TY - JOUR
T1 - Diagnostic high-throughput sequencing of 2396 patients with bleeding, thrombotic, and platelet disorders
AU - Downes, Kate
AU - Megy, Karyn
AU - Duarte, Daniel
AU - Vries, Minka
AU - Gebhart, Johanna
AU - Hofer, Stefanie
AU - Shamardina, Olga
AU - Deevi, Sri V.V.
AU - Stephens, Jonathan
AU - Mapeta, Rutendo
AU - Tuna, Salih
AU - Hasso, Namir Al
AU - Besser, Martin W.
AU - Cooper, Nichola
AU - Daugherty, Louise
AU - Gleadall, Nick
AU - Greene, Daniel
AU - Haimel, Matthias
AU - Martin, Howard
AU - Papadia, Sofia
AU - Revel-Vilk, Shoshana
AU - Sivapalaratnam, Suthesh
AU - Symington, Emily
AU - Thomas, Will
AU - Thys, Chantal
AU - Tolios, Alexander
AU - Penkett, Christopher J.
AU - BioResource, Nihr
AU - Ouwehand, Willem H.
AU - Abbs, Stephen
AU - Laffan, Michael A.
AU - Turro, Ernest
AU - Simeoni, Ilenia
AU - Mumford, Andrew D.
AU - Henskens, Yvonne M.C.
AU - Pabinger, Ingrid
AU - Gomez, Keith
AU - Freson, Kathleen
N1 - Publisher Copyright:
© 2019 by The American Society of Hematology
PY - 2019/12/5
Y1 - 2019/12/5
N2 - A targeted high-throughput sequencing (HTS) panel test for clinical diagnostics requires careful consideration of the inclusion of appropriate diagnostic-grade genes, the ability to detect multiple types of genomic variation with high levels of analytic sensitivity and reproducibility, and variant interpretation by a multidisciplinary team (MDT) in the context of the clinical phenotype. We have sequenced 2396 index patients using the ThromboGenomics HTS panel test of diagnostic-grade genes known to harbor variants associated with rare bleeding, thrombotic, or platelet disorders (BTPDs). The molecular diagnostic rate was determined by the clinical phenotype, with an overall rate of 49.2% for all thrombotic, coagulation, platelet count, and function disorder patients and a rate of 3.2% for patients with unexplained bleeding disorders characterized by normal hemostasis test results. The MDT classified 745 unique variants, including copy number variants (CNVs) and intronic variants, as pathogenic, likely pathogenic, or variants of uncertain significance. Half of these variants (50.9%) are novel and 41 unique variants were identified in 7 genes recently found to be implicated in BTPDs. Inspection of canonical hemostasis pathways identified 29 patients with evidence of oligogenic inheritance. A molecular diagnosis has been reported for 894 index patients providing evidence that introducing an HTS genetic test is a valuable addition to laboratory diagnostics in patients with a high likelihood of having an inherited BTPD.
AB - A targeted high-throughput sequencing (HTS) panel test for clinical diagnostics requires careful consideration of the inclusion of appropriate diagnostic-grade genes, the ability to detect multiple types of genomic variation with high levels of analytic sensitivity and reproducibility, and variant interpretation by a multidisciplinary team (MDT) in the context of the clinical phenotype. We have sequenced 2396 index patients using the ThromboGenomics HTS panel test of diagnostic-grade genes known to harbor variants associated with rare bleeding, thrombotic, or platelet disorders (BTPDs). The molecular diagnostic rate was determined by the clinical phenotype, with an overall rate of 49.2% for all thrombotic, coagulation, platelet count, and function disorder patients and a rate of 3.2% for patients with unexplained bleeding disorders characterized by normal hemostasis test results. The MDT classified 745 unique variants, including copy number variants (CNVs) and intronic variants, as pathogenic, likely pathogenic, or variants of uncertain significance. Half of these variants (50.9%) are novel and 41 unique variants were identified in 7 genes recently found to be implicated in BTPDs. Inspection of canonical hemostasis pathways identified 29 patients with evidence of oligogenic inheritance. A molecular diagnosis has been reported for 894 index patients providing evidence that introducing an HTS genetic test is a valuable addition to laboratory diagnostics in patients with a high likelihood of having an inherited BTPD.
UR - https://www.scopus.com/pages/publications/85075215538
U2 - 10.1182/blood.2018891192
DO - 10.1182/blood.2018891192
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C2 - 31064749
AN - SCOPUS:85075215538
SN - 0006-4971
VL - 134
SP - 2082
EP - 2091
JO - Blood
JF - Blood
IS - 23
ER -