4.5 Article

The combination of whole-exome sequencing and copy number variation sequencing enables the diagnosis of rare neurological disorders

期刊

CLINICAL GENETICS
卷 96, 期 2, 页码 140-150

出版社

WILEY
DOI: 10.1111/cge.13548

关键词

copy number variation sequencing; diagnostic yield; neurological disorders; targeted next-generation sequencing panels; whole-exome sequencing

资金

  1. Futang Children's Science Foundation Project [FTCSF-2018-5]
  2. Initial Scientific Research Fund for High-Level Talents of Chengde Medical University [201901]
  3. National Key Research and Development Program of China [2016YFC1306202]

向作者/读者索取更多资源

This retrospective study aims to investigate the diagnostic yields of multiple strategies of next-generation sequencing (NGS) for children with rare neurological disorders (NDs). A total of 220 pediatric patients with NDs who visited our hospital between Jan 2017 and Dec 2018 and had undergone NGS were included. Most patients were 5 years old or younger, and the number of patients visiting the hospital decreased with age. Seizures were the most common symptom in this cohort. The positive rates for targeted NGS panels (Panel), whole-exome sequencing (WES), and copy number variation sequencing (CNVseq) were 26.5% (9/34), 36.6% (63/172), and 16.7% (22/132), respectively. The positive rate for patients undergoing a combination of WES and CNVseq (WES + CNVseq) was 47.8% (54/113), which was significantly better than the positive rate for patients who underwent WES alone (32.7%, 37/113). A total of 83 variants were found in 42 genes, and SCN1A was the most frequently mutanted gene. Twenty-four CNVs were identified in 22 patients: two CNVs were inherited from the mother; 12 CNVs were de novo; and the CNV origins could not be determined in 10 patients. WES + CNVseq may potentially be the mostly effective NGS approach for diagnosis of rare NDs in pediatric patients.

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