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Tumor Treating Field Therapy in Combination with Bevacizumab for the Treatment of Recurrent Glioblastoma
Published on: October 27, 2014
Cidofovir: a novel antitumor agent for glioblastoma
Piotr Hadaczek1, Tomoko Ozawa, Liliana Soroceanu
1Authors' Affiliations: California Pacific Medical Center Research Institute; and Department of Neurological Surgery, Helen Diller Cancer Center, University of California, San Francisco, California, Swedish Neuroscience Institute, Seattle, WA.
Purpose:
Cidofovir (CDV) is an U.S. Food and Drug Administration (FDA)-approved nucleoside antiviral agent used to treat severe human cytomegalovirus (HCMV) infection. Until now, no clear therapeutic effects of CDV have been reported outside of the setting of viral infection, including a potential role for CDV as an antineoplastic agent for the treatment of brain tumors.
Experimental Design:
We investigated the cytotoxicity of CDV against the glioblastoma cells, U87MG and primary SF7796, both in vitro and in vivo, using an intracranial xenograft model. Standard techniques for cell culturing, immunohistochemistry, Western blotting, and real-time PCR were employed. The survival of athymic mice (n = 8-10 per group) bearing glioblastoma tumors, treated with CDV alone or in combination with radiation, was analyzed by the Kaplan-Meier method and evaluated with a two-sided log-rank test.
Results:
CDV possesses potent antineoplastic activity against HCMV-infected glioblastoma cells. This activity is associated with the inhibition of HCMV gene expression and with activation of cellular apoptosis. Surprisingly, we also determined that CDV induces glioblastoma cell death in the absence of HCMV infection. CDV is incorporated into tumor cell DNA, which promotes double-stranded DNA breaks and induces apoptosis. In the setting of ionizing radiotherapy, the standard of care for glioblastoma in humans, CDV augments radiation-induced DNA damage and, further, promotes tumor cell death. Combination therapy with CDV and radiotherapy significantly extended the survival of mice bearing intracranial glioblastoma tumors.
Conclusion:
We have identified a novel antiglioma property of the FDA-approved drug CDV, which heightens the cytotoxic effect of radiotherapy, the standard of care therapy for glioblastoma.
Insights
Cidofovir (CDV) shows promise as a brain tumor treatment. This FDA-approved antiviral drug induces glioblastoma cell death and enhances radiotherapy effectiveness, significantly improving survival in preclinical models.
Area of Science:
- Oncology
- Virology
- Pharmacology
Background:
- Cidofovir (CDV) is an FDA-approved antiviral for cytomegalovirus (CMV).
- Its potential as an antineoplastic agent, particularly for brain tumors, remains largely unexplored.
- Glioblastoma is an aggressive brain tumor with limited treatment options.
Purpose of the Study:
- To investigate the antineoplastic effects of CDV on glioblastoma cells.
- To evaluate CDV's efficacy alone and in combination with radiotherapy.
- To explore the mechanisms underlying CDV-induced glioblastoma cell death.
Main Methods:
- Cytotoxicity assays were performed on glioblastoma cell lines (U87MG, SF7796) in vitro.
- An intracranial xenograft mouse model was used for in vivo studies.
- Standard molecular biology techniques (immunohistochemistry, Western blotting, PCR) and survival analysis (Kaplan-Meier) were employed.
Main Results:
- CDV demonstrated potent antineoplastic activity against glioblastoma cells, both infected and uninfected with human cytomegalovirus (HCMV).
- CDV incorporation into tumor DNA induced double-stranded breaks and triggered apoptosis.
- Combination therapy with CDV and radiotherapy significantly enhanced tumor cell death and extended survival in mice.
Conclusions:
- CDV exhibits a novel antiglioma property, independent of its antiviral activity.
- CDV potentiates the cytotoxic effects of radiotherapy in glioblastoma.
- This study identifies CDV as a potential therapeutic agent for glioblastoma, augmenting standard care.
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