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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
Dendritic cell therapy of high-grade gliomas
Stefaan Van Gool1, Wim Maes, Hilko Ardon
1Laboratory of Experimental Immunology, and Department of Child & Woman, Catholic University of Leuven, Leuven, Belgium. stefaan.vangool@uz.kuleuven.be
Abstract:
The prognosis of patients with malignant glioma is poor in spite of multimodal treatment approaches consisting of neurosurgery, radiochemotherapy and maintenance chemotherapy. Among innovative treatment strategies like targeted therapy, antiangiogenesis and gene therapy approaches, immunotherapy emerges as a meaningful and feasible treatment approach for inducing long-term survival in at least a subpopulation of these patients. Setting up immunotherapy for an inherent immunosuppressive tumor located in an immune-privileged environment requires integration of a lot of scientific input and knowledge of both tumor immunology and neuro-oncology. The field of immunotherapy is moving into the direction of active specific immunotherapy using autologous dendritic cells (DCs) as vehicle for immunization. In the translational research program of the authors, the whole cascade from bench to bed to bench of active specific immunotherapy for malignant glioma is covered, including proof of principle experiments to demonstrate immunogenicity of patient-derived mature DCs loaded with autologous tumor lysate, preclinical in vivo experiments in a murine orthotopic glioma model, early phase I/II clinical trials for relapsing patients, a phase II trial for patients with newly diagnosed glioblastoma (GBM) for whom immunotherapy is integrated in the current multimodal treatment, and laboratory analyses of patient samples. The strategies and results of this program are discussed in the light of the internationally available scientific literature in this fast-moving field of basic science and translational clinical research.
Insights
Active specific immunotherapy using dendritic cells (DCs) shows promise for malignant glioma. This approach, involving patient-derived DCs, is being translated from bench to clinical trials for improved patient outcomes.
Area of Science:
- Neuro-oncology
- Tumor Immunology
- Translational Research
Background:
- Malignant glioma patients have a poor prognosis despite standard multimodal treatments.
- Immunotherapy is an emerging strategy for inducing long-term survival in a subset of patients.
- Developing immunotherapy for brain tumors requires expertise in tumor immunology and neuro-oncology due to the immunosuppressive tumor microenvironment and immune privilege.
Purpose of the Study:
- To present a translational research program on active specific immunotherapy for malignant glioma.
- To cover the entire process from preclinical research to clinical trials.
- To evaluate the efficacy and feasibility of dendritic cell (DC)-based immunotherapy.
Main Methods:
- Proof of principle experiments using patient-derived mature DCs loaded with autologous tumor lysate.
- Preclinical in vivo experiments in a murine orthotopic glioma model.
- Phase I/II clinical trials for relapsing patients and a Phase II trial for newly diagnosed glioblastoma (GBM) patients, integrating immunotherapy into multimodal treatment.
Main Results:
- Demonstrated immunogenicity of patient-derived mature DCs.
- Preclinical studies supported the therapeutic potential.
- Clinical trials are evaluating the safety and efficacy of DC-based immunotherapy in glioma patients.
Conclusions:
- Active specific immunotherapy using autologous dendritic cells is a feasible and meaningful approach for malignant glioma.
- The translational research program covers the bench-to-bedside-to-bench cascade.
- Further research and clinical trials are warranted to optimize this immunotherapy strategy for long-term patient survival.

