Hostname: page-component-586b7cd67f-vdxz6 Total loading time: 0 Render date: 2024-11-23T21:51:52.166Z Has data issue: false hasContentIssue false

Metachronous Brain Tumors: Supratentorial Ependymoma Following Polymorphous Low-Grade Neuroepithelial Tumor of the Young

Published online by Cambridge University Press:  22 April 2024

Nadav Gasner
Affiliation:
Faculty of Health Sciences, McMaster University, Hamilton, ON, Canada
John Provias
Affiliation:
Department of Pathology and Molecular Medicine, McMaster University, Hamilton, ON, Canada
Jian-Qiang Lu
Affiliation:
Department of Pathology and Molecular Medicine, McMaster University, Hamilton, ON, Canada
Crystal Fong*
Affiliation:
Department of Medical Imaging, McMaster University, Hamilton, ON, Canada
*
Corresponding author: C. Fong; Email: [email protected]
Rights & Permissions [Opens in a new window]

Abstract

Type
Neuroimaging Highlight
Creative Commons
Creative Common License - CCCreative Common License - BY
This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution and reproduction, provided the original article is properly cited.
Copyright
© The Author(s), 2024. Published by Cambridge University Press on behalf of Canadian Neurological Sciences Federation

A previously healthy 41-year-old man with a first generalized tonic-clonic seizure underwent a head CT that disclosed a peripherally located, partially calcified mass in the right frontal lobe (Fig. 1a). Neurological examination was unremarkable. MRI showed a T1-mixed intensity and T2-hyperintense mass with central cystic changes, mild heterogeneous enhancement, no significant perilesional edema and no restricted diffusion (Fig. 1b–f). Gross total resection and pathological examination confirmed a polymorphous low-grade neuroepithelial tumor of the young (PLNTY). Postoperative seizures were well-controlled on antiepileptic drugs, and there was no evidence of recurrence on MR surveillance. However, 11-months post-resection, he presented with worsening headaches and right facial weakness. Repeat MRI revealed a new T1-hypointense and T2-hyperintense heterogeneously enhancing mass in the left frontal centrum semiovale with different MR imaging characteristics from the original tumor, including mild restricted diffusion, internal necrosis and minimal edema (Fig. 2a–e). MR spectroscopy demonstrated increased choline and decreased NAA peaks within the lesion (Fig. 2f) suggesting high cellular turnover. Biopsy confirmed a ZFTA::RELA fusion-positive anaplastic ependymoma. Despite receiving radiation treatment and two resections, the patient ultimately passed away.

Figure 1. Right frontal PLNTY. Nonenhanced brain CT demonstrates a right frontal partially calcified mass (A, arrow). MRI confirms the mass which is predominantly t1 hypointense with t1-hyperintense calcifications (B, arrows) and mild gadolinium-contrast enhancement (C, arrows). FLAIR images show internal cystic changes (D, arrow) without perilesional edema. Diffusion-weighted imaging (E) and corresponding ADC map (F) reveal no diffusion restriction within the lesion (arrows).

Figure 2. Left frontal supratentorial ZFTA fusion-positive ependymoma. MRI with T1-weighted imaging reveals a hypointense left frontal mass on the pre-contrast acquisition (A, arrow), that has nodular enhancement and internal necrosis post-gadolinium administration (B, arrow). FLAIR imaging shows minimal surrounding edema (C, arrow), and expected postoperative/gliotic changes at the right resection site (C, arrowhead). Diffusion-weighted imaging (D) and ADC map (E) demonstrate mild heterogenous restricted diffusion (arrows). MR spectroscopy shows an elevated choline peak and decreased NAA peak (F).

PLNTY is a rare tumor first described in 2017 that frequently presents with seizures and refractory epilepsy. Reference Huse, Snuderl and Jones1 While most common in pediatric populations, cases have been reported in adults. Reference Broggi, Certo, Altieri, Caltabiano, Gessi and Barbagallo2 Imaging findings include intralesional calcifications, cystic components and well-defined margins. MRI signal characteristics include T1-iso/hypointensity and T2-iso/hyperintensity, mild heterogeneous enhancement, minimal perilesional edema and no diffusion restriction. Reference Johnson, Giannini, Jenkins, Kim and Kaufmann3 The differential diagnosis includes oligodendroglioma due to imaging similarities and calcification, and ganglioglioma due to its epileptogenic nature. Reference Broggi, Certo, Altieri, Caltabiano, Gessi and Barbagallo2,Reference Benson, Summerfield and Carr4 Histopathology and molecular analysis are required to diagnose PLNTY, with characteristic CD34 immunoreactivity and distinct genetic mutations. 5 Standard treatment is gross total resection, and recurrence is due to incomplete surgical margins. Reference Broggi, Certo, Altieri, Caltabiano, Gessi and Barbagallo2

Supratentorial ependymomas (STE) are most common in the adolescent population and have varied presentations including headaches, seizures and focal neurologic deficits. Reference Mu and Dahmoush6 Molecular analysis has classified STE into two main categories, RELA and YAP1, according to fusion gene products, with the RELA subtype having worse outcomes. 5,Reference Pajtler, Witt and Sill7 Typical imaging findings include central calcification, large cystic components and central necrosis, with high-grade features such as moderate heterogeneous enhancement, perilesional edema with mass effect, abnormal spectroscopy and diffusion restriction. MR signals are T1-iso/hypointense and T2-iso/hyperintense. Reference Mangalore, Aryan, Prasad and Santosh8 The differential diagnosis includes oligodendroglioma due to internal calcifications and diffuse astrocytoma due to the presence of cystic components. Reference Mangalore, Aryan, Prasad and Santosh8 Resection and radiotherapy are mainstays of treatment. Reference Ng, Obrecht and Wells9

Multiple different primary brain tumors are often caused by prior radiation exposure or a genetic predisposition, but sporadic cases have been reported. Reference Tunthanathip, Kanjanapradit, Ratanalert, Phuenpathom, Oearsakul and Kaewborisutsakul10 These most frequently involve meningiomas, gliomas or pituitary adenomas; can present simultaneously (synchronous) or sequentially (metachronous); and are often in separate brain regions. Reference Tunthanathip, Kanjanapradit, Ratanalert, Phuenpathom, Oearsakul and Kaewborisutsakul10

Our report of metachronous PLNTY and STE is the first to our knowledge. PLNTY and STE are more prevalent in pediatric populations but remain on the differential for primary CNS tumors in adults. Molecular analysis is necessary for accurate diagnosis. Though rare, our findings raise awareness for these entities; two metachronous primary brain tumors raise the possibility of an underlying cause. Sporadic cases remain possible but highly unusual.

Author contributions

N. Gasner: the acquisition and interpretation of data; writing and revision of the manuscript. C. Fong: the acquisition and interpretation of data; writing and revision of the manuscript. J. Provias: the conception and design; the acquisition and interpretation of the data; revision of the manuscript. J.-Q. Lu: the conception and design; the acquisition and interpretation of the data; writing and revision of the manuscript.

Funding statement

None.

Competing interests

None.

References

Huse, JT, Snuderl, M, Jones, DTW, et al. Polymorphous low-grade neuroepithelial tumor of the young (PLNTY): an epileptogenic neoplasm with oligodendroglioma-like components, aberrant CD34 expression, and genetic alterations involving the MAP kinase pathway. Acta Neuropathol. 2017;133:417–29.CrossRefGoogle Scholar
Broggi, G, Certo, F, Altieri, R, Caltabiano, R, Gessi, M, Barbagallo, GMV. A, polymorphous low-grade neuroepithelial tumor of the young (PLNTY), diagnosed in an adult. Report of a case and review of the literature. Surg Neurol Int. 2021;12:470.CrossRefGoogle Scholar
Johnson, DR, Giannini, C, Jenkins, RB, Kim, DK, Kaufmann, TJ. Plenty of calcification: imaging characterization of polymorphous low-grade neuroepithelial tumor of the young. Neuroradiology. 2019;61:1327–32.CrossRefGoogle ScholarPubMed
Benson, JC, Summerfield, D, Carr, C, et al. Polymorphous low-grade neuroepithelial tumor of the Young as a partially calcified intra-axial mass in an adult. Am J Neuroradiol. 2020;41:573–8.CrossRefGoogle Scholar
WHO Classification of Tumours Editorial Board. Central Nervous System Tumours, 5th edn. International Agency for Research on Cancer; 2021. https://publications.iarc.fr/601.Google Scholar
Mu, W, Dahmoush, H. Classification and neuroimaging of ependymal tumors. Front Pediatr. 2023;11:1181211.CrossRefGoogle ScholarPubMed
Pajtler, KW, Witt, H, Sill, M, et al. Molecular classification of ependymal tumors across all CNS compartments, histopathological grades, and age groups. Cancer Cell. 2015;27:728–43.CrossRefGoogle ScholarPubMed
Mangalore, S, Aryan, S, Prasad, C, Santosh, V. Imaging characteristics of supratentorial ependymomas: study on a large single institutional cohort with histopathological correlation. Asian J Neurosurg. 2015;10:276–81.Google Scholar
Ng, CH, Obrecht, D, Wells, O, et al. A multi-institutional retrospective pooled outcome analysis of molecularly annotated pediatric supratentorial ZFTA- fused ependymoma. Neuro-Oncol Adv. 2023;5:vdad057.CrossRefGoogle ScholarPubMed
Tunthanathip, T, Kanjanapradit, K, Ratanalert, S, Phuenpathom, N, Oearsakul, T, Kaewborisutsakul, A. Multiple, primary brain tumors with diverse origins and different localizations: Case Series and Review of the Literature. J Neurosci Rural Pract. 2018;09:593607.Google Scholar
Figure 0

Figure 1. Right frontal PLNTY. Nonenhanced brain CT demonstrates a right frontal partially calcified mass (A, arrow). MRI confirms the mass which is predominantly t1 hypointense with t1-hyperintense calcifications (B, arrows) and mild gadolinium-contrast enhancement (C, arrows). FLAIR images show internal cystic changes (D, arrow) without perilesional edema. Diffusion-weighted imaging (E) and corresponding ADC map (F) reveal no diffusion restriction within the lesion (arrows).

Figure 1

Figure 2. Left frontal supratentorial ZFTA fusion-positive ependymoma. MRI with T1-weighted imaging reveals a hypointense left frontal mass on the pre-contrast acquisition (A, arrow), that has nodular enhancement and internal necrosis post-gadolinium administration (B, arrow). FLAIR imaging shows minimal surrounding edema (C, arrow), and expected postoperative/gliotic changes at the right resection site (C, arrowhead). Diffusion-weighted imaging (D) and ADC map (E) demonstrate mild heterogenous restricted diffusion (arrows). MR spectroscopy shows an elevated choline peak and decreased NAA peak (F).