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Simultaneous Detection of CNVs and SNVs Improves the Diagnostic Yield of Fetuses with Ultrasound Anomalies and Normal Karyotypes

The routine assessment to determine the genetic etiology for fetal ultrasound anomalies follows a sequential approach, which usually takes about 6–8 weeks turnaround time (TAT). We evaluated the clinical utility of simultaneous detection of copy number variations (CNVs) and single nucleotide variant...

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Autores principales: Qi, Qingwei, Jiang, Yulin, Zhou, Xiya, Meng, Hua, Hao, Na, Chang, Jiazhen, Bai, Junjie, Wang, Chunli, Wang, Mingming, Guo, Jiangshan, Ouyang, Yunshu, Xu, Zhonghui, Xiao, Mengsu, Zhang, Victor Wei, Liu, Juntao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7759943/
https://www.ncbi.nlm.nih.gov/pubmed/33255631
http://dx.doi.org/10.3390/genes11121397
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author Qi, Qingwei
Jiang, Yulin
Zhou, Xiya
Meng, Hua
Hao, Na
Chang, Jiazhen
Bai, Junjie
Wang, Chunli
Wang, Mingming
Guo, Jiangshan
Ouyang, Yunshu
Xu, Zhonghui
Xiao, Mengsu
Zhang, Victor Wei
Liu, Juntao
author_facet Qi, Qingwei
Jiang, Yulin
Zhou, Xiya
Meng, Hua
Hao, Na
Chang, Jiazhen
Bai, Junjie
Wang, Chunli
Wang, Mingming
Guo, Jiangshan
Ouyang, Yunshu
Xu, Zhonghui
Xiao, Mengsu
Zhang, Victor Wei
Liu, Juntao
author_sort Qi, Qingwei
collection PubMed
description The routine assessment to determine the genetic etiology for fetal ultrasound anomalies follows a sequential approach, which usually takes about 6–8 weeks turnaround time (TAT). We evaluated the clinical utility of simultaneous detection of copy number variations (CNVs) and single nucleotide variants (SNVs)/small insertion-deletions (indels) in fetuses with a normal karyotype with ultrasound anomalies. We performed CNV detection by chromosomal microarray analysis (CMA) or low pass CNV-sequencing (CNV-seq), and in parallel SNVs/indels detection by trio-based clinical exome sequencing (CES) or whole exome sequencing (WES). Eight-three singleton pregnancies with a normal fetal karyotype were enrolled in this prospective observational study. Pathogenic or likely pathogenic variations were identified in 30 cases (CNVs in 3 cases, SNVs/indels in 27 cases), indicating an overall molecular diagnostic rate of 36.1% (30/83). Two cases had both a CNV of uncertain significance (VOUS) and likely pathogenic SNV, and one case carried both a VOUS CNV and an SNV. We demonstrated that simultaneous analysis of CNVs and SNVs/indels can improve the diagnostic yield of prenatal diagnosis with shortened reporting time, namely, 2–3 weeks. Due to the relatively long TAT for sequential procedure for prenatal genetic diagnosis, as well as recent sequencing technology advancements, it is clinically necessary to consider the simultaneous evaluation of CNVs and SNVs/indels to enhance the diagnostic yield and timely TAT, especially for cases in the late second trimester or third trimester.
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spelling pubmed-77599432020-12-26 Simultaneous Detection of CNVs and SNVs Improves the Diagnostic Yield of Fetuses with Ultrasound Anomalies and Normal Karyotypes Qi, Qingwei Jiang, Yulin Zhou, Xiya Meng, Hua Hao, Na Chang, Jiazhen Bai, Junjie Wang, Chunli Wang, Mingming Guo, Jiangshan Ouyang, Yunshu Xu, Zhonghui Xiao, Mengsu Zhang, Victor Wei Liu, Juntao Genes (Basel) Article The routine assessment to determine the genetic etiology for fetal ultrasound anomalies follows a sequential approach, which usually takes about 6–8 weeks turnaround time (TAT). We evaluated the clinical utility of simultaneous detection of copy number variations (CNVs) and single nucleotide variants (SNVs)/small insertion-deletions (indels) in fetuses with a normal karyotype with ultrasound anomalies. We performed CNV detection by chromosomal microarray analysis (CMA) or low pass CNV-sequencing (CNV-seq), and in parallel SNVs/indels detection by trio-based clinical exome sequencing (CES) or whole exome sequencing (WES). Eight-three singleton pregnancies with a normal fetal karyotype were enrolled in this prospective observational study. Pathogenic or likely pathogenic variations were identified in 30 cases (CNVs in 3 cases, SNVs/indels in 27 cases), indicating an overall molecular diagnostic rate of 36.1% (30/83). Two cases had both a CNV of uncertain significance (VOUS) and likely pathogenic SNV, and one case carried both a VOUS CNV and an SNV. We demonstrated that simultaneous analysis of CNVs and SNVs/indels can improve the diagnostic yield of prenatal diagnosis with shortened reporting time, namely, 2–3 weeks. Due to the relatively long TAT for sequential procedure for prenatal genetic diagnosis, as well as recent sequencing technology advancements, it is clinically necessary to consider the simultaneous evaluation of CNVs and SNVs/indels to enhance the diagnostic yield and timely TAT, especially for cases in the late second trimester or third trimester. MDPI 2020-11-25 /pmc/articles/PMC7759943/ /pubmed/33255631 http://dx.doi.org/10.3390/genes11121397 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Qi, Qingwei
Jiang, Yulin
Zhou, Xiya
Meng, Hua
Hao, Na
Chang, Jiazhen
Bai, Junjie
Wang, Chunli
Wang, Mingming
Guo, Jiangshan
Ouyang, Yunshu
Xu, Zhonghui
Xiao, Mengsu
Zhang, Victor Wei
Liu, Juntao
Simultaneous Detection of CNVs and SNVs Improves the Diagnostic Yield of Fetuses with Ultrasound Anomalies and Normal Karyotypes
title Simultaneous Detection of CNVs and SNVs Improves the Diagnostic Yield of Fetuses with Ultrasound Anomalies and Normal Karyotypes
title_full Simultaneous Detection of CNVs and SNVs Improves the Diagnostic Yield of Fetuses with Ultrasound Anomalies and Normal Karyotypes
title_fullStr Simultaneous Detection of CNVs and SNVs Improves the Diagnostic Yield of Fetuses with Ultrasound Anomalies and Normal Karyotypes
title_full_unstemmed Simultaneous Detection of CNVs and SNVs Improves the Diagnostic Yield of Fetuses with Ultrasound Anomalies and Normal Karyotypes
title_short Simultaneous Detection of CNVs and SNVs Improves the Diagnostic Yield of Fetuses with Ultrasound Anomalies and Normal Karyotypes
title_sort simultaneous detection of cnvs and snvs improves the diagnostic yield of fetuses with ultrasound anomalies and normal karyotypes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7759943/
https://www.ncbi.nlm.nih.gov/pubmed/33255631
http://dx.doi.org/10.3390/genes11121397
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