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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
Gene therapy and targeted toxins for glioma
Gwendalyn D King1, James F Curtin, Marianela Candolfi
1Gene Therapeutics Research Institute, Cedars-Sinai Medical Center, and Department of Molecular and Medical Pharmacology, David Geffen School of Medicine, UCLA, 8700 Beverly Boulevard, Los Angeles, CA 90048, USA.
Abstract:
The most common primary brain tumor in adults is glioblastoma. These tumors are highly invasive and aggressive with a mean survival time of nine to twelve months from diagnosis to death. Current treatment modalities are unable to significantly prolong survival in patients diagnosed with glioblastoma. As such, glioma is an attractive target for developing novel therapeutic approaches utilizing gene therapy. This review will examine the available preclinical models for glioma including xenographs, syngeneic and genetic models. Several promising therapeutic targets are currently being pursued in pre-clinical investigations. These targets will be reviewed by mechanism of action, i.e., conditional cytotoxic, targeted toxins, oncolytic viruses, tumor suppressors/oncogenes, and immune stimulatory approaches. Preclinical gene therapy paradigms aim to determine which strategies will provide rapid tumor regression and long-term protection from recurrence. While a wide range of potential targets are being investigated preclinically, only the most efficacious are further transitioned into clinical trial paradigms. Clinical trials reported to date are summarized including results from conditionally cytotoxic, targeted toxins, oncolytic viruses and oncogene targeting approaches. Clinical trial results have not been as robust as preclinical models predicted, this could be due to the limitations of the GBM models employed. Once this is addressed, and we develop effective gene therapies in models that better replicate the clinical scenario, gene therapy will provide a powerful approach to treat and manage brain tumors.
Insights
Gene therapy offers a promising approach for treating aggressive glioblastoma brain tumors. Further research using more accurate preclinical models is needed to improve clinical trial success and patient outcomes.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Cancer Genetics
Background:
- Glioblastoma is the most common and aggressive primary adult brain tumor.
- Current treatments offer limited survival benefits for glioblastoma patients.
- Gene therapy presents a novel therapeutic avenue for glioma treatment.
Purpose of the Study:
- To review preclinical models for glioma gene therapy.
- To examine promising therapeutic targets and mechanisms of action.
- To summarize clinical trial outcomes and identify future research directions.
Main Methods:
- Review of preclinical glioma models (xenografts, syngeneic, genetic).
- Analysis of gene therapy targets by mechanism (cytotoxic, toxins, viruses, oncogenes, immune stimulation).
- Summary of reported clinical trial data for various gene therapy approaches.
Main Results:
- Preclinical models show promise for several gene therapy strategies.
- Clinical trial results have not consistently matched preclinical predictions.
- Discrepancies may stem from limitations in current glioblastoma models.
Conclusions:
- Improved preclinical models that better replicate the clinical scenario are essential.
- Gene therapy holds significant potential for treating brain tumors.
- Refining models will accelerate the development of effective gene therapies for glioblastoma.
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