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Stereotactic Adoptive Transfer of Cytotoxic Immune Cells in Murine Models of Orthotopic Human Glioblastoma Multiforme Xenografts
Published on: September 1, 2018
Current status of immunotherapy and gene therapy for high-grade gliomas
James C Marsh1, Justin Goldfarb, Timothy D Shafman
121st Century Oncology Translational Research Consortium, Peoria, AZ 85381, USA. jmarsh@rtsx.com
Background:
Despite improvements in surgical technique, radiation therapy delivery, and options for systemic cytotoxic therapy, the median survival for patients with newly diagnosed glioblastoma multiforme remains poor at 15 months with trimodality therapy. Multiple immunologic approaches are being tested to enhance the response of these tumors to existing therapy and/or to stimulate innate immune responses.
Methods:
We review the existing data that support the continued development of immunologic therapy in the treatment armamentarium against glioblastoma multiforme, with a focus on clinical data documenting outcomes.
Results:
In phase I and phase II trials, antitumor vaccines (dendritic and formalin-fixed) have demonstrated clinical efficacy with mild toxicity, suggesting that innate immune responses can be amplified and directed against these tumors. Suicide gene therapy (gene-mediated cytotoxic therapy) using a number of viral vectors and molecular pathways has also shown efficacy in completed phase I and ongoing phase II trials. In addition, neural stem cells are being investigated as vectors in this approach.
Conclusions:
Although phase III data are needed before immunologic therapies can be widely implemented into clinical practice, the existing phase I and phase II data suggest that these therapies can produce meaningful and sometimes durable responses in patients with glioblastoma multiforme with mild toxicity compared with other existing therapies.
Insights
Immunotherapies like vaccines and gene therapy show promise for glioblastoma multiforme (GBM), offering mild toxicity and potential for durable responses. Further phase III trials are needed for widespread clinical use.
Area of Science:
- Neuro-oncology
- Immunotherapy
- Cancer Treatment
Background:
- Glioblastoma multiforme (GBM) has a poor prognosis despite current treatments.
- Existing therapies include surgery, radiation, and chemotherapy.
- There is a need for novel therapeutic strategies to improve patient survival.
Purpose of the Study:
- To review existing data on immunologic therapies for glioblastoma multiforme.
- To focus on clinical outcomes from phase I and phase II trials.
- To assess the potential of immunotherapy in the GBM treatment armamentarium.
Main Methods:
- Review of existing clinical trial data.
- Focus on immunologic approaches including vaccines and gene therapy.
- Analysis of outcomes and toxicity profiles.
Main Results:
- Antitumor vaccines (dendritic and formalin-fixed) showed clinical efficacy with mild toxicity in phase I/II trials.
- Suicide gene therapy demonstrated efficacy in phase I/II trials, with neural stem cells being explored as vectors.
- These findings suggest that innate immune responses can be amplified against GBM.
Conclusions:
- Phase I and II data indicate that immunotherapies can yield meaningful and durable responses in GBM patients.
- These therapies exhibit mild toxicity compared to existing treatments.
- Phase III data are required for widespread clinical implementation.
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