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Isolation and Expansion of Human Glioblastoma Multiforme Tumor Cells Using the Neurosphere Assay
Published on: October 30, 2011
Glioblastoma multiforme with small cell neuronal-like component: association with human neurotropic JC virus
Sergio Piña-Oviedo1, Beatriz De León-Bojorge, Teresa Cuesta-Mejías
1Department of Neuroscience, Center for Neurovirology, Temple University School of Medicine, 1900 North 12th Street, Philadelphia, PA, USA.
Abstract:
The human polyomavirus JCV, the etiological agent of progressive multifocal leukoencephalopathy, has been associated with primitive neuroectodermal tumors and various glial-derived tumors, including glioblastoma multiforme (GBM). Here we describe the unique clinical case of a 54-year-old man who presented with headaches, hemiparesis and drowsiness. T1 and T2 magnetic resonance images revealed a large solid tumor with a cystic component located in the right temporal lobe, with extension into the parietal lobe. Histologically, the tumor was composed of two areas, a main area of large neoplastic cells with pleomorphic atypical nuclei and abundant cytoplasm, which by immunohistochemistry was reactive for glial fibrillary acidic protein, mixed with several foci of poorly differentiated tumoral cells with elongated nuclei and scant cytoplasm, negative for GFAP, but robustly immunoreactive for synaptophysin and phosphoneurofilaments. Results from PCR in laser capture microdissected cells from both areas of the tumor revealed the presence of DNA sequences corresponding to the early, late and control regions (CR) of the JCV genome and expression of JCV proteins T-antigen and Agnoprotein in both phenotypes. No evidence for capsid protein was observed, excluding productive viral infection. Sequencing demonstrated the presence of the JCV Mad-1 strain with distinct point mutations in the CR of isolates from both, GBM and small cell architectural areas. The presence of JCV DNA sequences and expression of viral proteins further reinforces the role of the widely spread human neurotropic virus in early transformation and in the development of brain tumors.
Insights
The human polyomavirus, John Cunningham virus (JCV), was detected in a glioblastoma multiforme (GBM) brain tumor. JCV DNA and proteins were found in both tumor cell types, suggesting a role in brain tumor development.
Area of Science:
- Neuro-oncology
- Virology
- Molecular Biology
Background:
- The human polyomavirus, John Cunningham virus (JCV), is linked to brain tumors like glioblastoma multiforme (GBM).
- JCV is a widespread human neurotropic virus, but its role in brain tumor etiology is not fully understood.
Observation:
- A unique case of a 54-year-old man with a right temporal lobe tumor is presented.
- MRI revealed a large solid tumor with cystic components.
- Histology showed two distinct tumor areas: glial-derived cells (GFAP+) and poorly differentiated cells (synaptophysin+).
Findings:
- JCV DNA sequences (early, late, and control regions) were identified in both tumor areas using PCR.
- JCV T-antigen and Agnoprotein were expressed in both tumor phenotypes, but capsid proteins were absent, ruling out productive infection.
- Sequencing confirmed the JCV Mad-1 strain with specific mutations in the control region of isolates from both GBM and small cell areas.
Implications:
- The presence and expression of JCV in both tumor components suggest its involvement in the early stages of brain tumor transformation.
- This finding reinforces the role of JCV as a potential etiological factor in the development of brain tumors, including GBM.
- Further research into JCV's oncogenic mechanisms in the brain is warranted.
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