Browsing by Author "Bertini, E. (57204849414)"
Now showing 1 - 3 of 3
- Results Per Page
- Sort Options
- Some of the metrics are blocked by yourconsent settings
Publication A clinical diagnostic algorithm for early onset cerebellar ataxia(2019) ;Brandsma, R. (55245907200) ;Verschuuren-Bemelmans, C.C. (6602284433) ;Amrom, D. (6507306997) ;Barisic, N. (56187232100) ;Baxter, P. (7102068233) ;Bertini, E. (57204849414) ;Blumkin, L. (13610420800) ;Brankovic-Sreckovic, V. (6505942755) ;Brouwer, O.F. (7006655750) ;Bürk, K. (56268118800) ;Catsman-Berrevoets, C.E. (7003284229) ;Craiu, D. (15051482700) ;de Coo, I.F.M. (6602698153) ;Gburek, J. (57210790978) ;Kennedy, C. (55749016900) ;de Koning, T.J. (7003479768) ;Kremer, H.P.H. (57202001588) ;Kumar, R. (56486514200) ;Macaya, A. (7004176148) ;Micalizzi, A. (57202029625) ;Mirabelli-Badenier, M. (37075468700) ;Nemeth, A. (57219445987) ;Nuovo, S. (56584682500) ;Poll-The, B. (7006132550) ;Lerman-Sagie, T. (7004801181) ;Steinlin, M. (7003441898) ;Synofzik, M. (23391247900) ;Tijssen, M.A.J. (7004162353) ;Vasco, G. (16687278300) ;Willemsen, M.A.A.P. (35953081600) ;Zanni, G. (7003411814) ;Valente, E.M. (57200902607) ;Boltshauser, E. (55155953300)Sival, D.A. (6701648501)Early onset cerebellar Ataxia (EOAc) comprises a large group of rare heterogeneous disorders. Determination of the underlying etiology can be difficult given the broad differential diagnosis and the complexity of the genotype–phenotype relationships. This may change the diagnostic work-up into a time-consuming, costly and not always rewarding task. In this overview, the Childhood Ataxia and Cerebellar Group of the European Pediatric Neurology Society (CACG-EPNS) presents a diagnostic algorithm for EOAc patients. In seven consecutive steps, the algorithm leads the clinician through the diagnostic process, including EOA identification, application of the Inventory of Non-Ataxic Signs (INAS), consideration of the family history, neuro-imaging, laboratory investigations, genetic testing by array CGH and Next Generation Sequencing (NGS). In children with EOAc, this algorithm is intended to contribute to the diagnostic process and to allow uniform data entry in EOAc databases. © 2019 European Paediatric Neurology Society - Some of the metrics are blocked by yourconsent settings
Publication Mutations in the IRBIT domain of ITPR1 are a frequent cause of autosomal dominant nonprogressive congenital ataxia(2017) ;Barresi, S. (37074127000) ;Niceta, M. (17135673300) ;Alfieri, P. (24385329500) ;Brankovic, V. (57192421308) ;Piccini, G. (42161930500) ;Bruselles, A. (57201949531) ;Barone, M.R. (57189247765) ;Cusmai, R. (7004473542) ;Tartaglia, M. (57218448148) ;Bertini, E. (57204849414)Zanni, G. (7003411814)Congenital ataxias are nonprogressive neurological disorders characterized by neonatal hypotonia, developmental delay and ataxia, variably associated with intellectual disability and other neurological or extraneurological features. We performed trio-based whole-exome sequencing of 12 families with congenital cerebellar and/or vermis atrophy in parallel with targeted next-generation sequencing of known ataxia genes (CACNA1A, ITPR1, KCNC3, ATP2B3 and GRM1) in 12 additional patients with a similar phenotype. Novel pathological mutations of ITPR1 (inositol 1,4,5-trisphosphate receptor, type 1) were found in seven patients from four families (4/24, ∼16.8%) all localized in the IRBIT (inositol triphosphate receptor binding protein) domain which plays an essential role in the regulation of neuronal plasticity and development. Our study expands the mutational spectrum of ITPR1-related congenital ataxia and indicates that ITPR1 gene screening should be implemented in this subgroup of ataxias. © 2016 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd - Some of the metrics are blocked by yourconsent settings
Publication Mutations in the IRBIT domain of ITPR1 are a frequent cause of autosomal dominant nonprogressive congenital ataxia(2017) ;Barresi, S. (37074127000) ;Niceta, M. (17135673300) ;Alfieri, P. (24385329500) ;Brankovic, V. (57192421308) ;Piccini, G. (42161930500) ;Bruselles, A. (57201949531) ;Barone, M.R. (57189247765) ;Cusmai, R. (7004473542) ;Tartaglia, M. (57218448148) ;Bertini, E. (57204849414)Zanni, G. (7003411814)Congenital ataxias are nonprogressive neurological disorders characterized by neonatal hypotonia, developmental delay and ataxia, variably associated with intellectual disability and other neurological or extraneurological features. We performed trio-based whole-exome sequencing of 12 families with congenital cerebellar and/or vermis atrophy in parallel with targeted next-generation sequencing of known ataxia genes (CACNA1A, ITPR1, KCNC3, ATP2B3 and GRM1) in 12 additional patients with a similar phenotype. Novel pathological mutations of ITPR1 (inositol 1,4,5-trisphosphate receptor, type 1) were found in seven patients from four families (4/24, ∼16.8%) all localized in the IRBIT (inositol triphosphate receptor binding protein) domain which plays an essential role in the regulation of neuronal plasticity and development. Our study expands the mutational spectrum of ITPR1-related congenital ataxia and indicates that ITPR1 gene screening should be implemented in this subgroup of ataxias. © 2016 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd
