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Gating effects of mutations in the Cav3.2 T-type calcium channel associated with childhood absence epilepsy.

Childhood absence epilepsy (CAE) is a type of generalized epilepsy observed in 2-10% of epileptic children. In a recent study by Chen et al. (Chen, Y., Lu, J., Pan, H., Zhang, Y., Wu, H., Xu, K., Liu, X., Jiang, Y., Bao, X., Yao, Z., Ding, K., Lo, W. H., Qiang, B., Chan, P., Shen, Y., and Wu, X. (2003) Ann. Neurol. 54, 239-243) 12 missense mutations were identified in the CACNA1H (Ca(v)3.2) gene in 14 of 118 patients with CAE but not in 230 control individuals. We have functionally characterized five of these mutations (F161L, E282K, C456S, V831M, and D1463N) using rat Ca(v)3.2 and whole-cell patch clamp recordings in transfected HEK293 cells. Two of the mutations, F161L and E282K, mediated an approximately 10-mV hyperpolarizing shift in the half-activation potential. Mutation V831M caused a approximately 50% slowing of inactivation relative to control and shifted half-inactivation potential approximately 10 mV toward more depolarized potentials. Mean time to peak was significantly increased by mutation V831M but was unchanged for all others. No resolvable changes in the parameters of the IV relation or current kinetics were observed with the remaining mutations. The findings suggest that several of the Ca(v)3.2 mutants allow for greater calcium influx during physiological activation and in the case of F161L and E282K can result in channel openings at more hyperpolarized (close to resting) potentials. This may underlie the propensity for seizures in patients with CAE.

Animals↗

The ovarian hormones and absence epilepsy: a long-term EEG study and pharmacological effects in a genetic absence epilepsy model.

In the first experiment, the relationship between the phase of the estrous cycle and the number of spontaneously occurring spike-wave discharges was investigated in WAG/Rij rats, a model for generalized absence epilepsy. The electroencephalogram (EEG) was continuously recorded for 96 h in eight rats chronically equipped with cortical EEG electrodes. A circadian pattern emerged for the number of spike-wave discharges: a nadir during the first hours of the light period, and an acrophase during the first hours of the dark period. This daily maximum was increased at proestrus day compared with the other days of the cycle, when the plasma level of progesterone is enhanced specifically at these hours of this day. This suggests that progesterone enhances spike-wave discharges. There was no difference in the first few hours of the light period in the number of spike-wave discharges between proestrus and the three other days, suggesting that estradiol has no effect on spike-wave discharges. In the second study, the effects of the systemic administration of progesterone and 17 beta-estradiol on spike-wave discharges and spontaneous behavior were investigated. It was shown that progesterone (20 and 30 mg/kg) but not estradiol (0.17-1.5 mg/kg) increased the number and total duration of spike-wave discharges. On the other hand, injection of RU 38486 (10 and 30 mg/kg), an antagonist of intracellular progesterone receptors, had no effect on spike-wave discharges and did not block the stimulatory effect of progesterone. The antagonist of 17 beta-estradiol tamoxifen (1 and 3 mg/kg) did not evoke alterations in the number or duration of spike-wave discharges. Our results indicate that progesterone aggravates spike-wave discharges, but is not mediated through intracellular receptors. Since progesterone is rapidly metabolized in the brain to the positive modulator of GABA(A) receptor allopregnanolone, which increases spike-wave discharges in WAG/Rij rats, it is possible that the epileptiformic effects of progesterone are mediated through this metabolite.

Animals↗

Natural history of absence epilepsy in children.

Absence seizures may be seen in a variety of epileptic syndromes in childhood. Identification of the specific syndrome is important to determine medical prognosis. With childhood absence epilepsy, approximately two thirds of children can be expected to enter long-term remission, while in juvenile absence epilepsy, seizure control is often achieved, however, lifelong treatment is usually required. Other absence syndromes have a poorer prognosis, with lower rates of seizure control and remission. Psychosocial outcome is often poor, even in patients with more benign forms of absence epilepsy. Remission of epilepsy does not preclude psychosocial morbidity.

Anticonvulsants↗

[Analysis of haplotype-based haplotype relative risk and transmission disequilibrium test in childhood absence epilepsy].

OBJECTIVE: Childhood absence epilepsy (CAE), a common form of idiopathic generalized epilepsy, accounts for 8% - 15% of all childhood epilepsies. A positive family history of epilepsy, a hereditary factor being one of the pathogeneses, is found in 15% - 44% of children with absence seizures. The phenotype of CAE is specific (including seizure forms and EEG), therefore it is suitable for genetic study. The purpose of this study was to confirm the linkage of childhood absence epilepsy to chromosome 8q24 in China. METHODS: Twenty-nine trios families (a patient and his/her parents) as patient group and 10 normal trios families as control group were investigated for chromosome 8q24 by haplotype analysis with 5 microsatellite DNA markers (D8S554, D8S534, D8S1100, D8S1783, D8S1753). Genomic DNA was isolated from 4 ml human peripheral blood by using the conventional procedure, and then was treated using the PCR method. PCR products were analyzed by gene scan. Statistical methodology included haplotype-based haplotype relative risk (HHRR) and transmission disequilibrium test (TDT). RESULTS: In this study, the polymorphism information content (PIC) of 5 microsatellite DNA markers were: 0.519, 0.828, 0.528, 0.654 and 0.772. HHRR showed D8S554(4) (chi(2) = 5.939, P < 0.05), D8S1100(3) (chi(2) = 5.081, P < 0.05), D8S1783(6) (chi(2) = 4.308, P < 0.05). TDT showed D8S554(4) (chi(2) = 4.46, P < 0.05), D8S1783(6) (chi(2) = 4, P < 0.05). In order to exclude false association results, the authors analyzed every family in detail. Four trios families transmitted allele D8S1783(6) to their offspring, and the same allele hasn't been found in controls. The further work showed that locus D8S1783 had transmission disequilibrium with CAE, the other two loci were a false association. CONCLUSION: (1) Childhood absence epilepsy in the Chinese population may be linked to chromosome 8q24, the CAE gene is transmitted disequilibrium on locus D8S1783. Combined with other research results, we suppose that CAE gene may be in the ECA1 area on chromosome 8q24. (2) The CAE gene perhaps has a genetic heterogeneity in the population of different areas and different races. (3) HHRR and TDT seem to be the best statistical methods to do linkage disequilibrium study in the trios family.

Child↗

[T-type calcium channel gene-CACNA1H is a susceptibility gene to childhood absence epilepsy].

OBJECTIVE: Childhood absence epilepsy (CAE) is one of the most frequently recognized syndromes among the idiopathic generalized epilepsies (IGEs). It is considered to be a hereditary disease. The possible inheritance pattern of CAE is polygenic. The genes responsible for CAE, however, have not yet been identified. The aim of this study was to further investigate based on the authors' recent work whether or not T-type calcium channel gene-CACNA1H is a susceptibility gene to childhood absence epilepsy. METHODS: The authors conducted the mutation screening of the exons 6-12 and the nearby partial introns of the CACNA1H gene using the method of direct sequencing of PCR products in 48 newly found CAE patients. RESULTS: The authors found 13 single nucleotide polymorphisms (SNPs). They also found 4 mutations which only existed in CAE patients. Both G773D and H515Y mutations were heterozygous. The mutation of H515Y has never been reported previously. The patient inherited the mutation from his mother. The authors found two CAE patients with the mutation of G773D previously. This is the third time that the authors found one more CAE family with this G773D mutation, and the patient with the mutation G773D inherited the mutation from his father. CONCLUSION: T-type calcium channel gene-CACNA1H might be a susceptibility gene to childhood absence epilepsy.

Amino Acid Sequence↗

The absence epilepsies.

Four syndromes comprise the absence epilepsies. Each is classically associated with the absence seizure, although other syndromes also have absence attacks as part of their repertoire. The most common syndrome is childhood absence epilepsy; it usually occurs in the age range of 6-7 years. The absence seizures may occur many times daily, and the electroencephalographic (EEG) characteristics are the most typical of the absence epilepsies. The second form of absence epilepsies is juvenile absence epilepsy; it begins near puberty and may represent a continuum from the childhood form. Myoclonic seizures are more common than in the childhood form, and the spike-wave discharges in the EEG are often faster than that seen in childhood absence epilepsy. The third form of absence epilepsy is juvenile myoclonic epilepsy, characterized especially by myoclonic jerks in the morning; these attacks occasionally progress to generalized tonic-clonic seizures. The final form of absence epilepsy is epilepsy with myoclonic absences, a rare disorder with a specific form of absence seizures. The absence seizure itself is observed to a greater or lesser extent in all of these syndromes. This seizure is a curious event, and its causes are poorly explained by current knowledge of the fundamental mechanisms of the epilepsies. Although the etiology of the absence seizure at a biochemical level is unknown, some studies suggest that certain low-threshold calcium ion currents (T currents), which are partially controlled by GABA-B mechanisms, may activate burst firing of thalamic neurons, initiating an absence seizure. The evidence of a genetic predisposition for the absence epilepsies is overwhelming.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

[Idiopathic absence epilepsy].

UNLABELLED: The International Classification of Epilepsies and Epileptic Syndromes distinguishes four types of idiopathic generalized epilepsies with typical absences: childhood absence epilepsy (CAE), juvenile absence epilepsy (JAE), juvenile myoclonic epilepsy (JME) and epilepsy with generalized grand mal on awakening (EGMA). It is essential in any case when sizures occur to classify the type of epileptic syndrome in order to make prognosis and to choose correct treatment. But it is not always possible to establish diagnosis at the beginning of the disease. Often prolonged observation of the patient and evolution of clinical and EEG features lead to define the epileptic syndrome. The aim of the work was to define the type and frequency of epileptic syndromes and their long-term observation in patients with absences occurred as the first (or the only) type of seizures. SUBJECTS AND METHODS: 31 patients who experienced absences as the first (or the only) type of seizures were selected from the group of 600 subjects suffered from epilepsy admitted to the Neuropediatric Department of the National Research Institute of Mother and Child between 1987 and 1998. Epileptic Syndromes were classified according to the International Classification. RESULTS: There were 31 (5.2%) patients (18 girls and 13 boys) with absences accurred as the first (or the only) type of seizures. The age of the onset of seizures was between 2.5 to 13.5 years (mean 9.3). Seven of them had also tonic-clonic seizures in the course of the observation. They were followed-up for 3 to 9 years (mean 9.2) till the age of 7 to 25 years (mean 18.5). Two epileptic syndromes were established according to the International Classification:--childhood absence epilepsy (CAE) in 27 (4.5%) patients;--juvenile absence epilepsy (JAE) in 4 (0.7%) patients. No one patient showed evolution of disease towards neither juvenile myoclonic epilepsy nor epilepsy with generalized grand mal on awakening during follow-up. CONCLUSIONS: 5.2% of all subjects were patients with idiopathic epilepsies who experienced absences as a first (or the only) type of seizures when absences occur one should consider first of all childhood absence epilepsy and juvenile absence epilepsy. Recognition of juvenile myoclonic epilepsy and epilepsy with generalized grand mal on awakening is less probable.

Adolescent↗

Epidemiology of absence epilepsy. III. Clinical aspects.

Absence epilepsy was studied in a Swedish population, aged 0-15 years, in 1978-1982. Cases were selected by electroencephalographic criteria. In the 134 children with 3 Hz spike-and-wave discharges, 97 (72.4%) had absences alone or in combination with generalized tonic-clonic seizures (grand mal): 56 had absences alone, 31 absences followed by grand mal, and 10 started with initial grand mal. Two distinct groups could be discerned: 1) childhood absence epilepsy: onset before the age of 12, with a quick response to therapy, little or no risk of grand mal, and a high remission rate; 2) juvenile absence epilepsy: onset at the age of 12 or later, a very high risk of grand mal, and usually a good response to therapy, but a high risk of relapses at withdrawal. This classification of absence epilepsy into subgroups may be useful for prognostic guidelines.

Adolescent↗

Functional analysis of Ca3.2 T-type calcium channel mutations linked to childhood absence epilepsy.

PURPOSE: Childhood absence epilepsy (CAE) is an idiopathic form of seizure disorder that is believed to have a genetic basis. METHODS: We examined the biophysical consequences of seven mutations in the Ca(v)3.2 T-type calcium channel gene linked to CAE. RESULTS: Of the channel variants examined, one of the mutants, a replacement of glycine 848 in the domain II-S2 region with serine, resulted in significant slowing of the time courses of both activation and inactivation across a wide range of membrane potentials. These changes are consistent with increased channel activity in response to prolonged membrane depolarizations. CONCLUSIONS: Taken together, these findings suggest that such little changes in channel gating may contribute to the etiology of CAE.

Animals↗

Case-control study and transmission/disequilibrium tests of the genes encoding GABRA5 and GABRB3 in a Chinese population affected by childhood absence epilepsy.

BACKGROUND: Childhood absence epilepsy (CAE) is one of the most frequently recognized syndromes among the idiopathic generalized epilepsies (IGEs). CAE is considered to be a genetic disease, with a possible polygenic inheritance pattern. The genes responsible for CAE have not been identified yet. The object of this study was to investigate whether or not CAE is associated with the gene encoding the gamma-aminobutyric acid (GABA) type-A receptor subunits alpha5 (GABRA5) and beta3 (GABRB3) in a Chinese population. METHODS: Five microsatellite DNA repeats, 69CA, 85CA, 155CA1, 155CA2, and A55CA1, adjoining chromosome 15q11-q13, were used as genetic markers. Both case-control study and transmission/disequilibrium tests (TDTs), as well as fluorescence-based semi-automated genotyping techniques, were used in 90 CAE patient-mother-father trios and 100 normal controls of Han ethnicity to conduct association analysis. RESULTS: The frequencies of allele 5 of 69CA, alleles 2 and 8 of 85CA, alleles 6 and 7 of 155CA1, allele 2 of 155CA2, and alleles 1 and 11 of A55CA1 were significantly higher in CAE patients than in normal controls. To prevent spurious associations arising from population admixture, we further conducted TDT tests in the 90 CAE trios. The results of TDT analysis further suggested that microsatellite DNA repeats 85CA, 155CA1, and 155CA2 were associated with CAE. CONCLUSIONS: GABA type-A receptor subunit genes GABRA5 and GABRB3 may be either directly involved in the etiology of CAE in the Chinese population or in linkage disequilibrium with disease-predisposing sites.

Adolescent↗

Childhood absence epilepsy.

BACKGROUND: Childhood absence epilepsy (CAE) is a relatively rare form of idiopathic generalized epilepsy, occurring in previously normal children with a strong genetic predisposition. The annual incidence of CAE has been estimated at 6.3/100,000 to 8/100,000 children aged 0-15 years. METHODS: Medical and electroencephalographic records of 50 Chinese children with CAE were reviewed. RESULTS: There were 22 males and 28 females. The age of onset ranged from 3 to 12 years with a mean of 6.9 +/- 2.4 years. Six children (12%) had positive familial epileptic history and 11 patients (22%) had a past history of febrile convulsion. Electroencephalographically, there were posterior delta rhythm (6/50), frontocentral (1/50), and centrotemporal (1/50) spikes in addition to the characteristic 3 Hz spike and wave complex. All patients received regular or irregular treatment with valproate. Sixteen patients (32%) evolved to generalized tonic-clonic seizure (GTCS) with a mean of 2.1 +/- 1.6 years of lag from stopping valproate. The patients with GTCS had significant late onset of age, a longer active period, and longer treatment duration than those without GTCS (p < 0.01). There were significantly more patients with irregular treatment evolving to GTCS than those with regular treatment (p < 0.01). None of the patients with posterior delta rhythm evolved to GTCS. CONCLUSIONS: Regular treatment with valproate is the modality of choice in the management of CAE. Posterior delta rhythm seems to be a good prognostic factor electroencephalographically.

Child↗

Sensitivity of thalamic GABAergic currents to clonazepam does not differ between control and genetic absence epilepsy rats.

Mutations in GABA-A receptor subunits have been reported in a number of idiopathic generalized epilepsies including childhood absence epilepsy. One of these mutations is located within a high-affinity benzodiazepine-binding domain, and clonazepam is clinically used as an anti-absence drug. The intrathalamic loop consisting of the GABAergic neurons of the nucleus reticularis thalami (NRT) and the thalamocortical (TC) neurons of sensory thalamic nuclei plays an essential role in spike and wave discharges. In a well-established genetic model of absence epilepsy (Genetic Absence Epilepsy rat from Strasbourg, GAERS), systemic injections of benzodiazepines have been shown to suppress spike-and-waves discharges. The aim of this study, therefore, was to determine whether the sensitivity of GABAergic synaptic currents to clonazepam in NRT and TC neurons was different in GAERS and non-epileptic control (NEC) rats. In both pre-seizure GAERS and NEC clonazepam (100 nM) had no effect on the mIPSCs recorded from TC neurons while it increased the decay time constant of the mIPSCs recorded in NRT neurons by a similar amount in GAERS (54.5+/-5%) and NEC (50.7+/-5%). Similar results have been obtained in the presence of 100 microM Cd2+, showing that the effect of clonazepam did not occur via modulation of voltage-activated Ca2+ currents. These results are relevant to understand that in GAERS, the clonazepam anti-absence actions cannot be fully explained by the enhancement of the intra-NRT inhibition and the modulation of the GABAergic synaptic currents in other brain areas, in particular the cortex, must be taken into consideration.

2-Amino-5-phosphonovalerate↗

Epileptiform activity induced by 4-aminopyridine in entorhinal cortex hippocampal slices of rats with a genetically determined absence epilepsy (GAERS).

Patients with absence epilepsy frequently develop convulsions later in life. We were therefore interested whether tissue from rats with a genetic absence epilepsy is more prone to seizure generation than normal animals. We compared the epileptiform activities induced by 4-aminopyridine (4-AP) induced in hippocampal-entorhinal cortex slices from genetic absence epilepsy rats of Strasbourg (GAERS, age 6 months) in which absence seizures have been present for about 4 months and from control non epileptic rats (NE). 4-AP induced short recurrent discharges in area CA1 of rat hippocampus, seizure-like events and interictal discharges in the entorhinal cortex. The various epileptiform discharges did not differ between the two strains in amplitude, duration and frequency. However, the latency for induction of different epileptiform activities by 50 microM 4-AP was significantly shorter in GAERS (about 16 min) than in NE rats (about 25 min). We also analysed differences in evoked field potentials (fp) in hippocampal area CA1 before, during and after application of 4-AP. Before application of 4-AP, responses to stimulation of Schaffer collateral were smaller in GAERS than in NE rats. Paired pulse potentiation was significantly larger in GAERS than in NE rats. 4-AP in the bath augmented the size of the evoked field potentials and this increase was larger in GAERS than in NE rats. Our findings show a greater excitability of hippocampal area CA1 in GAERS rats and a greater ability to develop 4-AP-induced epileptiform activity in combined hippocampal-enthorhinal cortex slices in GAERS than in NE rats.

4-Aminopyridine↗

Idiopathic occipital and absence epilepsies appearing in the same children.

Our aim is to report the association between idiopathic occipital epilepsy and childhood absence epilepsy in the same children. Six children met the diagnostic criteria for both idiopathic occipital epilepsy and childhood absence epilepsy, five patients with idiopathic occipital epilepsy Gastaut type and another with Panayiotopoulos type. All patients were monitored for 2 to 10 years with repeated electroencephalograms when awake and during sleep. Age at onset of seizures ranged from 4.6 to 8 years. Five patients had focal sensory visual seizures, all with migraine-like episodes. One patient presented ictal vomiting followed by oculocephalic deviation. All patients presented typical absences, with onset at least 1 year after having had idiopathic occipital epilepsy Gastaut type in three patients. In the other two patients with idiopathic occipital epilepsy Gastaut type and the patient with idiopathic occipital epilepsy Panayiotopoulos type, both types of epilepsy appeared at the same time. The electroencephalograms documented occipital paroxysms in all cases, with positive reactivity to the eye closure in five patients. All children presented spike-wave discharges at 3 cycles per second activated by hyperventilation. More genetic information would be necessary to demonstrate either a close genetic relationship between these syndromes or common markers with variable phenotypes.

Child↗

Adaptive changes in the pharmacodynamics of midazolam in different experimental models of epilepsy: kindling, cortical stimulation and genetic absence epilepsy.

1. The objective of this investigation was to determine quantitatively whether experimental epilepsy is associated with a change in the pharmacodynamics of benzodiazepines in vivo. For that purpose the pharmacodynamics of midazolam were quantified by an integrated pharmacokinetic-pharmacodynamic approach in three different models of experimental epilepsy: amygdala kindling, cortical stimulation and genetic absence epilepsy. 2. The time course of the EEG effect was determined in conjunction with the decline of drug concentrations after intravenous administration of 10 mg kg(-1) midazolam. The pharmacokinetics of midazolam were most adequately described by a bi-exponential equation. No influence of epilepsy on the pharmacokinetics of midazolam was observed. 3. The increase in beta activity (11.5-30 Hz) of the EEG as derived by Fast Fourier Transformation analysis was used as pharmacodynamic endpoint. For each individual rat the increase in beta activity was directly related to the concentration in blood on the basis of the sigmoidal Emax pharmacodynamic model. In all three models a significant reduction in the maximal effect was observed, in amygdala kindling 28%, in the cortical stimulation model 49% and in genetic absence epilepsy 37%. No differences in the other pharmacodynamic parameters, E0 EC50,u and Hill factor, were observed. 4. It is inferred that in three different models of epilepsy there is a similar change in GABAergic functioning which is associated with a significant reduction in the intrinsic activity of midazolam in vivo. These models provide therefore a useful basis for further studies on the mechanism of epilepsy-induced changes in pharmacodynamics of anti-epileptic drugs.

Amygdala↗

Absence epilepsy of early childhood--genetic aspects.

Clinical and EEG family data of 140 cases with early childhood epilepsy with absences are presented. The aim of the study was to evaluate, whether the occurrence of generalized tonic clonic seizures (GTCS) as a presenting symptom might correlate with family data, i.e. whether there are indications of heterogeneity. One hundred and forty cases were selected from the epilepsy family data base of the Neuropaediatric Department. The selection parameter was epilepsy with absences manifesting between the 1st and 5th year of age. The incidence of seizures was evaluated in siblings, parents and parents' siblings. EEG records were available from 103 parents and 106 siblings. The analysis supports the assumption of heterogeneity within early childhood absence epilepsy. Parents and their sibs of cases manifesting with GTCS had seizures twice as often than parents and their sibs in the non-GTCS group. In the affected relatives of the GTCS group early onset GTCS prevailed, whereas in the relatives of the non-GTCS group absences were found more frequently. The EEG of relatives showed elevated incidences of spikes and waves and photosensitivity in both groups, indicating common genetic factors. In parents of the non-GTCS group, however, EEG pathology was significantly more frequent than in parents of the GTCS group. Comparing EEG pathology in parents with seizure risk in siblings, evidence for maternal preponderance in transmission of the seizure liability was found. Mothers' EEG seems to be the best predictor of the seizure risk in probands' siblings.(ABSTRACT TRUNCATED AT 250 WORDS)

Age of Onset↗

Dysfunction of the brain calcium channel CaV2.1 in absence epilepsy and episodic ataxia.

The molecular basis of idiopathic generalized epilepsy remains poorly understood. Absence epilepsy with 3 Hz spike-wave EEG is one of the most common human epilepsies, and is associated with significant morbidity. Several spontaneously occurring genetic mouse models of absence epilepsy are caused by dysfunction of the P/Q-type voltage-gated calcium channel CaV2.1. Such mice exhibit a primary generalized spike-wave EEG, with frequencies in the range of 5-7 Hz, often associated with ataxia, evidence of cerebellar degeneration and abnormal posturing. Previously, we identified a single case of severe primary generalized epilepsy with ataxia associated with CaV2.1 dysfunction, suggesting a possible link between this channel and human absence epilepsy. We now report a family in which absence epilepsy segregates in an autosomal dominant fashion through three generations. Five members exhibit a combination of absence epilepsy (with 3 Hz spike-wave) and cerebellar ataxia. In patients with the absence epilepsy/ataxia phenotype, genetic marker analysis was consistent with linkage to the CACNA1A gene on chromosome 19, which encodes the main pore-forming alpha1A subunit of CaV2.1 channels (CaV2.1alpha1). DNA sequence analysis identified a novel point mutation resulting in a radical amino acid substitution (E147K) in CaV2.1alpha1, which segregated with the epilepsy/ataxia phenotype. Functional expression studies using human CACNA1A cDNA demonstrated that the E147K mutation results in impairment of calcium channel function. Impaired function of the brain calcium channel CaV2.1 may have a central role in the pathogenesis of certain cases of primary generalized epilepsy, particularly when associated with ataxia, which may be wrongly ascribed to anticonvulsant medication.

Adult↗

The effects of ethosuximide on amino acids in genetic absence epilepsy rat model.

Genetic absence epilepsy rats from Strasbourg (GAERS), a selectively inbred strain of Wistar rats, has been validated as an experimental model for human absence epilepsy. In this model, systemic administration of ethosuximide (ETX) was shown to reduce the spike and wave discharges (SWD). In this study, gamma-aminobutyric acid (GABA) and L-glutamic acid levels in response to ETX injections (i.p., 100 mg/kg) were measured in the microdialysis samples collected from the ventrolateral thalamus (VLT) and the primary motor cortex (M1) area of Wistar rats and GAERS by using HPLC with fluorescent detection. Throughout the microdialysis procedure, continuous EEG recording was performed where ETX was shown to suppress the SWD activity. We demonstrated increased basal GABA levels in the M1 and VLT of GAERS, and ETX treatment did not produce any effect on higher GABA levels in the VLT, but suppressed the increased GABA levels significantly in the M1 of GAERS. All these findings denote the importance of corticothalamic circuitry and the role of increased GABA tonus in primary motor cortex and thalamus of GAERS. The primary motor cortex also seems to be involved in the SWD activity and ETX exerts, at least partially, its neurotransmitter effects through it.

Animals↗