Application of array comparative genomic hybridization in clinical diagnostics of intellectual disability/developmental delay in children

Komal Uppal, Lakshay Rana, S. Polipalli, Somesh Kumar, Ankur Jindal, Seema Kapoor
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Abstract

Background: This study was designed to analyze and evaluate the potential pathogenic genomic imbalance in children with unexplained intellectual disability (ID) and/or developmental delay (DD) and its association with phenotypes, and to investigate the value of array-based comparative genomic hybridization (array-CGH). Methods: A total of 72 Children with ID/DD were evaluated by array-CGH for detection of genomic copy number variations (CNVs). Results: The results of the array-CGH revealed that 10(14%) of the 72 patients had pathogenic CNVs, in that six cases had pathogenic CNV in a single chromosome, 2 cases had multiple microdeletions and 2 cases had combined microdeletion and microduplication, 2 cases had pathogenic CNVs in chromosome 1p36 and Xq28 region. One case had variation of unknown significance in chromosome region 15q11.2. Large bands of copy neutral loss of heterozygosity were detected in 2 cases comprising more than 10% of genome. Conclusions: Array-CGH being a high-throughput and rapid tool, allows for the etiological diagnosis in some of the children with unexplained ID/DD.
阵列比较基因组杂交在儿童智力障碍/发育迟缓临床诊断中的应用
研究背景本研究旨在分析和评估原因不明的智力障碍(ID)和/或发育迟缓(DD)儿童的潜在致病基因组失衡及其与表型的关联,并探讨基于阵列的比较基因组杂交(array-CGH)的价值。研究方法通过阵列-CGH检测基因组拷贝数变异(CNV),对72名ID/DD儿童进行评估。结果阵列-CGH结果显示,72例患者中有10例(14%)存在致病性CNV,其中6例在单条染色体上存在致病性CNV,2例存在多条微缺失,2例合并微缺失和微重复,2例在染色体1p36和Xq28区域存在致病性CNV。一个病例的染色体 15q11.2 区存在意义不明的变异。在 2 个病例中检测到了大的拷贝中性杂合性缺失带,占基因组的 10%以上。结论Array-CGH 是一种高通量、快速的工具,可对一些原因不明的 ID/DD 儿童进行病因诊断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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