Methods: In this report, we comprehensively describe the design method, the procedures, validation, and implementation of an exon-centric customized aCGH (NeuroArray 1.0), tailored to detect both single and multi-exon deletions or duplications in a large set of multi-and monogenic neurological diseases. This focused platform enables a targeted measurement of structural imbalances across the human genome, targeting the clinically relevant genes at exon-level resolution.

Background: Neurological disorders are a highly heterogeneous group of pathological conditions that affect both the peripheral and the central nervous system. These pathologies are characterized by a complex and multifactorial etiology involving numerous environmental agents and genetic susceptibility factors. For this reason, the investigation of their pathogenetic basis by means of traditional methodological approaches is rather arduous. High-throughput genotyping technologies, including the microarray-based comparative genomic hybridization (aCGH), are currently replacing classical detection methods, providing powerful molecular tools to identify genomic unbalanced structural rearrangements and explore their role in the pathogenesis of many complex human diseases.

NeuroArray: A Customized aCGH for the Analysis of Copy Number Variations in Neurological Disorders

La Cognata Valentina;Morello Giovanna;Gentile Giulia;Cavalcanti Francesca;Cittadella Rita;Conforti Francesca Luisa;De Marco Elvira Valeria;Magariello Angela;Muglia Maria;Patitucci Alessandra;Spadafora Patrizia;D'Agata Velia;Ruggieri Martino;Cavallaro Sebastiano
2018

Abstract

Background: Neurological disorders are a highly heterogeneous group of pathological conditions that affect both the peripheral and the central nervous system. These pathologies are characterized by a complex and multifactorial etiology involving numerous environmental agents and genetic susceptibility factors. For this reason, the investigation of their pathogenetic basis by means of traditional methodological approaches is rather arduous. High-throughput genotyping technologies, including the microarray-based comparative genomic hybridization (aCGH), are currently replacing classical detection methods, providing powerful molecular tools to identify genomic unbalanced structural rearrangements and explore their role in the pathogenesis of many complex human diseases.
2018
Istituto di Scienze Neurologiche - ISN - Sede Mangone
Istituto per i Sistemi Agricoli e Forestali del Mediterraneo - ISAFOM
Methods: In this report, we comprehensively describe the design method, the procedures, validation, and implementation of an exon-centric customized aCGH (NeuroArray 1.0), tailored to detect both single and multi-exon deletions or duplications in a large set of multi-and monogenic neurological diseases. This focused platform enables a targeted measurement of structural imbalances across the human genome, targeting the clinically relevant genes at exon-level resolution.
Methods
aCGH
CNVs
Neurological diseases
Genes
Custom array
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Descrizione: NeuroArray: A Customized aCGH for the Analysis of Copy Number Variations in Neurological Disorders
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/370293
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