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先天性心脏病胎儿基因组单核苷酸多态性阵列对DNA拷贝数变异的产前诊断

Prenatal Diagnosis of DNA Copy Number Variations by Genomic Single-Nucleotide Polymorphism Array in Fetuses with Congenital Heart Defects.

作者信息

Tang Shaohua, Lv Jiaojiao, Chen Xiangnan, Bai Lili, Li Huanzheng, Chen Chong, Wang Ping, Xu Xueqin, Lu Jianxin

机构信息

Key Laboratory of Medical Genetics, School of Laboratory Medicine and Life Science, Wenzhou Medical University, Wenzhou, China.

出版信息

Fetal Diagn Ther. 2016;39(1):64-73. doi: 10.1159/000431320. Epub 2015 Jul 10.

Abstract

OBJECTIVES

To evaluate the usefulness of single-nucleotide polymorphism (SNP) array for prenatal genetic diagnosis of congenital heart defect (CHD), we used this approach to detect clinically significant copy number variants (CNVs) in fetuses with CHDs.

METHODS

A HumanCytoSNP-12 array was used to detect genomic samples obtained from 39 fetuses that exhibited cardiovascular abnormalities on ultrasound and had a normal karyotype. The relationship between CNVs and CHDs was identified by using genotype-phenotype comparisons and searching of chromosomal databases. All clinically significant CNVs were confirmed by real-time PCR.

RESULTS

CNVs were detected in 38/39 (97.4%) fetuses: variants of unknown significance were detected in 2/39 (5.1%), and clinically significant CNVs were identified in 7/39 (17.9%). In 3 of the 7 fetuses with clinically significant CNVs, 3 rare and previously undescribed CNVs were detected, and these CNVs encompassed the CHD candidate genes FLNA (Xq28 dup), BCOR (Xp11.4 dup), and RBL2 (16q12.2 del).

CONCLUSION

Compared with conventional cytogenetic genomics, SNP array analysis provides significantly improved detection of submicroscopic genomic aberrations in pregnancies with CHDs. Based on these results, we propose that genomic SNP array is an effective method which could be used in the prenatal diagnostic test to assist genetic counseling for pregnancies with CHDs.

摘要

目的

为评估单核苷酸多态性(SNP)芯片在先天性心脏病(CHD)产前基因诊断中的应用价值,我们采用该方法检测患有CHD胎儿中具有临床意义的拷贝数变异(CNV)。

方法

使用人类细胞SNP-12芯片检测从39例超声显示心血管异常且核型正常的胎儿获取的基因组样本。通过基因型-表型比较和染色体数据库检索确定CNV与CHD之间的关系。所有具有临床意义的CNV均通过实时PCR进行确认。

结果

在39例胎儿中的38例(97.4%)检测到CNV:在39例中的2例(5.1%)检测到意义未明的变异,在39例中的7例(17.9%)鉴定出具有临床意义的CNV。在7例具有临床意义的CNV的胎儿中,有3例检测到3种罕见且先前未描述的CNV,这些CNV包含CHD候选基因FLNA(Xq28重复)、BCOR(Xp11.4重复)和RBL2(16q12.2缺失)。

结论

与传统细胞遗传学基因组学相比,SNP芯片分析显著提高了对患有CHD妊娠中亚微观基因组畸变的检测。基于这些结果,我们提出基因组SNP芯片是一种有效的方法,可用于产前诊断检测,以协助对患有CHD的妊娠进行遗传咨询。

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