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Infant high-grade gliomas comprise multiple subgroups characterized by novel targetable gene fusions and favorable outcomes

  • M. Clarke
  • , A. Mackay
  • , B. Ismer
  • , J. C. Pickles
  • , R. G. Tatevossian
  • , S. Newman
  • , T. A. Bale
  • , I. Stoler
  • , E. Izquierdo
  • , S. Temelso
  • , D. M. Carvalho
  • , V. Molinari
  • , A. Burford
  • , L. Howell
  • , A. Virasami
  • , A. R. Fairchild
  • , A. Avery
  • , J. Chalker
  • , M. Kristiansen
  • , K. Haupfear
  • J. D. Dalton, W. Orisme, J. Wen, M. Hubank, K. M. Kurian, C. Rowe, M. Maybury, S. Crosier, J. Knipstein, U. Schuller, U. Kordes, D. E. Kram, M. Snuderl, L. Bridges, A. J. Martin, L. J. Doey, S. Al-Sarraj, C. Chandler, B. Zebian, C. Cairns, R. Natrajan, J. K. R. Boult, S. P. Robinson, M. Sill, I. J. Dunkel, S. W. Gilheeney, M. K. Rosenblum, D. Hughes, P. Z. Proszek, T. J. Macdonald, M. Preusser, C. Haberler, I. Slavc, R. Packer, Ng H. -K., S. Caspi, M. Popovic, B. F. Kotnik, M. D. Wood, L. Baird, M. A. Davare, D. A. Solomon, T. K. Olsen, P. Brandal, M. Farrell, J. B. Cryan, M. Capra, M. Karremann, J. Schittenhelm, M. U. Schuhmann, M. Ebinger, W. N. M. Dinjens, K. Kerl, S. Hettmer, T. Pietsch, F. Andreiuolo, P. H. Driever, A. Korshunov, L. Hiddingh, B. C. Worst, D. Sturm, M. Zuckermann, O. Witt, T. Bloom, C. Mitchell, E. Miele, G. S. Colafati, F. Diomedi-Camassei, S. Bailey, A. S. Moore, T. E. G. Hassall, S. P. Lowis, M. Tsoli, M. J. Cowley, D. S. Ziegler, M. A. Karajannis, K. Aquilina, D. R. Hargrave, F. Carceller, L. V. Marshall, A. V. Deimling, C. M. Kramm, S. M. Pfister, F. Sahm, S. J. Baker, Angela Mastronuzzi, A. Carai, M. Vinci, D. Capper, S. Popov, D. W. Ellison*, T. S. Jacques*, D. T. W. Jones*, C. Jones*
*Autore corrispondente per questo lavoro
  • The Institute of Cancer Research, London
  • German Cancer Research Center
  • Heidelberg University 
  • St. Jude Children Research Hospital
  • Charité – Universitätsmedizin Berlin
  • University College London
  • Royal Marsden NHS Foundation Trust
  • University of Bristol
  • Queensland Children’s Hospital and The University of Queensland
  • University of Queensland
  • Newcastle upon Tyne Hospitals NHS Foundation Trust
  • Medical College of Wisconsin
  • University of Hamburg
  • New York University
  • University of London & St George's University Hospitals NHS Foundation Trust Molecular and Clinical Sciences Research Institute
  • King’s College Hospital NHS Foundation Trust
  • Medical University of Vienna
  • Children's National Medical Center
  • Sheba Medical Center at Tel Hashomer
  • Oregon Health and Science University
  • University of Oslo
  • Royal College of Surgeons in Ireland
  • Our Lady's Hospital for Sick Children
  • University of Tübingen
  • University of Münster
  • University of Freiburg
  • University of Bonn
  • University of Southampton
  • IRCCS Ospedale pediatrico Bambino Gesù - Roma
  • University of New South Wales
  • Sydney Children's Hospital
  • Great Ormond Street Hospital for Children

Risultato della ricerca: Contributo in rivistaArticolo

Abstract

Infant high-grade gliomas appear clinically distinct from their counterparts in older children, indicating that histopathologic grading may not accurately reflect the biology of these tumors. We have collected 241 cases under 4 years of age, and carried out histologic review, methylation profiling, and custom panel, genome, or exome sequencing. After excluding tumors representing other established entities or subgroups, we identified 130 cases to be part of an “intrin-sic” spectrum of disease specific to the infant population. These included those with targetable MAPK alterations, and a large proportion of remaining cases harboring gene fusions targeting ALK (n = 31), NTRK1/2/3 (n = 21), ROS1 (n = 9), and MET (n = 4) as their driving alterations, with evidence of efficacy of targeted agents in the clinic. These data strongly support the concept that infant gliomas require a change in diagnostic practice and management. SIGNIFICANCE: Infant high-grade gliomas in the cerebral hemispheres comprise novel subgroups, with a prevalence of ALK, NTRK1/2/3, ROS1, or MET gene fusions. Kinase fusion–positive tumors have better outcome and respond to targeted therapy clinically. Other subgroups have poor outcome, with fusion-negative cases possibly representing an epigenetically driven pluripotent stem cell phenotype.
Lingua originaleInglese
pagine (da-a)942-963
Numero di pagine22
RivistaCancer Discovery
Volume10
Numero di pubblicazione7
DOI
Stato di pubblicazionePubblicato - 2020

All Science Journal Classification (ASJC) codes

  • Oncologia

Keywords

  • high grade glioma

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