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New Brain Tumor Entities Emerge from Molecular Classification of CNS-PNETs

Authors :
Sturm, Dominik
Orr, Brent A
Toprak, Umut H
Hovestadt, Volker
Jones, David TW
Capper, David
Sill, Martin
Buchhalter, Ivo
Northcott, Paul A
Leis, Irina
Ryzhova, Marina
Koelsche, Christian
Pfaff, Elke
Allen, Sariah J
Balasubramanian, Gnanaprakash
Worst, Barbara C
Pajtler, Kristian W
Brabetz, Sebastian
Johann, Pascal D
Sahm, Felix
Reimand, Jüri
Mackay, Alan
Carvalho, Diana M
Remke, Marc
Phillips, Joanna J
Perry, Arie
Cowdrey, Cynthia
Drissi, Rachid
Fouladi, Maryam
Giangaspero, Felice
Łastowska, Maria
Grajkowska, Wiesława
Scheurlen, Wolfram
Pietsch, Torsten
Hagel, Christian
Gojo, Johannes
Lötsch, Daniela
Berger, Walter
Slavc, Irene
Haberler, Christine
Jouvet, Anne
Holm, Stefan
Hofer, Silvia
Prinz, Marco
Keohane, Catherine
Fried, Iris
Mawrin, Christian
Scheie, David
Mobley, Bret C
Schniederjan, Matthew J
Santi, Mariarita
Buccoliero, Anna M
Dahiya, Sonika
Kramm, Christof M
von Bueren, André O
von Hoff, Katja
Rutkowski, Stefan
Herold-Mende, Christel
Frühwald, Michael C
Milde, Till
Hasselblatt, Martin
Wesseling, Pieter
Rößler, Jochen
Schüller, Ulrich
Ebinger, Martin
Schittenhelm, Jens
Frank, Stephan
Grobholz, Rainer
Vajtai, Istvan
Hans, Volkmar
Schneppenheim, Reinhard
Zitterbart, Karel
Collins, V Peter
Aronica, Eleonora
Varlet, Pascale
Puget, Stephanie
Dufour, Christelle
Grill, Jacques
Figarella-Branger, Dominique
Wolter, Marietta
Schuhmann, Martin U
Shalaby, Tarek
Grotzer, Michael
van Meter, Timothy
Monoranu, Camelia-Maria
Felsberg, Jörg
Reifenberger, Guido
Snuderl, Matija
Forrester, Lynn Ann
Koster, Jan
Versteeg, Rogier
Volckmann, Richard
van Sluis, Peter
Wolf, Stephan
Mikkelsen, Tom
Gajjar, Amar
Aldape, Kenneth
Moore, Andrew S
Taylor, Michael D
Jones, Chris
Source :
Cell, vol 164, iss 5
Publication Year :
2016
Publisher :
eScholarship, University of California, 2016.

Abstract

Primitive neuroectodermal tumors of the central nervous system (CNS-PNETs) are highly aggressive, poorly differentiated embryonal tumors occurring predominantly in young children but also affecting adolescents and adults. Herein, we demonstrate that a significant proportion of institutionally diagnosed CNS-PNETs display molecular profiles indistinguishable from those of various other well-defined CNS tumor entities, facilitating diagnosis and appropriate therapy for patients with these tumors. From the remaining fraction of CNS-PNETs, we identify four new CNS tumor entities, each associated with a recurrent genetic alteration and distinct histopathological and clinical features. These new molecular entities, designated "CNS neuroblastoma with FOXR2 activation (CNS NB-FOXR2)," "CNS Ewing sarcoma family tumor with CIC alteration (CNS EFT-CIC)," "CNS high-grade neuroepithelial tumor with MN1 alteration (CNS HGNET-MN1)," and "CNS high-grade neuroepithelial tumor with BCOR alteration (CNS HGNET-BCOR)," will enable meaningful clinical trials and the development of therapeutic strategies for patients affected by poorly differentiated CNS tumors.

Details

Database :
OpenAIRE
Journal :
Cell, vol 164, iss 5
Accession number :
edsair.od.......325..6f9799611c1fd741d2903f297552e09a