Search PubMed⌕ Search

Biomedical subjects

E Ben-Menachem

Publications and source records attributed to E Ben-Menachem.

53 records · Page 3Linked to original sources

Use of immunoreactive synthetic HTLV-1 peptides in the search for antibody reactivity in multiple sclerosis.

The possible association between multiple sclerosis (MS) and antibodies to human T-cell lymphotropic virus type 1 (HTLV-1) was studied. Five synthetic and highly immunoreactive HTLV-1 peptides, four from the envelope (env) region and one from the core (gag) region, were used in an indirect enzyme-linked immunosorbent assay (ELISA). Presence of HTLV-1-specific antibodies in paired serum and cerebrospinal fluid (CSF) samples from 41 MS patients were investigated. No antibody reactivity was demonstrable in samples from 40 of them, whereas one reacted in one serum sample against the gag-peptide. Serum and CSF specimens from 15 with other neurologic diseases (OND), and negative control specimens, i.e. serum and CSF from 9 non-neurologic controls and CSF from 9 healthy controls, did not demonstrate any reactivity in the peptide-ELISAs. Our results do not support involvement of HTLV-1 infection in the etiology of MS.

Adolescent↗

Multicenter long-term safety and efficacy study of vigabatrin for refractory complex partial seizures: an update.

We followed 66 patients with refractory complex partial seizures and a favorable initial response to vigabatrin for 5 to 72 (median, 43) months. Thirty-seven patients discontinued vigabatrin for the following reasons: benefit-to-risk evaluation, 8; seizure breakthrough, 6; adverse events, 6; seizure breakthrough and adverse events, 5; moved or lost, 4; no longer eligible for study, 2; non-drug-related death, 2; narcotic abuse, 1; and patient request, three. There were no clinically significant abnormalities in laboratory studies including SMA 12, complete blood count, ECG, EEG, and visual evoked response testing, and no toxicity other than reversible, dose-dependent side effects. Based on this and other long-term data, clinical trials of vigabatrin have resumed in the United States and Canada.

Aminocaproates↗

Effect of long-term vigabatrin therapy on selected neurotransmitter concentrations in cerebrospinal fluid.

Ten patients, suffering from drug-resistant complex partial seizures were treated for a period of up to 3 years with vigabatrin (Sabril). Vigabatrin is a novel antiepileptic agent, whose action is based on the inhibition of gamma-aminobutyric acid (GABA) aminotransferase, the enzyme responsible for the catabolism of the neurotransmitter GABA. Samples of lumbar cerebrospinal fluid were obtained from the patients prior to commencing vigabatrin therapy, and thereafter at 6 months, 1 year, 2 years, and up to 3 years following the initiation of vigabatrin treatment. The influence of vigabatrin on the cerebrospinal fluid concentrations of free and total GABA, homocarnosine, homovanillic acid, 5-hydroxyindoleacetic acid, and 3-methoxy-4-hydroxyphenylethylene glycol, as well as of the drug itself, was assessed. All patients demonstrated a clinical response to vigabatrin, and the drug was well tolerated over the entire observation period. Mean (+/- SD) reduction of seizure frequency was 65% +/- 23% (range, 26% to 100%) when comparing the end of the treatment period to the previgabatrin baseline. The cerebrospinal fluid concentrations of both free and total GABA and of the dipeptide homocarnosine showed approximately 2- to 5-fold increases over baseline values, with free GABA and homocarnosine being the more sensitive variables. Cerebrospinal fluid concentrations of homovanillic acid, 5-hydroxyindoleacetic acid, and 3-methoxy-4-hydroxyphenylethylene glycol were not altered in a significant manner over the observation period. These findings support the concept that the effects of vigabatrin are restricted to an effect on GABA catabolism and do not extend to the neurotransmitters dopamine and norepinephrine. Clinical efficacy and elevation of GABA and homocarnosine concentration were sustained over the period of observation.

Adult↗

Long-term evaluation of once daily vigabatrin in drug-resistant partial epilepsy.

The purpose of this study was to evaluate on an open basis the long-term efficacy and safety of vigabatrin in drug-resistant partial epilepsy as add-on therapy, administered on a once daily basis. Thirty-five patients entered the study. Twenty patients (57%) responded to therapy and are still on drug. This efficacy is in agreement with that seen in double-blind controlled studies on twice daily dose schedules. There did not appear to be any loss of efficacy with continued treatment at this dose regimen in patients responding favourably to the drug. The once daily dosing schedule was well tolerated and side effects were usually mild and always reversible. Vigabatrin seems to be a valuable therapeutic addition for patients with partial seizures resistant to standard anti-epileptic drugs.

Adolescent↗

Differences in side effects between a conventional carbamazepine preparation and a slow-release preparation of carbamazepine.

The aim of this double-blind cross-over study was to investigate whether side effects of carbamazepine (CBZ) could be reduced by using a slow-release CBZ preparation. Twenty-one adult patients with epilepsy who had side effects related to the use of CBZ took part in the trial. Patients were randomized to receive either a conventional (C) or slow-release (SR) CBZ preparation for 3 months and were then switched over to the other preparation for another 3 months. The daily dose and dosing frequency of CBZ were kept the same as before the study. The quality and severity of side effects were assessed monthly using a scored questionnaire containing questions about systemic toxicity (STRS) and neurotoxicity (NTRS). Twenty patients could be evaluated. The mean total values of NTRS of 3 monthly visits on each drug were significantly less during SR than during C treatment (P less than 0.05). All the items of NTRS scored lower during SR therapy, and the difference was significant for the occurrence of headache, dizziness and disturbances of vision, speech and coordination. The total score of STRS was also lower during SR, but the difference was not significant. Eleven patients preferred SR, 3 preferred C and 6 patients estimated the periods to be equal. In conclusion, a slow-release preparation of CBZ can render fewer side effects than conventional CBZ preparations.

Adult↗

Changes in CSF and brain soluble proteins following vigabatrin treatment in rats.

1. Following the discovery of vacuoles in the white matter of the brain of small animals treated with vigabatrin (GVG) it was decided to investigate possible reasons for the occurrence of these vacuoles and to explore the possibility of finding CSF markers which could be applicable for monitoring toxicity in humans. 2. An animal model was developed to study the changes of protein synthesis and to assay soluble brain proteins by isoelectric focusing and two-dimensional electrophoretic techniques. 3. Five groups of rats were treated either with 300 mg kg-1 day-1 GVG, 50 mg kg-1 GVG every other day, 300 mg kg-1 day-1 sodium valproate, 100 mg kg-1 day-1 sodium valproate or sham treated. 4. All animals were given the drug in a liquid full nutrient diet. The dietary intake of the different groups was adjusted to the group which showed the smallest dietary intake, to compensate for possible differences between groups due to nutritional factors. 5. The rats on 300 mg kg-1 day-1 GVG had a 30% reduction of body weight and a 6% reduction of their brain weight, compared with the lower GVG dose group, the two valproate groups and the sham treated group. 6. The synthesis of soluble proteins in the cerebral cortex, hippocampus and cerebellum was decreased in rats given GVG at 300 mg kg-1 day-1 and was increased in rats given valproate at 300 mg kg-1 day-1.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminocaproates↗

The effect of different vigabatrin treatment regimens on CSF biochemistry and seizure control in epileptic patients.

1. Vigabatrin, 50 mg kg-1, was administered orally as add-on therapy to 11 patients with drug-resistant complex partial epilepsy as a single dose, then once every third day for 2 months, every other day for 2 months and daily for 1 month. 2. Lumbar punctures were carried out prior to treatment and at the end of each dosage regimen and cerebrospinal fluid (CSF) evaluated for concentrations of free and total GABA, homocarnosine (GABA-histidine dipeptide), homovanillic acid (HVA), 5-hydroxyindole acetic acid (5-HIAA) and vigabatrin. 3. Each regimen resulted in significant increases in CSF concentrations of free and total GABA and homocarnosine compared with the immediately preceding regimen. 4. CSF concentrations of HVA significantly increased after a single vigabatrin dose but returned to pre-treatment levels with subsequent dosing schedules. In contrast, 5-HIAA concentrations also increased with the single dose but were significantly decreased, compared with pre-treatment values, following alternate day and daily vigabatrin administration. 5. Seizure frequency progressively decreased with decreasing dosing interval. Daily vigabatrin administration was associated with greater than 50% decrease in seizures in 8 of the 10 patients treated.

Adult↗

A multicentre study of vigabatrin for drug-resistant epilepsy.

1. Vigabatrin (GVG) was given in a single-blind fashion to 89 patients with complex partial seizures (CPS) refractory to conventional drugs. 2. The median number of CPS per month decreased from 11.0 to 5.0 after addition of GVG, and 51% of patients had a 50% or greater decrease in CPS frequency (P less than 0.001). 3. Side effects (principally drowsiness, ataxia, headache) occurred mainly during the initiation of therapy and decreased during therapy. After 12 weeks on GVG side effects significantly interfered with functioning in only 13% of patients, and the efficacy: toxicity ratio warranted continued administration in 74% of patients. 4. Co-administration of GVG resulted in a mean decrease of 20% in phenytoin serum concentration (P less than 0.001). 5. Sixty-six patients having a favourable response to GVG during the single-blind study have been followed for 6-54 (median 33) months on GVG. Only 17 patients have dropped out of long-term follow-up due to break through seizures and/or side effects. No serious systemic or neurological toxicity has been detected.

Adult↗

Pharmacokinetic effects of vigabatrin on cerebrospinal fluid amino acids in humans.

A study was conducted to assess the impact of single dosing and different dosing intervals of vigabatrin [gamma vinyl GABA (GVG)] in 11 patients with drug-resistant complex partial seizures. Cerebrospinal fluid (CSF) concentrations of total GABA, free GABA, homocarnosine, homovanillic acid (HVA), GVG, and 5-hydroxyindolacetic acid were measured up to seven days after a single dose. GVG levels were maximal within 24 h, suggesting that GVG acts to inhibit GABA-transaminase, and may also increase biogenic amines.

Adult↗

Vigabatrin for refractory complex partial seizures: multicenter single-blind study with long-term follow-up.

The irreversible GABA transaminase inhibitor vigabatrin (VGB) was given in a single-blind fashion to 89 patients with complex partial seizures (CPS) refractory to conventional drugs. The median number of CPS per month decreased from 11.0 to 5.0 after addition of VGB, and 51% of patients had a 50% or greater decrease in CPS frequency (p less than 0.001). Side effects (principally drowsiness, ataxia, and headache) occurred mainly during the initiation of therapy and decreased during therapy. After 12 weeks on VGB, side effects significantly interfered with functioning in only 13% of patients, and the efficacy:toxicity ratio warranted continued administration in 74% of patients. Coadministration of VGB resulted in a mean decrease of 20% in phenytoin serum concentration (p less than 0.001). Sixty-six patients with a favorable response to VGB during the single-blind study have been followed for a median of 16.7 months on VGB. No serious systemic or neurologic toxicity has been detected, and most patients have retained their initial favorable CPS control.

Aminocaproates↗

Vasoactive intestinal polypeptide (VIP) in cerebrospinal fluid from men after long-term exposure to organic solvents.

Vasoactive intestinal polypeptide (VIP) is widely distributed within the central nervous system (CNS) and is thought to function as a neurotransmitter. VIP was measured in CSF from 14 men with psycho-organic syndrome occupationally exposed to organic solvents for 7-38 years and in CSF from 8 neurologically healthy male volunteers. The concentration of VIP in the exposed group, 28 +/- 15 (SD) pmol/l, did not significantly differ from that of controls, 38 +/- 14 pmol/l. Thus, determination of VIP in CSF appears to be of little value for detecting effects of long-term solvent exposure.

Humans↗

Increased vulnerability of the blood-brain barrier to acute hypertension following depletion of brain noradrenaline.

Noradrenergic nerve terminals emanating from the pontine nucleus locus coeruleus (LC) have been suggested to take part in the regulation of intracerebral microvascular tone and, hence, blood flow. Since the extent of the blood-brain barrier opening caused by an acute hypertensive reaction previously has been shown to be highly dependent on the pre-existing cerebrovascular tone, we have explored whether selective depletion of brain noradrenaline (NA) would modify the albumin leakage caused by a hypertensive insult in the rat. Brain NA was largely and relatively selectively depleted, particularly in area innervated by the LC, by pretreatment with an injection of 6-hydroxydopamine (6-OHDA, 200 microgram) into the right lateral ventricle 7 days before the induction of an acute hypertensive reaction by intravenously administered angiotensin or adrenaline in conscious, unrestrained rats with indwelling catheters in the aorta and a jugular vein. 6-OHDA pretreatment significantly increased the leakage of 125 I-labelled albumin into the cortex after angiotensin-induced hypertension. A slight non-significant enhancement of protein in extravasation was observed after adrenaline administration. The latter substance caused, however, by itself a larger protein leakage probably related to betareceptor mediated vasodilatation. Whereas the increased permeability induced by adrenaline normally is reduced during the night, the albumin leakage was significantly increased in cortical regions in 6-OHDA treated rats in nocturnal experiments. The enhance protein leakage was not seen in rats treated with desmethylimipramine to prevent the uptake of 6-OHDA into the NA neurons.

Acute Disease↗

Efficacy of nafimidone in the treatment of intractable partial seizures: report of a two-center pilot study.

Nafimidone is a potential new antiepileptic drug with a therapeutic profile in experimental animal seizure models similar to that of phenytoin (PHT). We report here the first clinical trial of nafimidone in epileptic patients. Twelve adult male patients with a mean of four or more medically intractable seizures per month were enrolled in a 14-week pilot study. Patients were stabilized on therapeutic levels of PHT and carbamazepine (CBZ) (nine patients) or on PHT alone (three patients) before entering a 4-week baseline period. Nafimidone, to a maximum dose of 600 mg/day, was added during 2 weeks in hospital. Patients were then evaluated weekly for 8 weeks. Eight patients experienced 33-98% improvement in seizure control. Three others did not show significant change in seizure frequency but experienced sufficient subjective improvement that they continued into long-term follow-up. One patient, who had a 63% improvement in mean weekly seizures during the pilot study, declined to continue. Thus, 10 patients entered long-term follow-up. Six of the 10 sustained 53 to greater than 99% improvement in seizure control compared with baseline over the course of 46-53 weeks of follow-up. Nafimidone had a marked inhibitory effect on the clearance of CBZ and PHT, resulting in higher plasma levels in nine patients. The possible role of the elevated CBZ levels in the apparent efficacy of nafimidone is discussed.

Adult↗

Inhibition of carbamazepine and phenytoin metabolism by nafimidone, a new antiepileptic drug.

When nafimidone (NFM), a new antiepileptic drug, was given to six patients already taking carbamazepine (CBZ) and phenytoin (PHT) as part of a late phase I pilot efficacy trial, it reduced CBZ elimination by 76-87% and reduced PHT elimination by 38-77%. CBZ and PHT levels rose within 24 h after NFM was started, and began to decline within 12 h after NFM was stopped. The inhibitory effect on CBZ metabolism persisted throughout the course of 1 year of long-term follow-up in all five patients who continued with the drug after completion of the pilot study. Inhibition of PHT elimination persisted in three of the patients, but PHT elimination returned to baseline rates in the other two patients during long-term follow-up. The inhibition of CBZ and PHT metabolism is probably due to binding of cytochrome P-450 by NFM or a metabolite and thus inhibition of the hepatic microsomal mixed-function oxidase system.

Adult↗

Effect of gamma-vinyl GABA on interictal spikes and sharp waves in patients with intractable complex partial seizures.

The effect of gamma-vinyl GABA (GVG) on the interictal electroencephalogram (EEG) was studied in 13 patients with intractable complex partial seizures who participated in a single-blind, add-on, multicenter clinical trial of GVG. Precise operational definitions of epileptiform paroxysms were used to evaluate records before and after 3 months and 1 year of treatment with GVG. After 3 months of treatment, six patients exhibited reduction of both epileptiform paroxysms and seizure frequency, four had no change in seizure frequency nor in the EEG, and three had a reduction in seizure frequency but no concomitant reduction of epileptiform paroxysms in the EEG. Ten patients remained in the study after 1 year of treatment. In 4 patients both seizure frequency and EEG epileptiform paroxysms continued to decrease, in 1 patient both seizure frequency and number of EEG paroxysms increased, and in the remaining 3 there was no correlation between seizure frequency and EEG changes.

Adolescent↗

Vagus nerve stimulation for treatment of partial seizures: 1. A controlled study of effect on seizures. First International Vagus Nerve Stimulation Study Group.

Vagus nerve stimulation (VNS) was shown to reduce seizure frequency in refractory epilepsy patients in two pilot studies. Based on these results, a multicenter, prospectively randomized, parallel, double-blind study of patients with refractory partial seizures was initiated. After a 12-week baseline period, identical vagus nerve stimulators were implanted and patients randomized to either a high or low 14-week VNS treatment paradigm. The primary objective was to demonstrate that high VNS (therapeutic parameters) was more effective in reducing partial seizure frequency than was low VNS (less or noneffective parameters). Patients continued receiving antiepileptic drugs (AEDs) with plasma concentrations held constant throughout the study. We report results of the first 67 patients to exit the 14-week acute phase. After 14 weeks of VNS, 31 patients receiving high VNS experienced a mean seizure frequency percentage reduction of 30.9%, which was statistically significant as compared with the mean seizure frequency percentage reduction of 11.3% in 36 patients receiving low VNS (p = 0.029, t test; p = 0.036, Wilcoxon rank-sum test). In addition to the significant intragroup p-values, mean seizure frequency percentage change reached statistical significance for high VNS (p < 0.001) but not low VNS (p = 0.072) as compared with baseline. Twelve of 31 (38.7%) patients receiving high VNS achieved at least 50% reduction in seizure frequency whereas 7 of 36 (19.4%) patients receiving low VNS experienced at least 50% reduction after 14 weeks. The implant procedure and VNS therapy were well tolerated. Our study confirmed the effectiveness of VNS as treatment for epilepsy patients with refractory partial seizures.

Adolescent↗