TY - JOUR
T1 - Study of pathophysiology and molecular characterization of congenital anemia in India using targeted next-generation sequencing approach
AU - Kedar, Prabhakar S.
AU - Harigae, Hideo
AU - Ito, Etsuro
AU - Muramatsu, Hideki
AU - Kojima, Seiji
AU - Okuno, Yusuke
AU - Fujiwara, Tohru
AU - Dongerdiye, Rashmi
AU - Warang, Prashant P.
AU - Madkaikar, Manisha R.
N1 - Funding Information:
This study has been partially supported by a Research Grant of the Indian Council of Medical Research (ICMR) New Delhi. We would like to thank all the patients and their parents for participating in this study and also all clinicians for referral of patients for this study.
Funding Information:
This project was undertaken under the Indo-Japan cooperative program. This study was supported by the Department of Science and Technology (DST) Govt. of India and Japan Society of Promotion of Science (JSPS) Tokyo Japan (Grant No.: DST/INT/JSPS/P-225/2016).
Publisher Copyright:
© 2019, Japanese Society of Hematology.
PY - 2019/11/1
Y1 - 2019/11/1
N2 - Most patients with anemia are diagnosed through clinical phenotype and basic laboratory testing. Nonetheless, in cases of rare congenital anemias, some patients remain undiagnosed despite undergoing an exhaustive workup. Genetic testing is complicated by the large number of genes that are involved in rare anemias, due to similarities in the clinical presentation. We sought to enhance the diagnosis of patients with congenital anemias by using targeted next-generation sequencing. The genetic diagnosis was performed by gene capture followed by next-generation sequencing of 76 genes known to cause anemia syndromes. Genetic diagnosis was achieved in 17 of 21 transfusion-dependent patients and undiagnosed by conventional workup. Four cases were diagnosed with red cell membrane protein defects, four patients were diagnosed with pyruvate kinase deficiency, one case of adenylate kinase deficiency, one case of glucose phosphate isomerase deficiency, one case of hereditary xerocytosis, three cases having combined membrane and enzyme defect, two cases with Diamond–Blackfan anemia (DBA) and 1 with CDA type II with 26 different mutations, of which 21 are novel. Earlier incorporation of this NGS method into the workup of patients with congenital anemia may improve patient care and enable genetic counselling.
AB - Most patients with anemia are diagnosed through clinical phenotype and basic laboratory testing. Nonetheless, in cases of rare congenital anemias, some patients remain undiagnosed despite undergoing an exhaustive workup. Genetic testing is complicated by the large number of genes that are involved in rare anemias, due to similarities in the clinical presentation. We sought to enhance the diagnosis of patients with congenital anemias by using targeted next-generation sequencing. The genetic diagnosis was performed by gene capture followed by next-generation sequencing of 76 genes known to cause anemia syndromes. Genetic diagnosis was achieved in 17 of 21 transfusion-dependent patients and undiagnosed by conventional workup. Four cases were diagnosed with red cell membrane protein defects, four patients were diagnosed with pyruvate kinase deficiency, one case of adenylate kinase deficiency, one case of glucose phosphate isomerase deficiency, one case of hereditary xerocytosis, three cases having combined membrane and enzyme defect, two cases with Diamond–Blackfan anemia (DBA) and 1 with CDA type II with 26 different mutations, of which 21 are novel. Earlier incorporation of this NGS method into the workup of patients with congenital anemia may improve patient care and enable genetic counselling.
KW - Congenital anemia
KW - Erythroenzymopathies
KW - India
KW - Membranopathies
KW - Molecular genetics
KW - Next-generation sequencing
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U2 - 10.1007/s12185-019-02716-9
DO - 10.1007/s12185-019-02716-9
M3 - Article
C2 - 31401766
AN - SCOPUS:85070606699
SN - 0925-5710
VL - 110
SP - 618
EP - 626
JO - International Journal of Hematology
JF - International Journal of Hematology
IS - 5
ER -