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Next generation sequencing (NGS)-based approach to diagnosing Algerian patients with suspected inborn errors of immunity (IEIs)
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Next generation sequencing (NGS)-based approach to diagnosing Algerian patients with suspected inborn errors of immunity (IEIs)

Xiao Peng, Moudjahed Saleh Al-Ddafari, Andrés Caballero-Oteyza, Chahrazed El Mezouar, Pavla Mrovecova, Saad Eddin Dib, Zoheir Massen, Mohammed Chems-Eddine Smahi, Faiza Alddafari, Rafik Terki Hassaïne, …
Clinical Immunology, Vol.256
11/2023
PMID: 37678716

Résumé

Molecular medicine Next-generation sequencing Penetrance Targeted gene panels Variant classification Inborn errors of immunity Genetic paradigms Expressivity Diversity Ancestry Humans High-Throughput Nucleotide Sequencing Genomics Exome Sequencing
The advent of next-generation sequencing (NGS) technologies has greatly expanded our understanding of both the clinical spectra and genetic landscape of inborn errors of immunity (IEIs). Endogamous populations may be enriched for unique, ancestry-specific disease-causing variants, a consideration that significantly impacts molecular testing and analysis strategies. Herein, we report on the application of a 2-step NGS-based testing approach beginning with targeted gene panels (TGPs) tailored to specific IEI subtypes and reflexing to whole exome sequencing (WES) if negative for Northwest Algerian patients with suspected IEIs. Our overall diagnostic yield of 57% is comparable to others broadly applying short-read NGS to IEI detection, but data from our localized cohort show some similarities and differences from NGS studies performed on larger regional IEI cohorts. This suggests the importance of tailoring diagnostic strategies to local demographics and needs, but also highlights ongoing concerns inherent to the application of genomics for clinical IEI diagnostics.

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