twice daily, n = 149) or oral carbamazepine (100 mg twice daily increasing to 200 mg twice daily in week 2, n = 151) and followed up for three years. If clinically necessary, dosages were regularly increased until seizures were controlled or toxicity developed. Sodium valproate and carbamazepine controlled both primary generalised and partial seizures equally effectively overall. Significantly more patients on sodium valproate than carbamazepine (126/140 (90%) v 105/141 (75%), p = 0.001) remained on randomised treatment for at least six months. Skin rashes occurred significantly more often in carbamazepine recipients than in sodium valproate recipients (11.2% v 1.7%, p < 0.05) and carbamazepine was associated with a higher withdrawal rate because of adverse events (15% v 5% on sodium valproate) in the first six months of treatment. There was no difference between the drugs in the rate of withdrawal because of poor seizure control at any stage, regardless of seizure type. At the end of the three year trial period, over 70% of the available patients were still on randomised treatment or had recently stopped treatment after achieving full seizure control. Sodium valproate and carbamazepine were both associated with a high degree of overall seizure control regardless of seizure type and both have good long-term tolerability in adult patients with newly diagnosed epilepsy. Recommendations are made for a higher initial dosage regime for sodium valproate in partial seizures.

Administration, Oral↗

A risk-benefit assessment of vigabatrin in the treatment of neurological disorders.

Vigabatrin was designed to increase the levels of the inhibitory neurotransmitter gamma-aminobutyric acid (GABA) in the brain. It does this by replacing GABA as a substrate for the action of the catabolic enzyme GABA-transaminase. As a result of this inhibition, neuronal GABA levels are elevated, resulting in enhanced endogenous GABA transmission. A number of clinical trials assessing the effect of vigabatrin in epilepsy have been completed. Vigabatrin is of proven benefit in partial seizures and secondarily generalised tonic clonic seizures, and it is licensed for use as adjunctive therapy in these conditions in several European countries. It has been shown to be effective in some epilepsy syndromes in children including West's syndrome, infantile spasms and cryptogenic partial seizures. Its effect on primary generalised tonic clonic seizures is variable, while there is considerable evidence that it has a deleterious effect on myoclonic and absence seizures. There have been a few reports of the benefits of vigabatrin in other neurological disorders including tardive dyskinesia, degenerative ataxias and GABA metabolism disorders. The adverse effects associated with vigabatrin are similar to those seen with other anticonvulsants, with a predominance of CNS effects including somnolence, fatigue, irritability, dizziness and headache. Psychiatric symptoms including depression and psychosis are seen in a small number of patients and cause the most problems. These often necessitate discontinuation of vigabatrin, which usually results in resolution of symptoms.

4-Aminobutyrate Transaminase↗