TY - JOUR
T1 - Multiplatform molecular analyses refine classification of gliomas arising in patients with neurofibromatosis type 1
AU - Lucas, Calixto Hope G.
AU - Sloan, Emily A.
AU - Gupta, Rohit
AU - Wu, Jasper
AU - Pratt, Drew
AU - Vasudevan, Harish N.
AU - Ravindranathan, Ajay
AU - Barreto, Jairo
AU - Williams, Erik A.
AU - Shai, Anny
AU - Whipple, Nicholas S.
AU - Bruggers, Carol S.
AU - Maher, Ossama
AU - Nabors, Burt
AU - Rodriguez, Michael
AU - Samuel, David
AU - Brown, Melandee
AU - Carmichael, Jason
AU - Lu, Rufei
AU - Mirchia, Kanish
AU - Sullivan, Daniel V.
AU - Pekmezci, Melike
AU - Tihan, Tarik
AU - Bollen, Andrew W.
AU - Perry, Arie
AU - Banerjee, Anuradha
AU - Mueller, Sabine
AU - Gupta, Nalin
AU - Hervey-Jumper, Shawn L.
AU - Oberheim Bush, Nancy Ann
AU - Daras, Mariza
AU - Taylor, Jennie W.
AU - Butowski, Nicholas A.
AU - de Groot, John
AU - Clarke, Jennifer L.
AU - Raleigh, David R.
AU - Costello, Joseph F.
AU - Phillips, Joanna J.
AU - Reddy, Alyssa T.
AU - Chang, Susan M.
AU - Berger, Mitchel S.
AU - Solomon, David A.
N1 - Publisher Copyright:
© 2022, The Author(s).
PY - 2022/10
Y1 - 2022/10
N2 - Gliomas arising in the setting of neurofibromatosis type 1 (NF1) are heterogeneous, occurring from childhood through adulthood, can be histologically low-grade or high-grade, and follow an indolent or aggressive clinical course. Comprehensive profiling of genetic alterations beyond NF1 inactivation and epigenetic classification of these tumors remain limited. Through next-generation sequencing, copy number analysis, and DNA methylation profiling of gliomas from 47 NF1 patients, we identified 2 molecular subgroups of NF1-associated gliomas. The first harbored biallelic NF1 inactivation only, occurred primarily during childhood, followed a more indolent clinical course, and had a unique epigenetic signature for which we propose the terminology “pilocytic astrocytoma, arising in the setting of NF1”. The second subgroup harbored additional oncogenic alterations including CDKN2A homozygous deletion and ATRX mutation, occurred primarily during adulthood, followed a more aggressive clinical course, and was epigenetically diverse, with most tumors aligning with either high-grade astrocytoma with piloid features or various subclasses of IDH-wildtype glioblastoma. Several patients were treated with small molecule MEK inhibitors that resulted in stable disease or tumor regression when used as a single agent, but only in the context of those tumors with NF1 inactivation lacking additional oncogenic alterations. Together, these findings highlight recurrently altered pathways in NF1-associated gliomas and help inform targeted therapeutic strategies for this patient population.
AB - Gliomas arising in the setting of neurofibromatosis type 1 (NF1) are heterogeneous, occurring from childhood through adulthood, can be histologically low-grade or high-grade, and follow an indolent or aggressive clinical course. Comprehensive profiling of genetic alterations beyond NF1 inactivation and epigenetic classification of these tumors remain limited. Through next-generation sequencing, copy number analysis, and DNA methylation profiling of gliomas from 47 NF1 patients, we identified 2 molecular subgroups of NF1-associated gliomas. The first harbored biallelic NF1 inactivation only, occurred primarily during childhood, followed a more indolent clinical course, and had a unique epigenetic signature for which we propose the terminology “pilocytic astrocytoma, arising in the setting of NF1”. The second subgroup harbored additional oncogenic alterations including CDKN2A homozygous deletion and ATRX mutation, occurred primarily during adulthood, followed a more aggressive clinical course, and was epigenetically diverse, with most tumors aligning with either high-grade astrocytoma with piloid features or various subclasses of IDH-wildtype glioblastoma. Several patients were treated with small molecule MEK inhibitors that resulted in stable disease or tumor regression when used as a single agent, but only in the context of those tumors with NF1 inactivation lacking additional oncogenic alterations. Together, these findings highlight recurrently altered pathways in NF1-associated gliomas and help inform targeted therapeutic strategies for this patient population.
KW - Astrocytoma
KW - Brain tumor
KW - Glioma
KW - Molecular neuro-oncology
KW - Molecular neuropathology
KW - NF1
KW - Neurofibromatosis type 1
KW - Selumetinib
KW - Trametinib
UR - https://www.scopus.com/pages/publications/85135622862
UR - https://www.scopus.com/pages/publications/85135622862#tab=citedBy
U2 - 10.1007/s00401-022-02478-5
DO - 10.1007/s00401-022-02478-5
M3 - Article
C2 - 35945463
AN - SCOPUS:85135622862
SN - 0001-6322
VL - 144
SP - 747
EP - 765
JO - Acta neuropathologica
JF - Acta neuropathologica
IS - 4
ER -