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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
Recent advances in experimental molecular therapeutics for malignant gliomas
Gautam Prasad1, Hui Wang, Donald L Hill
1Department of Pharmacology and Toxicology, University of Alabama at Birmingham, VH 113, Box 600, 1670 University Blvd., Birmingham, AL 35294, USA.
Abstract:
The current lack of effective therapy for malignant gliomas has prompted the development of three primary foci of molecular research: anti-angiogenesis therapy, immunotherapy, and DNA- and RNA-based therapies. Angiogenesis inhibitors, designed to exploit the highly vascularized nature of gliomas, target endothelial cells and/or the extracellular matrix and bypass many of the problems of conventional chemotherapy. There may be easy access to the molecular target (e.g. blood vessels), reduced induction of drug resistance, and general lack of host toxicity. The relatively immunoprivileged status of the brain has also prompted use of immune stimulation as an anti-glioma strategy. Lines of attack include global cytokine therapy, vaccination with specific tumor antigens, dosing with monoclonal antibodies conjugated to radioisotopes or toxins, and ex vivo priming of lymphocytes. With regard to DNA- and RNA-based therapy, numerous oncogenic proteins have been targeted by antisense molecules administered alone or in combination with conventional chemotherapy and radiation. In one tactic, termed "suicide" gene therapy, herpes simplex thymidine kinase has been transfected into glioma cells via a retrovirus; subsequent introduction of ganciclovir causes cytotoxicity in the transduced cells. Although considerable preclinical data have been accumulated, promising results for therapy of human glioma have only recently appeared.
Insights
Malignant glioma treatment is advancing with molecular research focusing on anti-angiogenesis, immunotherapy, and gene therapy. These novel strategies offer potential for more effective and less toxic glioma treatments.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Cancer Therapy
Background:
- Malignant gliomas lack effective treatments, necessitating novel therapeutic approaches.
- Gliomas are highly vascular, presenting unique molecular targets.
- The brain's immunoprivileged status influences immunotherapy strategies.
Purpose of the Study:
- To review the primary molecular research foci for malignant glioma therapy.
- To explore anti-angiogenesis, immunotherapy, and DNA/RNA-based therapies.
- To highlight recent advancements and potential of these novel strategies.
Main Methods:
- Review of anti-angiogenesis strategies targeting tumor vasculature.
- Exploration of various immunotherapy approaches for glioma.
- Analysis of DNA and RNA-based therapies, including suicide gene therapy.
Main Results:
- Anti-angiogenesis inhibitors offer targeted therapy with potential for reduced resistance and toxicity.
- Immunotherapy strategies leverage cytokine therapy, tumor antigen vaccination, and antibody conjugates.
- DNA/RNA-based therapies, including suicide gene therapy, show promise in preclinical studies.
Conclusions:
- Molecular research in anti-angiogenesis, immunotherapy, and gene therapy shows significant promise for malignant glioma treatment.
- These novel approaches may overcome limitations of conventional chemotherapy.
- Recent clinical data suggests a potential breakthrough in human glioma therapy.

