The Clinical Utility of Optical Genome Mapping for the Assessment of Genomic Aberrations in Acute Lymphoblastic Leukemia

Acute lymphoblastic leukemia (ALL) is the most prevalent type of cancer occurring in children. ALL is characterized by structural and numeric genomic aberrations that strongly correlate with prognosis and clinical outcome. Usually, a combination of cyto- and molecular genetic methods (karyotyping, a...

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Bibliographic Details
Main Authors: Jonathan Lukas Lühmann, Marie Stelter, Marie Wolter, Josephine Kater, Jana Lentes, Anke Katharina Bergmann, Maximilian Schieck, Gudrun Göhring, Anja Möricke, Gunnar Cario, Markéta Žaliová, Martin Schrappe, Brigitte Schlegelberger, Martin Stanulla, Doris Steinemann
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Cancers
Subjects:
ALL
Online Access:https://www.mdpi.com/2072-6694/13/17/4388
Description
Summary:Acute lymphoblastic leukemia (ALL) is the most prevalent type of cancer occurring in children. ALL is characterized by structural and numeric genomic aberrations that strongly correlate with prognosis and clinical outcome. Usually, a combination of cyto- and molecular genetic methods (karyotyping, array-CGH, FISH, RT-PCR, RNA-Seq) is needed to identify all aberrations relevant for risk stratification. We investigated the feasibility of optical genome mapping (OGM), a DNA-based method, to detect these aberrations in an all-in-one approach. As proof of principle, twelve pediatric ALL samples were analyzed by OGM, and results were validated by comparing OGM data to results obtained from routine diagnostics. All genomic aberrations including translocations (e.g., dic(9;12)), aneuploidies (e.g., high hyperdiploidy) and copy number variations (e.g., <i>IKZF1</i>, <i>PAX5</i>) known from other techniques were also detected by OGM. Moreover, OGM was superior to well-established techniques for resolution of the more complex structure of a translocation t(12;21) and had a higher sensitivity for detection of copy number alterations. Importantly, a new and unknown gene fusion of <i>JAK2</i> and <i>NPAT</i> due to a translocation t(9;11) was detected. We demonstrate the feasibility of OGM to detect well-established as well as new putative prognostic markers in an all-in-one approach in ALL. We hope that these limited results will be confirmed with testing of more samples in the future.
ISSN:2072-6694