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采用全基因组阵列比较基因组杂交技术检测智力发育迟缓儿童的亚显微染色体失衡

Whole-genome array-CGH for detection of submicroscopic chromosomal imbalances in children with mental retardation.

作者信息

Thuresson A-C, Bondeson M-L, Edeby C, Ellis P, Langford C, Dumanski J P, Annerén G

机构信息

Department of Genetics and Pathology, Rudbeck Laboratory, Uppsala University, Uppsala, Sweden.

出版信息

Cytogenet Genome Res. 2007;118(1):1-7. doi: 10.1159/000106434.


DOI:10.1159/000106434
PMID:17901693
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2874679/
Abstract

Chromosomal imbalances are the major cause of mental retardation (MR). Many of these imbalances are caused by submicroscopic deletions or duplications not detected by conventional cytogenetic methods. Microarray-based comparative genomic hybridization (array-CGH) is considered to be superior for the investigation of chromosomal aberrations in children with MR, and has been demonstrated to improve the diagnostic detection rate of these small chromosomal abnormalities. In this study we used 1 Mb genome-wide array-CGH to screen 48 children with MR and congenital malformations for submicroscopic chromosomal imbalances, where the underlying cause was unknown. All children were clinically investigated and subtelomere FISH analysis had been performed in all cases. Suspected microdeletion syndromes such as deletion 22q11.2, Williams-Beuren and Angelman syndromes were excluded before array-CGH analysis was performed. We identified de novo interstitial chromosomal imbalances in two patients (4%), and an interstitial deletion inherited from an affected mother in one patient (2%). In another two of the children (4%), suspected imbalances were detected but were also found in one of the non-affected parents. The yield of identified de novo alterations detected in this study is somewhat less than previously described, and might reflect the importance of which selection criterion of patients to be used before array-CGH analysis is performed. However, array-CGH proved to be a high-quality and reliable tool for genome-wide screening of MR patients of unknown etiology.

摘要

染色体失衡是智力迟钝(MR)的主要原因。这些失衡中有许多是由传统细胞遗传学方法无法检测到的亚显微缺失或重复引起的。基于微阵列的比较基因组杂交(array-CGH)被认为在研究患有MR的儿童的染色体畸变方面具有优势,并且已被证明可以提高这些小染色体异常的诊断检出率。在本研究中,我们使用1 Mb全基因组array-CGH对48例患有MR和先天性畸形且病因不明的儿童进行亚显微染色体失衡筛查。所有儿童均接受了临床检查,并且所有病例均进行了端粒荧光原位杂交(FISH)分析。在进行array-CGH分析之前,排除了疑似微缺失综合征,如22q11.2缺失、威廉姆斯-博伦综合征和安吉尔曼综合征。我们在两名患者(4%)中发现了新发的间质染色体失衡,在一名患者(2%)中发现了从患病母亲遗传而来的间质缺失。在另外两名儿童(4%)中,检测到疑似失衡,但在一名未受影响的父母中也发现了同样的情况。本研究中检测到的新发改变的检出率略低于先前描述的,这可能反映了在进行array-CGH分析之前选择患者的标准的重要性。然而,array-CGH被证明是一种用于对病因不明的MR患者进行全基因组筛查的高质量且可靠的工具。

相似文献

[1]
Whole-genome array-CGH for detection of submicroscopic chromosomal imbalances in children with mental retardation.

Cytogenet Genome Res. 2007

[2]
Detection of chromosomal imbalances in children with idiopathic mental retardation by array based comparative genomic hybridisation (array-CGH).

J Med Genet. 2005-9

[3]
Emerging patterns of cryptic chromosomal imbalance in patients with idiopathic mental retardation and multiple congenital anomalies: a new series of 140 patients and review of published reports.

J Med Genet. 2006-8

[4]
Identification of chromosome abnormalities in subtelomeric regions by microarray analysis: a study of 5,380 cases.

Am J Med Genet A. 2008-9-1

[5]
Analysis of chromosomal aberrations in patients with mental retardation using the array-CGH technique: a single Czech centre experience.

Folia Biol (Praha). 2011

[6]
Whole-genome array-CGH identifies novel contiguous gene deletions and duplications associated with developmental delay, mental retardation, and dysmorphic features.

Am J Med Genet A. 2007-7-1

[7]
An oligonucleotide based array-CGH system for detection of genome wide copy number changes including subtelomeric regions for genetic evaluation of mental retardation.

Am J Med Genet A. 2007-4-15

[8]
[Genomic abnormalities in children with mental retardation and autism: the use of comparative genomic hybridization in situ (HRCGH) and molecular karyotyping with DNA-microchips (array CGH)].

Zh Nevrol Psikhiatr Im S S Korsakova. 2013

[9]
Application of array-based comparative genome hybridization in children with developmental delay or mental retardation.

Pediatr Neonatol. 2008-12

[10]
Identification of De Novo and Rare Inherited Copy Number Variants in Children with Syndromic Congenital Heart Defects.

Pediatr Cardiol. 2018-6

引用本文的文献

[1]
Perspective: DNA Copy Number Variations in Cardiovascular Diseases.

Epigenet Insights. 2018-12-12

[2]
Screening for Subtelomeric Rearrangements in Thai Patients with Intellectual Disabilities Using FISH and Review of Literature on Subtelomeric FISH in 15,591 Cases with Intellectual Disabilities.

Genet Res Int. 2016

[3]
A case of isodicentric chromosome 15 presented with epilepsy and developmental delay.

Korean J Pediatr. 2012-12

[4]
Intellectual disability, oncogenes and tumour suppressor genes: the way forward?

J Genet. 2012-8

[5]
Genomic and clinical characteristics of six patients with partially overlapping interstitial deletions at 10p12p11.

Eur J Hum Genet. 2011-4-27

[6]
Interstitial Deletions at 6q14.1-q15 Associated with Obesity, Developmental Delay and a Distinct Clinical Phenotype.

Mol Syndromol. 2010

[7]
Consensus statement: chromosomal microarray is a first-tier clinical diagnostic test for individuals with developmental disabilities or congenital anomalies.

Am J Hum Genet. 2010-5-14

[8]
Unambiguous molecular detections with multiple genetic approach for the complicated chromosome 22q11 deletion syndrome.

BMC Med Genet. 2009-2-25

本文引用的文献

[1]
Global variation in copy number in the human genome.

Nature. 2006-11-23

[2]
Oligonucleotide microarray analysis of genomic imbalance in children with mental retardation.

Am J Hum Genet. 2006-9

[3]
Targeted genomic microarray analysis for identification of chromosome abnormalities in 1500 consecutive clinical cases.

J Pediatr. 2006-7

[4]
Clinical and molecular characterization of individuals with 18p deletion: a genotype-phenotype correlation.

Am J Med Genet A. 2006-6-1

[5]
Emerging patterns of cryptic chromosomal imbalance in patients with idiopathic mental retardation and multiple congenital anomalies: a new series of 140 patients and review of published reports.

J Med Genet. 2006-8

[6]
Common deletion polymorphisms in the human genome.

Nat Genet. 2006-1

[7]
A high-resolution survey of deletion polymorphism in the human genome.

Nat Genet. 2006-1

[8]
Submicroscopic deletions and duplications in individuals with intellectual disability detected by array-CGH.

Am J Med Genet A. 2005-12-15

[9]
Diagnostic genome profiling in mental retardation.

Am J Hum Genet. 2005-10

[10]
Detection of chromosomal imbalances in children with idiopathic mental retardation by array based comparative genomic hybridisation (array-CGH).

J Med Genet. 2005-9

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