Literature DB >> 33584815

Evaluating the Clinical Utility of Genome Sequencing for Cytogenetically Balanced Chromosomal Abnormalities in Prenatal Diagnosis.

Mullin Ho Chung Yu1, Jeffrey Fong Ting Chau1, Sandy Leung Kuen Au2, Hei Man Lo2, Kit San Yeung1, Jasmine Lee Fong Fung1, Christopher Chun Yu Mak1, Claudia Ching Yan Chung1, Kelvin Yuen Kwong Chan2,3,4, Brian Hon Yin Chung1, Anita Sik Yau Kan2,3,4.   

Abstract

Balanced chromosomal abnormalities (BCAs) are changes in the localization or orientation of a chromosomal segment without visible gain or loss of genetic material. BCAs occur at a frequency of 1 in 500 newborns and are associated with an increased risk of multiple congenital anomalies and/or neurodevelopmental disorders, especially if it is a de novo mutation. In this pilot project, we used short read genome sequencing (GS) to retrospectively re-sequence ten prenatal subjects with de novo BCAs and compared the performance of GS with the original karyotyping. GS characterized all BCAs found by conventional karyotyping with the added benefit of precise sub-band delineation. By identifying BCA breakpoints at the nucleotide level using GS, we found disruption of OMIM genes in three cases and identified cryptic gain/loss at the breakpoints in two cases. Of these five cases, four cases reached a definitive genetic diagnosis while the other one case had a BCA interpreted as unknown clinical significance. The additional information gained from GS can change the interpretation of the BCAs and has the potential to improve the genetic counseling and perinatal management by providing a more specific genetic diagnosis. This demonstrates the added clinical utility of using GS for the diagnosis of BCAs.
Copyright © 2021 Yu, Chau, Au, Lo, Yeung, Fung, Mak, Chung, Chan, Chung and Kan.

Entities:  

Keywords:  balanced chromosomal abnormalities; genome sequencing; karyotype; long read sequencing; prenatal diagnosis

Year:  2021        PMID: 33584815      PMCID: PMC7873444          DOI: 10.3389/fgene.2020.620162

Source DB:  PubMed          Journal:  Front Genet        ISSN: 1664-8021            Impact factor:   4.599


  34 in total

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7.  ACMG clinical laboratory standards for next-generation sequencing.

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8.  Technical standards for the interpretation and reporting of constitutional copy-number variants: a joint consensus recommendation of the American College of Medical Genetics and Genomics (ACMG) and the Clinical Genome Resource (ClinGen).

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10.  Cryptic deletions are a common finding in "balanced" reciprocal and complex chromosome rearrangements: a study of 59 patients.

Authors:  M De Gregori; R Ciccone; P Magini; T Pramparo; S Gimelli; J Messa; F Novara; A Vetro; E Rossi; P Maraschio; M C Bonaglia; C Anichini; G B Ferrero; M Silengo; E Fazzi; A Zatterale; R Fischetto; C Previderé; S Belli; A Turci; G Calabrese; F Bernardi; E Meneghelli; M Riegel; M Rocchi; S Guerneri; F Lalatta; L Zelante; C Romano; M Fichera; T Mattina; G Arrigo; M Zollino; S Giglio; F Lonardo; A Bonfante; A Ferlini; F Cifuentes; H Van Esch; L Backx; A Schinzel; J R Vermeesch; O Zuffardi
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Journal:  Front Genet       Date:  2022-08-08       Impact factor: 4.772

2.  Prenatal diagnosis of 21 fetuses with balanced chromosomal abnormalities (BCAs) using whole-genome sequencing.

Authors:  Fang Fu; Ru Li; Xiao Dang; Qiuxia Yu; Ke Xu; Weiyue Gu; Dan Wang; Xin Yang; Min Pan; Li Zhen; Yongling Zhang; Fatao Li; Xiangyi Jing; Fucheng Li; Dongzhi Li; Can Liao
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3.  Whole genome sequencing identifies a cryptic SOX9 regulatory element duplication underlying a case of 46,XX ovotesticular difference of sexual development.

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Review 4.  Molecular Approaches in Fetal Malformations, Dynamic Anomalies and Soft Markers: Diagnostic Rates and Challenges-Systematic Review of the Literature and Meta-Analysis.

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