Exome sequencing for diagnosis of congenital hemolytic anemia

Author:

Mansour-Hendili LamisseORCID,Aissat Abdelrazak,Badaoui Bouchra,Sakka Mehdi,Gameiro Christine,Ortonne Valérie,Wagner-Ballon Orianne,Pissard Serge,Picard Véronique,Ghazal Khaldoun,Bahuau Michel,Guitton Corinne,Mansour Ziad,Duplan Mylène,Petit Arnaud,Costedoat-Chalumeau Nathalie,Michel Marc,Bartolucci Pablo,Moutereau Stéphane,Funalot Benoît,Galactéros Frédéric

Abstract

Abstract Background Congenital hemolytic anemia constitutes a heterogeneous group of rare genetic disorders of red blood cells. Diagnosis is based on clinical data, family history and phenotypic testing, genetic analyses being usually performed as a late step. In this study, we explored 40 patients with congenital hemolytic anemia by whole exome sequencing: 20 patients with hereditary spherocytosis and 20 patients with unexplained hemolysis. Results A probable genetic cause of disease was identified in 82.5% of the patients (33/40): 100% of those with suspected hereditary spherocytosis (20/20) and 65% of those with unexplained hemolysis (13/20). We found that several patients carried genetic variations in more than one gene (3/20 in the hereditary spherocytosis group, 6/13 fully elucidated patients in the unexplained hemolysis group), giving a more accurate picture of the genetic complexity of congenital hemolytic anemia. In addition, whole exome sequencing allowed us to identify genetic variants in non-congenital hemolytic anemia genes that explained part of the phenotype in 3 patients. Conclusion The rapid development of next generation sequencing has rendered the genetic study of these diseases much easier and cheaper. Whole exome sequencing in congenital hemolytic anemia could provide a more precise and quicker diagnosis, improve patients’ healthcare and probably has to be democratized notably for complex cases.

Publisher

Springer Science and Business Media LLC

Subject

Pharmacology (medical),Genetics(clinical),General Medicine

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