4.5 Article

Evaluation of chromosomal abnormalities and copy number variations in fetuses with ultrasonic soft markers

期刊

BMC MEDICAL GENOMICS
卷 14, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12920-021-00870-w

关键词

Single nucleotide polymorphism array analysis; Ultrasonic soft markers; Copy number variations; Fetus

资金

  1. Fujian Provincial Natural Science Foundation [2017J01238]

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This study aimed to evaluate the genetic etiology and clinical value of chromosomal abnormalities and copy number variations (CNVs) in fetuses with ultrasonic soft markers. It found a considerable proportion of chromosomal abnormalities and abnormal CNVs in these fetuses, with the SNP array fully complementing conventional karyotyping and improving the detection rate of chromosomal abnormalities.
Background Some ultrasonic soft markers can be found during ultrasound examination. However, the etiology of the fetuses with ultrasonic soft markers is still unknown. This study aimed to evaluate the genetic etiology and clinical value of chromosomal abnormalities and copy number variations (CNVs) in fetuses with ultrasonic soft markers. Methods Among 1131 fetuses, 729 had single ultrasonic soft marker, 322 had two ultrasonic soft markers, and 80 had three or more ultrasonic soft markers. All fetuses underwent conventional karyotyping, followed by single nucleotide polymorphism (SNP) array analysis. Results Among 1131 fetuses with ultrasonic soft markers, 46 had chromosomal abnormalities. In addition to the 46 fetuses with chromosomal abnormalities consistent with the results of the karyotyping analysis, the SNP array identified additional 6.1% (69/1131) abnormal CNVs. The rate of abnormal CNVs in fetuses with ultrasonic soft marker, two ultrasonic soft markers, three or more ultrasonic soft markers were 6.2%, 6.2%, and 5.0%, respectively. No significant difference was found in the rate of abnormal CNVs among the groups. Conclusions Genetic abnormalities affect obstetrical outcomes. The SNP array can fully complement conventional karyotyping in fetuses with ultrasonic soft markers, improve detection rate of chromosomal abnormalities, and affect pregnancy outcomes.

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