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Biomedical subjects

G Avanzini

Publications and source records attributed to G Avanzini.

At least 73 records · Page 4Linked to original sources

Unstable minisatellite expansion causing recessively inherited myoclonus epilepsy, EPM1.

Progressive myoclonus epilepsy of Unverricht-Lundborg type (EPM1; MIM 254800) is an autosomal recessive disorder that occurs with a low frequency in many populations but is more common in Finland and the Mediterranean region. It is characterized by stimulus-sensitive myoclonus and tonic-clonic seizures with onset at age 6-15 years, typical electroencephalographic abnormalities and a variable rate of progression between and within families. Following the initial mapping of the EPM1 gene to chromosome 21 (ref. 6) and the refinement of the critical region to a small interval, positional cloning identified the gene encoding cystatin B (CST6), a cysteine protease inhibitor, as the gene underlying EPM1 (ref. 10). Levels of messenger RNA encoded by CST6 were dramatically decreased in patients. A 3' splice site and a stop codon mutation were identified in three families, leaving most mutations uncharacterized. In this study, we report a novel type of disease-causing mutation, an unstable 15- to 18-mer minisatellite repeat expansion in the putative promoter region of the CST6 gene. The mutation accounts for the majority of EPM1 patients worldwide. Haplotype data are compatible with a single ancestral founder mutation. The length of the repeat array differs between chromosomes and families, but changes in repeat number seem to be comparatively rare events.

Cystatin B↗

Lamotrigine plasma concentrations in children and adults: influence of age and associated therapy.

The effects of age and concomitant treatment on plasma lamotrigine (LTG) concentration/dose (C/D) ratios were retrospectively evaluated on 482 consecutive routine LTG determinations from 106 chronically-treated patients with epilepsy (40 children and adolescents aged younger than 16 years, and 66 adults aged 17 to 62 years). A linear dose/level relationship was observed in individual patients but not in the cumulative analysis, which failed to show any correlation between the administered LTG dose and plasma concentrations. In the adult group, there were no correlations between the administered LTG dose and plasma concentrations. Associated antiepileptic therapy affected the LTG concentration/dose ratio, which was significantly higher in the patients receiving valproic acid (3.4 +/- 2.0, n = 23) and significantly lower in those treated with enzyme-inducing antiepileptic drugs (0.6 +/- 0.5, n = 57) than in the patients receiving valproic acid in combination with enzyme-inducing antiepileptic drugs, ethosuximide, vigabatrin, or clobazam (1.9 +/- 1.6, n = 26). The LTG C/D ratios significantly increased with increasing plasma valproic acid concentrations, and significantly decreased with increasing phenytoin concentrations. The effect of enzyme-inducing antiepileptic drugs increased with the number of associated drugs. A clear age effect was demonstrated in the homogeneously treated subgroups, in all of which adults had higher C/D ratios than children.

Adolescent↗

Periventricular nodular heterotopia: epileptogenic findings.

PURPOSE: We studied 17 patients with periventricular nodular heterotopia (PNH) to further investigate the electroclinical pictures and semiology of the associated seizures. METHODS: PNH was diagnosed by means of magnetic resonance imaging (MRI). The patients' clinical and familial histories were carefully analyzed, and their electroclinical features and course of epilepsy followed for periods ranging from 10 months to 22 years. The electroclinical data were compared with those of previously reported PNH cases. RESULTS: The patients were subdivided into those with bilateral (7) and unilateral (10) PNH. The former were mainly characterized by structural abnormalities in the posterior cerebral fossa and multiple seizure types; the latter were characterized by the paratrigonal location of the malformation and, frequently, by elementary seizures with a visual or auditory onset. Focal seizures were drug resistant in most cases. The interictal EEG abnormalities were always focal and consistent with the location of the PNH. A previously unreported photic driving of posterior background activity was observed in all patients and was always consistent with the PNH location. CONCLUSIONS: Our present findings and previously reported data show that bilateral and unilateral PNH cases are different in their morphological and electroclinical features and may be determined by different etiologies. The female predominance, frequent familial occurrence, and positive family history for epilepsy suggest that genetic factors may be involved in the genesis of bilateral and symmetrical PNH, whereas the presence of prenatal risk factors and its location in the watershed paratrigonal area suggest that vascular mechanisms may determine unilateral PNH.

Adolescent↗

A TTX-sensitive conductance underlying burst firing in isolated pyramidal neurons from rat neocortex.

Pyramidal neurons were acutely isolated from neocortex slices of 14- to 20-day-old rats and patch-clamped under physiological conditions. Current-clamp recordings revealed firing patterns corresponding to those previously reported in slices as regular spiking (RS) and intrinsically bursting (IB), i.e., single action potentials (AP), trains of regular spikes and bursts with depolarizing after-potentials (DAP). In IB neurons, intracellular perfusion with KF blocked the high-voltage-activated Ca2+ and the Ca(2+)-dependent K+ currents, revealing APs with a 10-30 ms shoulder at -35 mV (shoulder AP), which was the supporting plateau of the intraburst spikes. The use of the A channel blocker, 4-aminopyridine, caused a three-fold reduction in the AP repolarizing rate. A study of the de- and repolarizing rates modulating the spike shape (shoulder AP, burst or single APs) suggested that the percentage of available A channels could play a crucial role in burst formation. Blockade of the residual T-type Ca2+ current by Ni2+ did not inhibit the AP shoulder, whereas it was completely and reversibly inhibited by 30 nM TTX, which did not affect AP amplitude. The AP rising rate was only halved by 100 nM TTX. The data concerning the A channel-mediated burst formation and the role of the TTX-sensitive conductance have been successfully simulated in a model cell. We suggest that bursting is an intrinsic property of the membrane of neocortex neurons, and is sustained by TTX-sensitive slowly inactivating and/or persistent Na+ conductances.

Animals↗

Cortical versus thalamic mechanisms underlying spike and wave discharges in GAERS.

Genetic absence epilepsy rats from Strasbourg (GAERS) have non-convulsive generalized seizures associated with spike-wave (SW) discharges, which are due to a hyperexcitable state of the thalamo-cortico circuits involving the reticular thalamic nucleus (nRt). Investigation of the primary genetically-determined defect responsible for GAERS epilepsy revealed the following abnormalities: (1) increased effectiveness of AMPA receptors dependent glutamate-mediated transmission; (2) impairment of GABA-mediated transmission in the neocortex; (3) increased amplitude of the voltage-dependent low-threshold Ca2(+)-current (I(T)) in the nRt. The maturational profile of these abnormalities supports the conclusion that the abnormality in the I(T) current in the nRt is the primary genetically-determined defect, which may secondarily induce the other changes found in the neocortex and thalamus of GAERS.

2-Amino-5-phosphonovalerate↗

Neuronal migration disorders and epilepsy: a morphological analysis of three surgically treated patients.

Despite the increasing number of patients affected by neuronal migration disorders (NMDs) recently diagnosed in vivo by means of magnetic resonance imaging (MRI), few detailed data on the correlation between the neuroradiological and the anatomical features in the single NMD case are available. The present paper reports a combined cytoarchitectural and immunocytochemical analysis, by means of antisera recognizing specific neuronal and glial markers, of three MRI diagnosed NMD patients surgically treated for the relief of intractable seizures. The first case was a giant subcortical nodular heterotopia of morphologically normal neurons lacking any type of cortical lamination. The second case was a layered polymicrogyria with an abnormal amount of ectopic neurons in the underlying white matter. The third case was a focal cortical dysplasia characterized by a dramatic disruption of the normal cortical layering associated with marked cytological abnormalities. The present data demonstrate that the macroscopical and microscopical brain abnormalities can be markedly different in different NMD subtypes, and suggest that different anatomical substrates can underlie the intrinsic hyperexcitability of these brain malformations. The relevance of further prospective clinico-morphological studies for a better understanding of the mechanisms determining the development of these brain malformations is underlined.

Brain↗

Felbamate in therapy-resistant epilepsy: an Italian experience. Felbamate Italian Study Group.

We evaluated the use of felbamate in 379 adults and children with refractory epilepsies in an open-label, compassionate clinical use setting. Prior to the termination of the program, because of reports of aplastic anemia, 351 patients had completed 2 months of treatment with felbamate at a dose of 2400-3600 mg/day for adults or 30-45 mg/kg/day for children. Of the 246 patients who had a diagnosis of therapy-refractory localization-related epilepsy with or without secondary generalization, 52% (126/246) achieved a seizure reduction of 50% or more, including 10% (25/246) who became seizure free. There was no difference in response rate between adults and children. Of the 80 patients who had a diagnosis of Lennox-Gastaut syndrome (LGS), 60% (48/80) achieved a seizure reduction of 50% or more, including 6% (5/80) who became seizure free. Of the 25 patients with a diagnosis of generalized epilepsy (other than LGS) or undetermined epilepsy whether focal or generalized, 60% (15/25) achieved a seizure reduction of 50% or more, including 12% (3/24) who became seizure free. The results of this uncontrolled study suggest that felbamate could be useful in patients with epilepsies which are refractory to other antiepileptic drugs after careful risk-benefit assessment and consideration of all circumstances involved.

Adolescent↗

Forgetting rate and interference effects on a verbal memory distractor task in patients with temporal lobe epilepsy.

To investigate interference effects in lateralized temporal lobe epilepsy (TLE), we compared 79 patients with left (n = 43) or right (n = 36) TLE and 33 healthy controls on a verbal memory distractor task (VMDT) structured according to the Brown-Peterson paradigm. The subjects were also administered a selective reminding procedure (SRP) for verbal learning, a word fluency test (WFT) and the Wisconsin Card Sorting test (WCST) for "frontal" functions. On the VMDT, left TLE patients were significantly impaired as compared to right TLE patients and controls. This impaired performance correlated with the severity of learning and short-term memory deficit but not with deficits on the WFT or the WCST. Our data suggest that lateralized epileptic discharges may affect the function played by the medial temporal lobe in inhibiting interference, thus contributing to the material-specific memory deficit of TLE patients.

Adult↗

Supratentorial cavernous angiomas and epileptic seizures: preoperative course and postoperative outcome.

OBJECTIVE: Patients operated on for supratentorial cavernous angiomas were studied to define the incidence and the course of seizures in their clinical history. Electroclinical and neuroradiological data were correlated with the location of cavernomas. The impact of lesionectomy on the outcome of seizures was evaluated. METHODS: Preoperative clinical data on the history of the seizures, semeiology, incidence, severity, and response to antiepileptic drugs were analyzed. The location of the cavernomas, revealed by magnetic resonance imaging, was correlated with electroencephalographic and clinical data. Postoperative clinical and neuroradiological data were evaluated, with particular consideration to the outcome of the seizures, antiepileptic drug withdrawal, and the completeness of the lesion excision. RESULTS: A higher incidence of severe epilepsy was observed in the patients with mesiotemporal and cortical angiomas. In most of the patients (78.7%), a good concordance between the site of the lesion and the electroclinical data was found. The complete removal of the lesion led to a favorable outcome, with discontinuation of antiepileptic drugs achieved in one-quarter of the patients. CONCLUSION: A high percentage of patients with cortical cavernomas had epileptic seizures. They often presented with chronic intractable epilepsy (44.7% in our series). In cases of good concordance between the electroclinical data and the location of the angioma, complete lesionectomy led to the disappearance of seizures. Removal of the hemosiderin ring did not correlate with better outcome. Preoperative ictal scalp recordings to assess the topographic relationship between the cavernoma and the epileptic seizures could improve outcome, which suggests different surgical strategies (lesionectomy versus enlarged resection) in patients without a clear-cut concordance between the site of the lesion and the ictal semeiology.

Adult↗

Schizencephaly: neuroradiologic and epileptologic findings.

PURPOSE: Nine patients affected by schizencephaly were analyzed, and the epileptologic findings prospectively studied, to define the relations between the anatomic brain malformations and clinical outcome. METHODS: The schizencephaly was diagnosed by means of magnetic resonance imaging (eight cases) or computed tomography (one case). The clinical histories of all the patients were analyzed, and a psychometric evaluation was made. The electroclinical features and course of epilepsy in the six patients with epilepsy were prospectively followed up for a period ranging from 3 to 14 years. RESULTS: The patients were divided into those who were unilaterally (six) and those bilaterally (three) affected. The former were characterized by mild neurologic deficits and late-onset epilepsy; their epileptologic features were consistent in terms of age of onset, seizure semiology, the absence of secondary generalization, and resistance to antiepileptic treatment. The patients with bilateral schizencephaly associated with other brain malformations were characterized by severe neurologic deficits but were only rarely affected by epilepsy, which was always completely controlled by antiepileptic treatment. CONCLUSIONS: Our data show that the extent of anatomic malformation is strictly related to the severity of motor and mental impairment but not to the presence or severity of epilepsy. The absence of prenatal risk factors for brain damage in our series, previously described familial cases of schizencephaly, and the recent report of mutations in homeobox gene EMX2 associated with cases of schizencephaly all indicate that genetic factors may play a key role in the pathogenesis of this brain malformation.

Adolescent↗

Calcium influx in rat thalamic relay neurons through voltage-dependent calcium channels is inhibited by enkephalin.

High and low voltage-activated, transient (HVA and LVA,T) Ca2+ currents are crucial in determining the characteristic thalamic firing pattern, during the oscillatory mode. The modulatory effects induced by D-ala2-D-leu5-enkephalin (DADLE) on voltage-dependent Ca2+ channels have been investigated on acutely dissociated neurons from rat ventro-basal (VB) thalamus, by means of whole cell patch-clamp technique. DADLE (400 nM) reduced HVA Ca2+ channel currents in 37 out of 44 cells tested (-53 +/- 5.3% to 0 mV test potential, n = 24,). In 50% of the cases DADLE induced an effect which was persistent at all the potentials tested, i.e. a voltage-independent one. In the remaining neurons, the inhibition partially or totally disappeared on the currents evoked at the highest potentials. DADLE was also able to inhibit LVA Ca2+ channels (-40% in five out of 12 cells). In conclusion, thalamic relay neurons present opioid receptors negatively coupled to both HVA and LVA Ca2+ channels. The presence of two inhibitory effects of DADLE on the total HVA Ca2+ channels has been observed, and they are distinguishable on the basis of their sensitivity to voltage. It is suggested that Ca2+ current modulation may play a role in the production and tuning of the rhythmic burst discharge in these neurons.

Animals↗

Ionic mechanisms underlying burst firing in pyramidal neurons: intracellular study in rat sensorimotor cortex.

In in vitro slices prepared from rat sensorimotor cortex, intracellular recordings were obtained from 107 layer V pyramidal neurons, subsequently injected with biocytin for morphological reconstruction. Of the 107 neurons, 59 (55.1%) were identified as adapting (45) or non-adapting (13) regular spiking neurons (RS), and 48 (44.9%) as intrinsically bursting (IB) neurons discharging with an initial cluster of action potentials, which tended to recur rhythmically in a subset of 19 cells. The block of IAR by extracellular Cs+ did not affect burst generation, but enhanced the tendency to reburst in IB neurons. A similar effect was induced by other procedures affecting K(+)-dependent post-burst hyperpolarization. In IB neurons Ca2+ spikes had a longer decay time than in RS neurons, however selective blockers of both low and high threshold Ca2+ conductances failed to impair bursting activity. On the contrary, the perfusion of the slices with 0.5-1 microM TTX suppressed bursting behaviour in a critical time interval preceding the complete block of Na(+)-dependent action potentials. It is concluded that the persistent Na+ current INAP is the most important intrinsic factor for the typical firing properties of IB neurons, while Ca2+ and K+ conductances appear to contribute towards shaping bursts and controlling their recurrence rate. The morphology, connectivity and physiological properties of adapting and non-adapting RS neurons are particularly suited to the processing of respectively phasic and tonic inputs, whereas the properties of IB neurons are consistent with their suggested role in cortical rhythmogenesis and in the pathophysiological synchronized activities underlying epileptogenesis.

Action Potentials↗

Linguistic development in a patient with Landau-Kleffner syndrome: a nine-year follow-up.

A longitudinal linguistic analysis of aphasic disorder in a 15-year-old boy affected by Landau-Kleffner syndrome followed since the age of 6 is reported. The phonological, morphosyntactic and lexical levels of verbal deficits have been evaluated by means of collected samples of spontaneous language and a battery of linguistic tests. The clinical course has fluctuated with improvement and worsening of aphasia and epilepsy; at the end of the follow-up the boy was seizure-free and a medium-degree disturbance in language production and comprehension was present. The results of the linguistic evaluation suggest that the aphasic disturbance was related to a deficiency in phonological decoding which leads to phonological, morphosyntactic and lexical disturbances. A temporal relationship between the electroclinical picture and the aphasia has been observed: the persistent improvement in linguistic performances took place only after the disappearance of the seizures and of the EEG epileptic anomalies during sleep.

Adolescent↗

Mapping of genes predisposing to idiopathic generalized epilepsy.

Idiopathic generalized epilepsy (IGE) is characterized by recurring generalized seizures in the absence of detectable brain lesions and/or metabolic abnormalities. Twin and family studies suggest that genetic factors play a key part in IGE. A multilocus model appears to best fit the observed inheritance patterns. Mapping of IGE-related genes has been previously attempted using parametric methods, with conflicting results. In particular, recent evidence argues both for and against a chromosome 6p locus (EJM1) for juvenile myoclonic epilepsy, a subtype of IGE. We have approached the problem of mapping IGE loci using non-parametric methods, which have recently been successful for other complex diseases. No evidence for linkage to chromosome 6p was obtained. However, we obtained evidence for involvement of a locus at chromosome 8q24, close to the marker D8S256. The same 8q24 region was previously implicated in families with benign neonatal familial convulsions (BNFC), a generalized epilepsy syndrome that is inherited as a simple dominant mendelian trait. There is an apparent conserved syntenic group of genes in human 8q24 and a region of mouse chromosome 15, which harbors the stargazer (stg) locus. Homozygous mutant mice at the stg locus show a form of generalized epilepsy that resembles human absence epilepsy. Our findings may have implications for a locus on 8q24 predisposing to IGE.

Chromosome Mapping↗

Visual learning on a selective reminding procedure and delayed recall in patients with temporal lobe epilepsy.

We administered a visual selective reminding procedure for the learning of designs to healthy controls and to left or right temporal lobe epilepsy (TLE) patients without demonstrable brain lesions. In comparison with the other groups, right TLE patients showed a deficit of learning characterized by an impairment in storing visual material and consistently retrieving it from long-term memory. Patients with left TLE performed similarly to controls. These data are consistent with the hypothesis of right hippocampal involvement in the learning of nonverbal material. Delayed retrieval of learned material was similar in all the subject groups tested at long time intervals, suggesting the impairment of learning in patients with right TLE does not necessarily imply a subsequent deficit in the retrieval of stored information. This finding may agree with the opinion that distinct functional systems subserve learning and memory.

Adult↗

Clinical pharmacokinetics of antiepileptic drugs in paediatric patients. Part I: Phenobarbital, primidone, valproic acid, ethosuximide and mesuximide.

This article reviews 119 papers published since 1964 on the pharmacokinetics of phenobarbital, primidone, valproic acid, ethosuximide and mesuximide (methsuximide) in paediatric patients. Particular attention has been paid to the role of age in determining the variability of pharmacokinetic parameters, but the effect of other factors, such as different formulations and routes of administration, concomitant treatments, gender and pathological conditions other than epilepsy, have also been considered. Mean phenobarbital terminal half-life (t1/2z) is very long in neonates (45 to 409 hours) and decreases with age. Therefore, a low dose per kilogram (dose/kg) is recommended during the neonatal period. The dose requirement decreases with increasing age, especially in children also taking valproic acid, which inhibits phenobarbital metabolism. Primidone is metabolised to phenobarbital and phenylethylmalonilamide; the metabolic conversion rate is increased by enzyme-inducing drugs and inversely correlated with age, being virtually absent in neonates. Valproic acid is extensively bound to plasma proteins, but there is a high interindividual and intraindividual diurnal variability in the binding, which depends on the concentration of binding proteins (i.e. albumin) and binding modulators (e.g. free fatty acids) but not on age (at least in those patients aged between 3 months and 65 years). The clearance (CL/F) of valproic acid positively correlates with the unbound concentrations and is strongly age-dependent, being low in neonates and high at the end of the first postnatal month, and progressively decreasing from 2 months to 14 years. The combination of these factors leads to a very poor correlation between plasma concentrations and dose/kg (C/D) and between plasma concentrations of total valproic acid and efficacy. Children also taking enzyme-inducing antiepileptic drugs require a larger valproic acid dose/kg, whereas the coadministration of aspirin (acetylsalicylic acid) may decrease the clearance of unbound drug (CLu/F), and thus require a decrease in the daily dose of valproic acid. Ethosuximide is well absorbed, minimally protein bound and slowly eliminated. Lower C/D ratios are reported in children younger than 10 years old than in older children and in individuals also taking enzyme-inducing drugs (i.e. primidone). According to the only available paper on mesuximide in paediatric patients, the C/D ratio is less sensitive to both age and associated therapy.

Adolescent↗