Aug 2026· Annals of Medicine and Surgery· Vol 88, pp. 5612 - 5619· 0 citations· 26 references
Medicine
TL;DR
Functional analysis of all 65 variants revealed that ion channel genes and neurodevelopmental genes were the most frequently affected categories, and whole-exome sequencing identified clinically relevant genetic findings in a subset of Southeast Chinese children with seizure disorders.
Abstract
Background: Pediatric seizure disorders are clinically and genetically heterogeneous. Whole-exome sequencing has improved the detection of rare genetic variants in childhood epilepsy; however, data from pediatric populations in Southeast China remain limited. This study aimed to characterize the genetic landscape of pediatric seizure disorders in Southeast China and to evaluate the clinical diagnostic yield of whole-exome sequencing. Materials and methods: This retrospective observational study included 21 pediatric patients with seizure disorders who were recruited at the Fifth Hospital of Xiamen, Fujian, China, between January 2021 and June 2024. Clinical data were extracted from medical records. Whole-exome sequencing was performed on DNA extracted from peripheral blood. Sequence variants were annotated, filtered, and classified according to the guidelines of the American College of Medical Genetics and Genomics and the Association for Molecular Pathology. Copy-number variants were evaluated using exome-based algorithms. Descriptive statistics were used because of the limited sample size. Results: WES identified three clinically relevant, likely pathogenic findings in 3 of 21 patients, corresponding to a provisional diagnostic yield of 14.3%. The remaining 62 of 65 variants were of uncertain significance (VUS). The three retained variants included a GLI3 frameshift variant (exon 2: c.90_91insCAGATGTGAGC; p.Glu31Glnfs*3) and two copy-number variants (16p13.12-16p13.11 duplication and Xp22.31 deletion) with established clinical significance. Functional analysis of all 65 variants revealed that ion channel genes and neurodevelopmental genes were the most frequently affected categories. Conclusion: Whole-exome sequencing identified clinically relevant genetic findings in a subset of Southeast Chinese children with seizure disorders. The novel GLI3 frameshift variant may suggest an expansion of the GLI3-associated phenotypic spectrum, but further segregation, functional validation, and larger cohort studies are needed. The high proportion of variants of uncertain significance highlights the ongoing challenges of genetic interpretation in pediatric seizure disorders.
WES can yield a definitive genetic diagnosis in a subset of patients, enabling individualized management, facilitating genetic counseling, and reducing the need for further diagnostic investigations.
E. S. Herini, A. Triono, K. Iskandar et al.· Neurogenetics· 0 citations
BACKGROUND
Genomic testing has increasingly contributed to the diagnosis and management of pediatric drug-resistant epilepsy (DRE), particularly in patients with suspected genetic etiologies. This study evaluated the diagnostic yield and real- world clinical utility of whole-exome sequencing (WES) in children with DRE....
Chanikhan Sattaporn, Apasri Lusawat, Panisra Sudachan et al.· Brain & development (Tokyo....· 0 citations
The identification of novel variants enhances molecular understanding and facilitates more precise genotype-phenotype correlations, reinforcing the value of comprehensive genomic diagnostics in epilepsy management and demonstrating the clinical utility of gene panels and WES in complex phenotypes.
Renata Szalai, Á. Till, Krisztina Galimurka et al.· Human Genetics· 0 citations
Dual molecular diagnoses, defined as the coexistence of pathogenic variants in two distinct disease-causing genes, challenge the traditional single-gene model of Mendelian inheritance. With the advent of whole-exome sequencing (WES), such complex genotypes are increasingly recognized. To investigate the clinical and ge...
Min-Jun Zhao, Fu-Wei Li, Xiang-Peng Lu et al.· Orphanet Journal of Rare Dis...· 0 citations
This study expands the spectrum of pathogenic CTCF variants in the Chinese population and underscores the marked phenotypic heterogeneity of CTCF-related disorders, ranging from benign developmental outcomes with complete catch-up to severe neonatal multisystem involvement.
Juan Du, Muhan Li, Ai-Min Liang et al.· Genes· 0 citations
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