H3F3A-G34R mutant high grade neuroepithelial neoplasms with glial and dysplastic ganglion cell components.
Felipe AndreiuoloTomo LisnerJozef ZlochaChristof KrammArend KochBrigitte BisonAlbane GaretonMarc ZanelloAndreas WahaPascale VarletTorsten PietschPublished in: Acta neuropathologica communications (2019)
The recently described malignant neuro-epithelial tumors with histone H3F3A point mutations at G34 (NET-H3-G34) occur most often in cerebral hemispheres of teenagers and young adults, and have a generally adverse prognosis. These tumors have been histologically classified as glioblastoma or primitive neuroectodermal tumor (PNET) in the past, and have not been defined as a separate entity in the revised WHO classification of tumors of the CNS 2016. Here, we report two cases of NET-H3-G34 with glial and dysplastic ganglion cell components affecting teenagers. Patients were treated with surgery and radiochemotherapy with temozolomide. One patient underwent partial resection and deceased 21 months after diagnosis, while the other patient is alive without evidence of disease 15 months after total resection. So far, a dysplastic ganglion cell component has not been described in NET-H-G34, and its presence raises a possible relation to (anaplastic) gangliogliomas. Genome-wide copy number analysis did not provide unequivocal evidence that these tumors represent anaplastic variants of gangliogliomas, as opposed to NET-H3-G34. Our observations expand the morphologic spectrum of NET-H3-G34. Further cases of NET-H3-G34 with dysplastic ganglion cells should be clinically followed to find differences or similarities in their biological behavior, as compared to NET-H3-G34 and anaplastic gangliogliomas.
Keyphrases
- copy number
- neuropathic pain
- genome wide
- single cell
- young adults
- high grade
- mitochondrial dna
- cell therapy
- newly diagnosed
- end stage renal disease
- chronic kidney disease
- optic nerve
- spinal cord
- case report
- induced apoptosis
- machine learning
- deep learning
- oxidative stress
- peritoneal dialysis
- coronary artery disease
- radiation therapy
- low grade
- stem cells
- emergency department
- blood brain barrier
- cell cycle arrest
- signaling pathway
- optical coherence tomography
- cerebral ischemia