Clinical features and genetic analysis of 471 cases of fetal congenital heart disease

被引:0
作者
Quan, Yulu [1 ,2 ]
Luo, Yan [2 ]
Li, Juan [2 ]
Wang, Tao [3 ]
Zhang, Pingping [2 ]
Li, Yali [2 ]
机构
[1] Eighth Med Ctr Gen Hosp PLA, Dept Obstet & Gynecol, Beijing, Peoples R China
[2] Hebei Gen Hosp, Dept Reprod & Genet, Shijiazhuang, Hebei Province, Peoples R China
[3] Second Peoples Hosp Liaocheng, Dept Reprod Endocrinol, Liaocheng, Shandong Provin, Peoples R China
关键词
Congenital heart defect; Copy number variation sequencing; Single-nucleotide polymorphism-based chromosomal microarrays; Prenatal diagnosis; Chromosome abnormality; CHROMOSOMAL-ABNORMALITIES; ECHOCARDIOGRAPHY; SPECTRUM; DEFECTS;
D O I
10.1186/s12884-024-06978-y
中图分类号
R71 [妇产科学];
学科分类号
100211 ;
摘要
BackgroundCongenital heart disease (CHD) is a heterogeneous collection of structural abnormalities of the heart or great vessels that are present at birth. These birth defects are one of the leading causes of infant mortality and morbidity worldwide. The etiology and pathogenesis of CHD are unclear and largely considered to be multifactorial in nature. Since the chromosomal profile of CHD has not been analyzed in a large sample size, we aimed to summarize the clinical features, cytogenetics findings, and pregnancy outcomes of CHD to provide a clinical reference for prenatal diagnosis.MethodsAmong 21,152 pregnant women, 471 (2.23%) showed fetal CHD on cordocentesis or amniocentesis. The number of cases showing simple CHD, simple CHD with concomitant extracardiac structural abnormalities, complex CHD, and complex CHD with concomitant extracardiac structural abnormalities was 128, 124, 89, and 130, respectively. For prenatal genetic diagnosis, karyotyping was performed with single-nucleotide polymorphism array(SNP-array)-based chromosomal microarrays, fluorescence in situ hybridization (FISH), copy number variation sequencing (CNV-seq), and BACs-on-Beads (TM) (BoBs) analyses. The results of ultrasonography examinations, genetic analyses, and pregnancy outcomes were recorded in detail.ResultsVentricular septal defects (VSDs) were observed in 245 (52.02%) cases of fetal CHD. Among the 471 cases of CHD, 258 (54.78%) showed other ultrasound abnormalities. The most common ultrasound abnormalities were abnormalities of the central nervous system. The 471 cases included 93 (19.75%) cases showing chromosomal abnormalities, and the incidence of these abnormalities increased with advanced maternal age or the presence of other ultrasound abnormalities. In eight cases, karyotype analysis showed normal results while SNP-array or CNV-seq results were abnormal. Among the 453 cases that were followed up, 166 (36.64%) involved pregnancy termination, 273 (60.26%) involved live births, 7 (1.55%) involved fetal death in utero, and 7 (1.55%) involved neonatal death after birth.ConclusionsFetuses with CHD showed higher rates of chromosomal abnormalities. In cases diagnosed with fetal CHD during fetal ultrasonic examination, the mothers should undergo a careful and comprehensive fetal ultrasound scan as well as prenatal genetic testing, including karyotype analysis and SNP-array or CNV-sequencing. The prognosis for simple fetal CHD is good, while the prognosis for complex fetal CHD and extracardiac anomalies is poor.
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页数:12
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共 26 条
  • [1] American Institute of Ultrasound in Medicine, 2013, J Ultrasound Med, V32, P1083, DOI 10.7863/ultra.32.6.1083
  • [2] Bernier Pierre-Luc, 2010, Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu, V13, P26, DOI 10.1053/j.pcsu.2010.02.005
  • [3] First-trimester nuchal translucency measurement and echocardiography at 16 to 18 weeks of gestation in prenatal detection for trisomy 18
    Cheng, PJ
    Liu, CM
    Chueh, HY
    Lin, CM
    Soong, YK
    [J]. PRENATAL DIAGNOSIS, 2003, 23 (03) : 248 - 251
  • [4] A rare cardiac phenotype of dextrocardia observed in a fetus with 1p36 deletion syndrome and a balanced translocation: a prenatal case report
    Gao, Li
    Zhang, Junyu
    Han, Xu
    Hu, Wenjing
    Sun, Jinling
    Tan, Yuru
    Zhao, Xinrong
    Hua, Renyi
    Wang, Shan
    Zhang, Yan
    Wang, Yanlin
    Wu, Yi
    [J]. MOLECULAR CYTOGENETICS, 2020, 13 (01)
  • [5] Chromosome microarray testing for patients with congenital heart defects reveals novel disease causing loci and high diagnostic yield
    Geng, Juan
    Picker, Jonathan
    Zheng, Zhaojing
    Zhang, Xiaoqing
    Wang, Jian
    Hisama, Fuki
    Brown, David W.
    Mullen, Mary P.
    Harris, David
    Stoler, Joan
    Seman, Ann
    Miller, David T.
    Fu, Qihua
    Roberts, Amy E.
    Shen, Yiping
    [J]. BMC GENOMICS, 2014, 15
  • [6] The Contribution of Chromosomal Abnormalities to Congenital Heart Defects: A Population-Based Study
    Hartman, Robert J.
    Rasmussen, Sonja A.
    Botto, Lorenzo D.
    Riehle-Colarusso, Tiffany
    Martin, Christa L.
    Cragan, Janet D.
    Shin, Mikyong
    Correa, Adolfo
    [J]. PEDIATRIC CARDIOLOGY, 2011, 32 (08) : 1147 - 1157
  • [7] Genome Arrays for the Detection of Copy Number Variations in Idiopathic Mental Retardation, Idiopathic Generalized Epilepsy and Neuropsychiatric Disorders: Lessons for Diagnostic Workflow and Research
    Hochstenbach, R.
    Buizer-Voskamp, J. E.
    Vorstman, J. A. S.
    Ophoff, R. A.
    [J]. CYTOGENETIC AND GENOME RESEARCH, 2011, 135 (3-4) : 174 - 202
  • [8] The incidence of congenital heart disease
    Hoffman, JIE
    Kaplan, S
    [J]. JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2002, 39 (12) : 1890 - 1900
  • [9] Noninherited risk factors and congenital cardiovascular defects: Current knowledge a scientific statement from the American Heart Association Council on cardiovascular disease in the young
    Jenkins, Kathy J.
    Correa, Adolfo
    Feinstein, Jeffrey A.
    Botto, Lorenzo
    Britt, Amy E.
    Daniels, Stephen R.
    Elixson, Marsha
    Warnes, Carole A.
    Webb, Catherine L.
    [J]. CIRCULATION, 2007, 115 (23) : 2995 - 3014
  • [10] Contribution of rare inherited and de novo variants in 2,871 congenital heart disease probands
    Jin, Sheng Chih
    Homsy, Jason
    Zaidi, Samir
    Lu, Qiongshi
    Morton, Sarah
    DePalma, Steven R.
    Zeng, Xue
    Qi, Hongjian
    Chang, Weni
    Sierant, Michael C.
    Hung, Wei-Chien
    Haider, Shozeb
    Zhang, Junhui
    Knight, James
    Bjornson, Robert D.
    Castaldi, Christopher
    Tikhonoa, Irina R.
    Bilguvar, Kaya
    Mane, Shrikant M.
    Sanders, Stephan J.
    Mital, Seema
    Russell, Mark W.
    Gaynor, J. William
    Deanfield, John
    Giardini, Alessandro
    Porter, George A., Jr.
    Srivastava, Deepak
    Lo, Cecelia W.
    Shen, Yufeng
    Watkins, W. Scott
    Yandell, Mark
    Yost, H. Joseph
    Tristani-Firouzi, Martin
    Newburger, Jane W.
    Roberts, Amy E.
    Kim, Richard
    Zhao, Hongyu
    Kaltman, Jonathan R.
    Goldmuntz, Elizabeth
    Chung, Wendy K.
    Seidman, Jonathan G.
    Gelb, Bruce D.
    Seidman, Christine E.
    Lifton, Richard P.
    Brueckner, Martina
    [J]. NATURE GENETICS, 2017, 49 (11) : 1593 - +