Clinical, radiological and molecular characterization of intramedullary astrocytomas

Abstract Intramedullary astrocytomas (IMAs) are rare tumors, and few studies specific to the molecular alterations of IMAs have been performed. Recently, KIAA1549-BRAF fusions and the H3F3A p.K27M mutation have been described in low-grade (LG) and high-grade (HG) IMAs, respectively. In the present s...

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Main Authors: Laetitia Lebrun, Barbara Meléndez, Oriane Blanchard, Nancy De Nève, Claude Van Campenhout, Julie Lelotte, Danielle Balériaux, Matteo Riva, Jacques Brotchi, Michaël Bruneau, Olivier De Witte, Christine Decaestecker, Nicky D’Haene, Isabelle Salmon
Format: Article
Language:English
Published: BMC 2020-08-01
Series:Acta Neuropathologica Communications
Subjects:
Online Access:http://link.springer.com/article/10.1186/s40478-020-00962-1
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spelling doaj-2878ed91c2794ea0bf4331c5ccf2193b2020-11-25T03:10:22ZengBMCActa Neuropathologica Communications2051-59602020-08-018111410.1186/s40478-020-00962-1Clinical, radiological and molecular characterization of intramedullary astrocytomasLaetitia Lebrun0Barbara Meléndez1Oriane Blanchard2Nancy De Nève3Claude Van Campenhout4Julie Lelotte5Danielle Balériaux6Matteo Riva7Jacques Brotchi8Michaël Bruneau9Olivier De Witte10Christine Decaestecker11Nicky D’Haene12Isabelle Salmon13Department of Pathology, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Pathology, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Pathology, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Pathology, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Pathology, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Pathology, Cliniques Universitaires Saint-Luc, Université Catholique de Louvain (UCLouvain)Department of Neuroradiology, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Neurosurgery, Mont-Godinne University Hospital, UcL NamurDepartment of Neurosurgery, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Neurosurgery, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Neurosurgery, Erasme University Hospital, Université Libre de Bruxelles (ULB)DIAPath, Center for Microscopy and Molecular Imaging, ULBDepartment of Pathology, Erasme University Hospital, Université Libre de Bruxelles (ULB)Department of Pathology, Erasme University Hospital, Université Libre de Bruxelles (ULB)Abstract Intramedullary astrocytomas (IMAs) are rare tumors, and few studies specific to the molecular alterations of IMAs have been performed. Recently, KIAA1549-BRAF fusions and the H3F3A p.K27M mutation have been described in low-grade (LG) and high-grade (HG) IMAs, respectively. In the present study, we collected clinico-radiological data and performed targeted next-generation sequencing for 61 IMAs (26 grade I pilocytic, 17 grade II diffuse, 3 LG, 3 grade III and 12 grade IV) to identify KIAA1549-BRAF fusions and mutations in 33 genes commonly implicated in gliomas and the 1p/19q regions. One hundred seventeen brain astrocytomas were analyzed for comparison. While we did not observe a difference in clinico-radiological features between LG and HG IMAs, we observed significantly different overall survival (OS) and event-free survival (EFS). Multivariate analysis showed that the tumor grade was associated with better OS while EFS was strongly impacted by tumor grade and surgery, with higher rates of disease progression in cases in which only biopsy could be performed. For LG IMAs, EFS was only impacted by surgery and not by grade. The most common mutations found in IMAs involved TP53, H3F3A p.K27M and ATRX. As in the brain, grade I pilocytic IMAs frequently harbored KIAA1549-BRAF fusions but with different fusion types. Non-canonical IDH mutations were observed in only 2 grade II diffuse IMAs. No EGFR or TERT promoter alterations were found in IDH wild-type grade II diffuse IMAs. These latter tumors seem to have a good prognosis, and only 2 cases underwent anaplastic evolution. All of the HG IMAs presented at least one molecular alteration, with the most frequent one being the H3F3A p.K27M mutation. The H3F3A p.K27M mutation showed significant associations with OS and EFS after multivariate analysis. This study emphasizes that IMAs have distinct clinico-radiological, natural evolution and molecular landscapes from brain astrocytomas.http://link.springer.com/article/10.1186/s40478-020-00962-1Intramedullary astrocytomas-glial tumor-spinal cord-targeted next-generation sequencing-H3F3A K27M-KIAA1549-BRAF
collection DOAJ
language English
format Article
sources DOAJ
author Laetitia Lebrun
Barbara Meléndez
Oriane Blanchard
Nancy De Nève
Claude Van Campenhout
Julie Lelotte
Danielle Balériaux
Matteo Riva
Jacques Brotchi
Michaël Bruneau
Olivier De Witte
Christine Decaestecker
Nicky D’Haene
Isabelle Salmon
spellingShingle Laetitia Lebrun
Barbara Meléndez
Oriane Blanchard
Nancy De Nève
Claude Van Campenhout
Julie Lelotte
Danielle Balériaux
Matteo Riva
Jacques Brotchi
Michaël Bruneau
Olivier De Witte
Christine Decaestecker
Nicky D’Haene
Isabelle Salmon
Clinical, radiological and molecular characterization of intramedullary astrocytomas
Acta Neuropathologica Communications
Intramedullary astrocytomas-glial tumor-spinal cord-targeted next-generation sequencing-H3F3A K27M-KIAA1549-BRAF
author_facet Laetitia Lebrun
Barbara Meléndez
Oriane Blanchard
Nancy De Nève
Claude Van Campenhout
Julie Lelotte
Danielle Balériaux
Matteo Riva
Jacques Brotchi
Michaël Bruneau
Olivier De Witte
Christine Decaestecker
Nicky D’Haene
Isabelle Salmon
author_sort Laetitia Lebrun
title Clinical, radiological and molecular characterization of intramedullary astrocytomas
title_short Clinical, radiological and molecular characterization of intramedullary astrocytomas
title_full Clinical, radiological and molecular characterization of intramedullary astrocytomas
title_fullStr Clinical, radiological and molecular characterization of intramedullary astrocytomas
title_full_unstemmed Clinical, radiological and molecular characterization of intramedullary astrocytomas
title_sort clinical, radiological and molecular characterization of intramedullary astrocytomas
publisher BMC
series Acta Neuropathologica Communications
issn 2051-5960
publishDate 2020-08-01
description Abstract Intramedullary astrocytomas (IMAs) are rare tumors, and few studies specific to the molecular alterations of IMAs have been performed. Recently, KIAA1549-BRAF fusions and the H3F3A p.K27M mutation have been described in low-grade (LG) and high-grade (HG) IMAs, respectively. In the present study, we collected clinico-radiological data and performed targeted next-generation sequencing for 61 IMAs (26 grade I pilocytic, 17 grade II diffuse, 3 LG, 3 grade III and 12 grade IV) to identify KIAA1549-BRAF fusions and mutations in 33 genes commonly implicated in gliomas and the 1p/19q regions. One hundred seventeen brain astrocytomas were analyzed for comparison. While we did not observe a difference in clinico-radiological features between LG and HG IMAs, we observed significantly different overall survival (OS) and event-free survival (EFS). Multivariate analysis showed that the tumor grade was associated with better OS while EFS was strongly impacted by tumor grade and surgery, with higher rates of disease progression in cases in which only biopsy could be performed. For LG IMAs, EFS was only impacted by surgery and not by grade. The most common mutations found in IMAs involved TP53, H3F3A p.K27M and ATRX. As in the brain, grade I pilocytic IMAs frequently harbored KIAA1549-BRAF fusions but with different fusion types. Non-canonical IDH mutations were observed in only 2 grade II diffuse IMAs. No EGFR or TERT promoter alterations were found in IDH wild-type grade II diffuse IMAs. These latter tumors seem to have a good prognosis, and only 2 cases underwent anaplastic evolution. All of the HG IMAs presented at least one molecular alteration, with the most frequent one being the H3F3A p.K27M mutation. The H3F3A p.K27M mutation showed significant associations with OS and EFS after multivariate analysis. This study emphasizes that IMAs have distinct clinico-radiological, natural evolution and molecular landscapes from brain astrocytomas.
topic Intramedullary astrocytomas-glial tumor-spinal cord-targeted next-generation sequencing-H3F3A K27M-KIAA1549-BRAF
url http://link.springer.com/article/10.1186/s40478-020-00962-1
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