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Decreased replication ability of E1-deleted adenoviruses correlates with increased brain tumor malignancy
Subrata Ghosh1, Gregory J Duigou
1Department of Neurological Surgery, College of Physicians and Surgeons, Columbia University, New York, New York 10032, USA.
Abstract:
E1 region replacement adenoviruses are replication defective and are propagated in cells providing adenovirus E1A and E1B proteins. Although they are being developed for antitumor therapies, the proliferative behaviors of these viruses in normal brain tissues or in brain tumors are unknown. To address this, freshly cultured cells from normal human brain and common brain tumors (astrocytomas and meningiomas) were infected using wild-type species C adenoviruses and adenoviruses missing E1A (H5dl312) or E1A plus E1B (H5dl434). Viral DNA replication, late viral protein expression, and production of infectious progeny were characterized. Wild-type adenoviruses grew efficiently in normal brain and brain tumor cells. In comparison, E1-deleted adenovirus DNA replication was delayed and lower in cells derived from normal brain tissues, meningiomas, and low-grade astrocytomas. However, in contrast, E1-deleted adenovirus DNA replication did not occur or was extremely low in cells derived from malignancy grade III and IV astrocytic tumors. Because wild-type adenoviruses infected and replicated in all cells, the malignancy grade-based differential E1-deleted adenovirus DNA replication was not explained by differential virus uptake. Infectious H5dl312 and H5dl434 production correlated with viral DNA replication. Compared with a 5-day average for wild-type infections, advanced cytopathology was noted approximately 4 weeks after H5dl312 or H5dl434 infection of meningioma, astrocytoma, and normal brain cells. Cytopathology was not observed after H5dl312 or H5dl434 infection of glioblastoma, anaplastic astrocytoma, and gliosarcoma cells. Because of this tumor grade-based differential growth, the E1-deleted adenoviruses may represent novel tools for studies of brain tumor malignancy.
Insights
E1-deleted adenoviruses show reduced replication in high-grade brain tumors compared to normal brain or lower-grade tumors. This differential growth suggests potential for studying brain tumor malignancy.
Area of Science:
- Oncology
- Virology
- Neuroscience
Background:
- E1 region replacement adenoviruses are replication-defective and require E1A/E1B proteins for propagation.
- These adenoviruses are being explored for antitumor therapies, but their behavior in brain tissues is unknown.
Purpose of the Study:
- To investigate the proliferative behavior of wild-type and E1-deleted adenoviruses in normal human brain cells and various brain tumors.
- To determine if adenovirus replication correlates with tumor malignancy grade.
Main Methods:
- Infection of cultured normal human brain cells and brain tumors (astrocytomas, meningiomas) with wild-type, E1A-deleted (H5dl312), and E1A/E1B-deleted (H5dl434) adenoviruses.
- Characterization of viral DNA replication, late viral protein expression, and infectious progeny production.
- Assessment of cytopathology following viral infection.
Main Results:
- Wild-type adenoviruses replicated efficiently in all tested cells.
- E1-deleted adenoviruses showed delayed and reduced DNA replication in normal brain, meningioma, and low-grade astrocytoma cells.
- E1-deleted adenoviruses exhibited minimal to no DNA replication in high-grade (III/IV) astrocytic tumors, indicating a malignancy-grade-dependent replication pattern.
- Infectious progeny production and cytopathology correlated with viral DNA replication, with advanced cytopathology observed in lower-grade tumors and normal cells but not high-grade tumors.
Conclusions:
- E1-deleted adenoviruses exhibit differential replication in brain tumors based on malignancy grade.
- The observed tumor-specific replication suggests E1-deleted adenoviruses could be valuable tools for investigating brain tumor biology and malignancy.
- Differential replication is not due to variations in virus uptake by tumor cells.
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