机构:[1]Department of Obstetrics, Kunming Maternal and Child Care Hospital, Kunming, Yunnan, China,[2]BSc(Hons) Biomedical Science, University of Bristol, Bristol, England,[3]Department of Reproductive Medicine, The First People’s Hospital of Yunnan Province, The Affiliated Hospital of Kunming University of Science and Technology, Kunming, Yunnan, China门急诊片生殖医学科云南省第一人民医院[4]National Health Commission Key Laboratory of Preconception Health Birth in Western China, Kunming, Yunnan, China
The aim of this study is to investigate the application performance of rapid copy number variation sequencing (rCNV-seq) technology for the detection of chromosomal abnormalities during prenatal diagnosis. Samples were collected from 424 pregnant women who were at high-risk for noninvasive prenatal screening in Kunming Maternal and Child Care Hospital from January 2018 to May 2022. rCNV-seq technique was used to detect fetal chromosome abnormalities and compare the results with that of chromosomal karyotype analysis. The Result showed that 330 (77.83%, 330/424) cases indicated chromosomal abnormalities among 424 high-risk pregnant women who underwent rCNV-seq. Moreover, 94 (22.17%, 94/424) cases were discovered to have copy number variations. Among the 330 fetuses with chromosomal abnormalities, common autosomal aneuploidy was observed in 203 cases (47.87%, 203/424) and sex chromosome aneuploidy was observed in 91 cases (21.46%, 91/424). Moreover, the abnormalities in multiple chromosomes were discovered in 33 cases (7.78%, 33/424), and the rare autosomal aneuploidy was observed in 3 cases (0.71%, 3/424). There were 63 fetuses (14.86%, 63/424) with pathogenic CNVs among the 94 fetuses with variable copy numbers. Of the 245 pregnant women who voluntarily selected G-band karyotyping, 1 fetus with copy number variation had normal karyotype results, and the remaining women were consistent with rCNV-seq. Our study revealed that rCNV-seq has higher accuracy in detecting common trisomy and can also detect chromosomal microdeletions or microduplications that cannot be detected by G-banding karyotype analysis. There is no effective treatment for chromosomal diseases, so it is particularly important to prevent chromosomal diseases through genetic counseling and prenatal diagnosis of chromosomal diseases.
基金:
Yunnan Basic Research Project-Youth Project
(202101BA070001-252, 202001BA070001-111), Health research project
of Kunming Health Commission (2020-01-03-011), Science and Technology
Department of Yunnan Province joint special project (202301AY070001-
227), Social development projects of Yunnan Province (202302AA310044),
Reproductive Obstetrics and Gynecology Clinical Center of Yunnan
Province(zx2019-01-01)
第一作者机构:[1]Department of Obstetrics, Kunming Maternal and Child Care Hospital, Kunming, Yunnan, China,
共同第一作者:
通讯作者:
推荐引用方式(GB/T 7714):
Su Hong,Liu Shengni,Xu Hongxia,et al.A rapid PCR-free next-generation sequencing method for comprehensive diagnosis of chromosome disease syndromes in prenatal samples[J].MEDICINE.2024,103(13):doi:10.1097/MD.0000000000037610.
APA:
Su, Hong,Liu, Shengni,Xu, Hongxia,Shen, Cuihua,Xu, Min...&Li, Dongyun.(2024).A rapid PCR-free next-generation sequencing method for comprehensive diagnosis of chromosome disease syndromes in prenatal samples.MEDICINE,103,(13)
MLA:
Su, Hong,et al."A rapid PCR-free next-generation sequencing method for comprehensive diagnosis of chromosome disease syndromes in prenatal samples".MEDICINE 103..13(2024)