BACKGROUND:Angelman syndrome (AS) is a rare and heterogeneous genetic disorder characterized by intellectual and psychomotor delay, speech deficits, seizures and behavioural issues. To evaluate the feasibility of collecting data by many Italian centers involved in pathology management, and to investigate the relationship between various symptoms and genotypes, a dedicated AS registry was developed. This study aims to present preliminary findings from the Italian AS registry (IReAS), with a specific focus on exploring genotype-phenotype correlations. MATERIALS AND METHODS:The IReAS, established in 2020, aims to collect information from 14 different Italian referral. It includes demography, diagnosis and genetic, patient status, therapeutic interventions and mortality data collection. RESULTS:213 patients (55.4 % female vs 44.6 % male) were included in the IReAS during the 2020-24 period. Average age at genetic diagnosis was 3.8 years; 63 % of patients was paediatric; 70.4 % of subjects had maternal deletion. Most patients exhibited global developmental delay (100 %), movement disorders (94.8 %), behavioral abnormalities (96.2 %), and a total lack of language development (95.8 %). Epilepsy is also highly prevalent (80.3 %), with a significantly higher incidence in patients with maternal deletion compared to non-deletion groups (88 % vs 61.9 %). CONCLUSIONS:The IReAS provides comprehensive data on the diagnosis, genetic subtypes and clinical features of AS patients. It can facilitate genotype-phenotype correlation analyses, offering insights into the AS natural history and potential implications for research on targeted therapies.
Objective Neurodevelopmental disorders (NDDs) and epilepsy are often associated. Increasing evidence highlights a pivotal role for pathogenic variants in genes encoding synaptic scaffolding proteins. Within this group, TANC2 has recently been implicated in intellectual developmental disorder with autistic features and language delay, with or without seizures; however, its full clinical spectrum and contribution to specific epileptic encephalopathies remain incompletely defined.Methods We describe the electroclinical and developmental features of three patients carrying truncating TANC2 variants identified through trio-exome sequencing within the European collaborative platform NETRE. Clinical, neuropsychological, and EEG data were collected and compared with prior reports.Results Case #1 met Lennox-Gastaut syndrome (LGS) criteria, showing early drug resistance followed by partial cognitive recovery and sustained seizure control on felbamate monotherapy. Case #2 presented with ASD and multiple seizure types-including focal, atypical absence, and tonic-finally reaching prolonged remission and borderline intellectual functioning. Case #3 showed early-onset, drug-resistant polymorphic seizures with persistent bifrontal epileptiform discharges and severe developmental impairment, consistent with an LGS-like phenotype, with seizure freedom achieved under a limited polytherapy regimen.Significance Our findings expand the electroclinical spectrum of TANC2-related disorders, supporting a continuum ranging from NDD-associated epilepsy to DEE, including LGS in selected patients.Plain Language Summary TANC2 is a gene involved in brain development and synaptic function. Changes in this gene have been linked to neurodevelopmental disorders, autism, intellectual disability, and epilepsy. We describe three individuals with previously unreported truncating TANC2 variants and different epilepsy phenotypes, including one patient fulfilling criteria for Lennox-Gastaut syndrome (LGS) and another with LGS-like features. Although seizures were initially difficult to treat in some cases, seizure control was eventually achieved. These findings expand the known clinical spectrum of TANC2-related disorders and suggest that selected patients may have a more favorable seizure course than expected.
Lennox-Gastaut syndrome (LGS) is one of the most severe, yet one of the most discussed, childhood-onset developmental and epileptic encephalopathies (DEEs). Dissent among epileptologists on the definition and minimum set of electroclinical features derives from the high etiological heterogeneity within the syndrome, which could make its prevalence overestimated. However, in recent years, our diagnostic strategies, including both high-resolution magnetic resonance imaging and next-generation sequencing techniques, have enabled us to disentangle many cases previously classified as "idiopathic." In addition, some electroencephalographic and circulating biomarkers have been identified that could predict disease progression and treatment response if confirmed in larger patient populations. As our diagnostic capacity increases, so do our treatment strategies. Although progress has been made, the implementation of better clinical trial designs, individualized treatments, and therapies that address the genetic roots of the disease remains necessary in clinical practice. A lot is being done in this direction, thanks to the involvement of families and the creation of international networks, such as the ERNs, which are rapidly promoting collaboration among highly specialized centers and the establishment of disease registries to shed light on the natural history of LGS. Yet, many unmet needs still afflict patients and their families, including uncertainties arising from the transition process and a lack of administrative support and comprehensive care as patients transition into adulthood. This article summarizes these key challenges in diagnosing, treating, and caring for patients with LGS, as well as the roadmap to enhanced future care discussed during the international LGS meeting held in Genoa.
Abstract Objective Rare and complex epilepsies encompass a diverse range of disorders characterized by seizures. We aimed to establish a consensus on key issues related to these conditions through collaboration among experienced neurologists, neuropediatricians, and patient advocacy representatives. Methods Employing a modified Delphi method, a scientific board comprising 20 physicians and 4 patient advocacy representatives synthesized existing literature with their expertise to formulate statements on contentious topics. A final 32‐member expert panel, representing diverse regions of Italy, validated these statements through a two‐round voting process, with consensus defined as an average score ≥7. Results Sixteen statements reached a consensus, emphasizing the necessity for epidemiological studies to ascertain the true prevalence of rare epilepsies. Etiology emerged as a crucial factor influencing therapeutic strategies and outcome prediction, with particular concern regarding prolonged and tonic–clonic seizures. The importance of early implementation of specific drugs and non‐pharmacological interventions in the treatment algorithm for developmental and epileptic encephalopathies (DEEs) was underscored. Multidisciplinary care involving experts with diverse skills was deemed essential, emphasizing non‐seizure outcomes in adolescence and adulthood. Significance This national consensus underscores the imperative for personalized, comprehensive, and multidisciplinary management of rare epilepsies/DEEs. It advocates for increased research, particularly in epidemiology and therapeutic approaches, to inform clinical decision‐making and healthcare policies, ultimately enhancing patients' outcomes. Plain Language Summary The modified Delphi method is broadly used to evaluate debated topics. In this work, we sought the consensus on integrated and social care in epilepsy management. Both representatives of high‐level epilepsy centers and patients' caregivers were directly involved.
Stretch syncope (SS) is a benign, uncommon, distinct condition described mainly in adolescent males. It is responsible for paroxysmal events started by stereotyped stretching actions with neck hyperextension, culminating in alteration of consciousness. Motor manifestations are often present and may be associated with a generalized slowing of the electroencephalographic activity, challenging the diagnosis. Despite a few cases reported in the literature, different mechanisms have been implied in the pathogenesis, involving both local and systemic hemodynamic phenomena. Here, we report on an 8-year-old girl with self-induced SS, providing new insights into the related neurophysiological profile and discussing the possible etiology. Our evidence of transient and dynamic vascular impairment supports the hypothesis of SS as a multifactorial disorder.
OBJECTIVE:Epilepsy with eyelid myoclonia (EEM) spectrum is a generalized form of epilepsy characterized by eyelid myoclonia with or without absences, eye closure-induced seizures with electroencephalographic paroxysms, and photosensitivity. Based on the specific clinical features, age at onset, and familial occurrence, a genetic cause has been postulated. Pathogenic variants in CHD2, SYNGAP1, NEXMIF, RORB, and GABRA1 have been reported in individuals with photosensitivity and eyelid myoclonia, but whether other genes are also involved, or a single gene is uniquely linked with EEM, or its subtypes, is not yet known. We aimed to dissect the genetic etiology of EEM.METHODS:We studied a cohort of 105 individuals by using whole exome sequencing. Individuals were divided into two groups: EEM- (isolated EEM) and EEM+ (EEM accompanied by intellectual disability [ID] or any other neurodevelopmental/psychiatric disorder).RESULTS:We identified nine variants classified as pathogenic/likely pathogenic in the entire cohort (8.57%); among these, eight (five in CHD2, one in NEXMIF, one in SYNGAP1, and one in TRIM8) were found in the EEM+ subcohort (28.57%). Only one variant (IFIH1) was found in the EEM- subcohort (1.29%); however, because the phenotype of the proband did not fit with published data, additional evidence is needed before considering IFIH1 variants and EEM- an established association. Burden analysis did not identify any single burdened gene or gene set.SIGNIFICANCE:Our results suggest that for EEM, as for many other epilepsies, the identification of a genetic cause is more likely with comorbid ID and/or other neurodevelopmental disorders. Pathogenic variants were mostly found in CHD2, and the association of CHD2 with EEM+ can now be considered a reasonable gene-disease association. We provide further evidence to strengthen the association of EEM+ with NEXMIF and SYNGAP1. Possible new associations between EEM+ and TRIM8, and EEM- and IFIH1, are also reported. Although we provide robust evidence for gene variants associated with EEM+, the core genetic etiology of EEM- remains to be elucidated.
Purpose: Although international guidelines exist, the clinical heterogeneity of Lennox-Gastaut syndrome (LGS) and the increasing availability of new and repurposed drugs (e.g., fenfluramine and cannabidiol) requires a practical guide to patient management in the clinical context. We report the results of a consensus survey among 42 Italian experts in the diagnosis and treatment of LGS. Methods: The consensus procedure followed a modified Delphi approach. Statements were formulated, based on the most recent published evidence and the clinicians' personal experience, then discussed, and agreed upon by the experts through a two-round voting procedure. Approval of a statement was reached with an average score >= 7. Results: Thirteen statements dealing with three main topics (i.e., clinical diagnosis and prognosis, impact on the Quality of Life (QoL), and treatment strategies) were generated. Six statements achieved a level of agreement sufficient for approval on the first voting round. Following the discussion and a few consequent amendments, most of the statements increased their level of agreement and all 13 were approved. Conclusions: Overall, the statements draw a slightly more benign picture of this rare and severe disease, highlighting the possibility of remission - albeit modest -, an apparent trend towards lower mortality, and the availability of several effective drugs, to which greater accessibility would be hoped for. Valproate remains a major therapeutic option in LGS patients although lamotrigine, rufinamide, topiramate, cannabidiol, and clobazam are popular therapeutic options in Italy, allowing for a tailor-made antiseizure therapy.
Purpose: Epilepsy is a main manifestation in the autosomal dominant mental retardation syndrome caused by heterozygous variants in MEF2C. We aimed to delineate the electro-clinical features and refine the genotype phenotype correlations in patients with MEF2C haploinsufficiency. Methods: We thoroughly investigated 25 patients with genetically confirmed MEF2C-syndrome across 12 different European Genetics and Epilepsy Centers, focusing on the epileptic phenotype. Clinical features (seizure types, onset, evolution, and response to therapy), EEG recordings during waking/sleep, and neuroimaging findings were analyzed. We also performed a detailed literature review using the terms "MEF2C", "seizures", and "epilepsy". Results: Epilepsy was diagnosed in 19 out of 25 (-80%) subjects, with age at onset <30 months. Ten individuals (40%) presented with febrile seizures and myoclonic seizures occurred in-50% of patients. Epileptiform abnormalities were observed in 20/25 patients (80%) and hypoplasia/partial agenesis of the corpus callosum was detected in 12/25 patients (-50%). Nine patients harbored a 5q14.3 deletion encompassing MEF2C and at least one other gene. In 7 out of 10 patients with myoclonic seizures, MIR9-2 and LINC00461 were also deleted, whereas ADGRV1 was involved in 3/4 patients with spasms. Conclusion: The epileptic phenotype of MEF2C-syndrome is variable. Febrile and myoclonic seizures are the most frequent, usually associated with a slowing of the background activity and irregular diffuse discharges of frontally dominant, symmetric or asymmetric, slow theta waves with interposed spike-and-waves complexes. The haploinsufficiency of ADGRV1, MIR9-2, and LINC00461 likely contributes to myoclonic seizures and spasms in patients with MEF2C syndrome.
Objectives To analyze the efficacy and safety of Brivaracetam in pediatric patients with epileptic encephalopathy or unresponsive focal epilepsy. Materials & Methods This retrospective study included eight pediatric patients with EE or unresponsive focal epilepsy. Inclusion criteria: (1) ≤14 years, (2) history of refractory epilepsy, (3) at least one month of continuous therapy with BRV, and (4) at least six months of follow-up. Exclusion criteria: (1) variation of concomitant antiepileptic drugs during the previous and/or subsequent four weeks of the BRV introduction, (2) levetiracetam in therapy, (3) epilepsy secondary to the progressive cerebral disease, tumor, or any other progressive neurodegenerative diseases, and (4) a status epilepticus a month before screening or during the baseline period. The efficacy of BRV was defined as ≥50% of seizure frequency reduction at the end of the follow-up, compared to baseline. Results: All patients showed ≥50% seizure frequency reduction, of whom 37.5% were seizure-free, 25% had a frequency reduction of ≥75%, and 37.5% had frequency reduction of ≥ 50%. All patients with an epilepsy onset >12 months and epilepsy duration of ≤6 years were seizure-free. The maximum effect was achieved at 2 mg/kg/day, and focal seizures revealed a better response than epileptic encephalopathy. A remarkably positive effect of the Brivaracetam was noticed in patients with encephalopathy regarding the status epilepticus during sleep; however, no relevant side-effects were noted. Conclusion: Brivaracetam was an effective and well-tolerated treatment in pediatric patients with epileptic encephalopathy or unresponsive focal epilepsy, especially for the epilepsy onset >12 months and the epilepsy duration ≤6 years. The total effect was not dose-dependent. Brivaracetam could represent an indication of encephalopathy regarding the status epilepticus during sleep.
We describe a patient with focal epilepsy characterized by ictal asystole episodes and low-grade tumour over the left temporal neocortex. Non-invasive pre-surgical evaluation showed an epileptogenic zone extended beyond the low-grade tumour. This extension was confirmed by intraoperative electrocorticography. One-stage surgery with anterior temporal lobe resection was performed. The patient was seizure-free after one year of follow-up. Detailed electroclinical and therapeutic reasoning with hypotheses defining epileptogenic and symptomatogenic networks are discussed.
Early identification of de novo KCNQ2 variants in patients with epilepsy raises prognostic issues toward optimal management. We analyzed the clinical and genetic information from a cohort of patients with de novo KCNQ2 pathogenic variants to dissect genotype-phenotype correlations.Patients with de novo KCNQ2 pathogenic variants were identified from Italy, Denmark, and Belgium. Atomic resolution Kv7.2 structures were also generated using homology modeling to map the variants.We included 34 patients with a mean age of 4.7 years. Median seizure onset was 2 days, mainly with focal seizures with autonomic signs. Twenty-two patients (65%) were seizure free at the mean age of 1.2 years. More than half of the patients (17/32) displayed severe/profound intellectual disability; however, 4 (13%) of them had a normal cognitive outcome.A total of 28 de novo pathogenic variants were identified, most missense (25/28), and clustered in conserved regions of the protein; 6 variants recurred, and 7 were novel. We did not identify a relationship between variant position and seizure offset or cognitive outcome in patients harboring missense variants. Besides, recurrent variants were associated with overlapping epilepsy features but also variable evolution regarding the intellectual outcome.We highlight the complexity of variant interpretation to assess the impact of a class of de novo KCNQ2 mutations. Genetic modifiers could be implicated, but the study paradigms to successfully address the impact of each single mutation need to be developed.
Although the classic phenotype of episodic ataxia type 1 (EA1) caused by variants in KCNA1 includes episodic ataxia and myokymia, further genotype-phenotype correlations are difficult to establish due to highly heterogeneous clinical presentations associated with KCNA1 pathogenic variants. De novo variants in the paralogous Pro-Val-Pro motif (PVP) of KCNA2, an essential region for channel gating, have been reported to be associated with severe epilepsy phenotypes, including developmental and epileptic encephalopathies (DEE). Here, we describe the first patient with a DEE who developed an encephalopathy related to status epilepticus during sleep (ESES) and cerebellar signs, harbouring a variant in the Kv-specific PVP motif of the KCNA1 gene. Interestingly, he showed a remarkable long-term electroclinical response to IM ACTH therapy. This report extends the range of phenotypes associated with KCNA1 variants to include that of ESES, and suggests that ACTH therapy is likely to have a positive effect in patients with these variants.
The International League Against Epilepsy (ILAE) has been working to standardize the epilepsy classifications for over a hundred years.The latest epilepsy classification has been recently carried out with a careful overview on several topics including the "epileptic encephalopathies" concept and several constructive discussions on this topic have taken place in the international community of epileptologists.Here we wish to share our reflection on a statement of the ILAE commission on the "epileptic encephalopathy" concept, which in our opinion pays less attention to the "electroclinical syndromes" concept in favor of the new and very rapid genetic advances, thus generating confusion.Our aim is both to preserve the role of electroclinical syndromes, while allowing for the association of the phenotype with specific gene mutations, and to underline the importance of bringing electroclinical syndromes back to the forefront of epileptology.We believe the "match" is still open and for this reason we would like to share our considerations and to open a constructive debate on the "epileptic encephalopathy" concept.
The ring 14 syndrome is a rare condition caused by the rearrangement of one chromosome 14 into a ring-like structure. The formation of the ring requires two breakpoints and loss of material from the short and long arms of the chromosome. Like many other chromosome syndromes, it is characterized by multiple congenital anomalies and developmental delays. Typical of the condition are retinal anomalies and drug-resistant epilepsy. These latter manifestations are not found in individuals who are carriers of comparable 14q deletions without formation of a ring (linear deletions). To find an explanation for this apparent discrepancy and gain insight into the mechanisms leading to seizures, we reviewed and compared literature cases of both ring and linear deletion syndrome with respect to both their clinical manifestations and the role and function of potentially epileptogenic genes. Knowledge of the epilepsy-related genes in chromosome 14 is an important premise for the search of new and effective drugs to combat seizures. Current clinical and molecular evidence is not sufficient to explain the known discrepancies between ring and linear deletions.
PURPOSE:Gluten-related disorders (GRDs) are a group of immune-mediated diseases often associated to neurologic manifestations. Epilepsies with cerebral calcifications, with or without coeliac disease (CD), are rare neurological disorders characterized by childhood-onset focal seizures, often refractory to antiepileptic drugs. Transglutaminase 6 antibodies (anti-TG6) have been considered a biomarker for gluten-related ataxia and neuropathy, but their prevalence in epilepsies with cerebral calcifications is unknown. The aim of this study is to evaluate anti-TG6 prevalence in patients with epilepsies and cerebral calcifications.METHOD:this was a cross-sectional study conducted at five Italian epilepsy centres. The following groups were included. Group 1: nine patients with CD, posterior cerebral calcifications and epilepsy (CEC); group 2: nine patients with epilepsy and posterior cerebral calcifications, without CD; group 3: twenty patients with focal epilepsy of unknown etiology; group 4: twenty-two healthy controls (HC). All subjects were tested for serological evidence of anti-TG6 IgA and IgG. Differences among groups were analysed using χ ² test.RESULTS:anti-TG6 were present in 1/9 subjects (11%) of group 1, 2/9 subjects (22%) of group 2, 0/20 subjects in group 3, 3/22 (13.6%) of HC. No significant difference was found among the 4 groups.CONCLUSIONS:Anti-TG6 do not seem to be associated to epilepsies with cerebral calcifications.
Childhood epilepsy with centrotemporal spikes (CECTS) is the most common type of "self-limited focal epilepsies." In its typical presentation, CECTS is a condition reflecting non-lesional cortical hyperexcitability of rolandic regions. The benign evolution of this disorder is challenged by the frequent observation of associated neuropsychological deficits and behavioral impairment. The abundance (or frequency) of interictal centrotemporal spikes (CTS) in CECTS is considered a risk factor for deficits in cognition. Herein, we captured the hemodynamic changes triggered by the CTS density measure (i.e., the number of CTS for time bin) obtained in a cohort of CECTS, studied by means of video electroencephalophy/functional MRI during quite wakefulness. We aim to demonstrate a direct influence of the diurnal CTS frequency on epileptogenic and cognitive networks of children with CECTS. A total number of 8,950 CTS (range between 27 and 801) were recorded in 23 CECTS (21 male), with a mean number of 255 CTS/patient and a mean density of CTS/30 s equal to 10,866 ± 11.46. Two independent general linear model models were created for each patient based on the effect of interest: "individual CTS" in model 1 and "CTS density" in model 2. Hemodynamic correlates of CTS density revealed the involvement of a widespread cortical-subcortical network encompassing the sensory-motor cortex, the Broca's area, the premotor cortex, the thalamus, the putamen, and red nucleus, while in the CTS event-related model, changes were limited to blood-oxygen-level-dependent (BOLD) signal increases in the sensory-motor cortices. A linear relationship was observed between the CTS density hemodynamic changes and both disease duration (positive correlation) and age (negative correlation) within the language network and the bilateral insular cortices. Our results strongly support the critical role of the CTS frequency, even during wakefulness, to interfere with the normal functioning of language brain networks.
A more complete understanding of the epileptic aura represents an important challenge for localizing the epileptogenic zone and understanding brain networks. This review re-visits the localizing value of the epileptic aura, focusing on clinical pitfalls in epileptogenic zone detection and the importance of defining functional connectivity. We review the role of network node activation or alteration and its relationship to hub activation.
We describe a case of ceroid lipofuscinosis type 2 (CLN-2) for which the electroencephalography (EEG) low-frequency photostimulation guided the diagnosis. A 7 years old male, with normal familiar and medical history except for language delay, at age of 3 years showed the first unprovoked seizure, characterized by head and eyes right deviation, followed by jerks of the limbs, lasting 2 minutes. After 24 hours, he showed the second seizure, characterized by generalized stiffness and cyanosis lasting ~60 seconds. Laboratory tests were normal. Interictal EEG at the onset showed bilateral temporoparietal abnormalities, intermittent photic stimulation (IPS) was not performed. Brain MRI was normal. Seizure frequency was many per week. Valproic acid and clonazepam therapy were started resulting in seizure freedom. At 4 years, after a febrile episode, a progressive gait instability appeared. New brain MRI showed widespread cortical and subcortical atrophy. Laboratory tests were normal yet. Interictal EEG showed bilateral occipital abnormalities with abnormal photoparoxysmal response during low frequencies and flash-per-flash to IPS. Skin biopsy showed vacuolar inclusions of lipids complex. The CLN-2 gene molecular analysis revealed c.509–1G>, C compound heterozygosis, and c.972_976 delCTATGGAG on CLN-2 gene. In conclusion, this case report seems to confirm that the association between severe language delay and unprovoked seizures onset between 2 and 4 years of age with an abnormal photoparoxysmal response during low frequencies and flash-per-flash test could be really suggestive of an early diagnosis of CLN-2. That also may lead us to start a treatment as soon as possible, considering the currently available therapies.