Summary 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.

New brain tumor entities emerge from molecular classification of CNS-PNETs / Sturm, D., Orr, B.A., Toprak, U.H., Hovestadt, V., Jones, D.T.W., Capper, D., Sill, M., Buchhalter, I., Northcott, P.A., Leis, I., Ryzhova, M., Koelsche, C., Pfaff, E., Allen, S.J., Balasubramanian, G., Worst, B.C., Pajtler, K.W., Brabetz, S., Johann, P.D., Sahm, F., et al.. - In: CELL. - ISSN 0092-8674. - 164:5(2016), pp. 1060-1072. [10.1016/j.cell.2016.01.015]

New brain tumor entities emerge from molecular classification of CNS-PNETs

GIANGASPERO, FELICE;
2016

Abstract

Summary 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.
2016
Biochemistry; genetics and molecular biology; neuroectodermal tumors; central nervous system; CNS-PNETs
01 Pubblicazione su rivista::01a Articolo in rivista
New brain tumor entities emerge from molecular classification of CNS-PNETs / Sturm, D., Orr, B.A., Toprak, U.H., Hovestadt, V., Jones, D.T.W., Capper, D., Sill, M., Buchhalter, I., Northcott, P.A., Leis, I., Ryzhova, M., Koelsche, C., Pfaff, E., Allen, S.J., Balasubramanian, G., Worst, B.C., Pajtler, K.W., Brabetz, S., Johann, P.D., Sahm, F., et al.. - In: CELL. - ISSN 0092-8674. - 164:5(2016), pp. 1060-1072. [10.1016/j.cell.2016.01.015]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/871457
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