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Updated: Mar 28, 2026

Bioluminescence Imaging of an Immunocompetent Animal Model for Glioblastoma
Published on: January 15, 2016
A therapeutic cancer vaccine against GL261 murine glioma
Mark S Kindy1, Jin Yu2, Hong Zhu3
1Department of Pharmaceutical Sciences, University of South Florida, Tampa, FL, 33612, USA. kindym@health.usf.edu.
Background:
Glioblastoma (GBM) is the deadliest of brain tumors. Standard treatment for GBM is surgery, followed by combined radiation therapy and chemotherapy. Current therapy prolongs survival but does not offer a cure. We report on a novel immunotherapy against GBM, tested in an animal model of C57BL/6 mice injected intra-cranially with a lethal dose of murine GL261 glioma cells.
Methods:
Ten week-old C57BL/6 mice were anesthetized before injection of 2 × 10(4) GL261 cells in the right cerebral hemisphere and after 3 days half of the mice were administered a single subcutaneous (s.c.) injection of irradiated semi-allogeneic vaccine, while mock-vaccinated mice received a s.c. injection of phosphate-buffered saline (PBS). Tumor engraftment was monitored through bioluminescence imaging (BLI). Length of animal survival was measured by Kaplan-Meier graphs and statistics. At time of sacrifice brain tissue was processed for estimation of tumor size and immunohistochemical studies.
Results:
Overall survival of vaccinated mice was significantly longer compared to mock-vaccinated mice. Five to ten percent of vaccinated mice survived more than 90 days following the engraftment of GL261 cells in the brain and appeared to be free of disease by BLI. Tumor volume in the brain of vaccinated mice was on average five to ten-fold smaller compared to mock-vaccinated mice. In vaccinated mice, conspicuous microglia infiltrates were observed in tumor tissue sections and activated microglia appeared to form a fence along the perimeter of the tumor cells. The results of these animal studies persuaded the Office of Orphan Products Development of the Food and Drug Administration (FDA) to grant Orphan Drug Designation for treatment of GBM with irradiated, semi-allogeneic vaccines.
Conclusions:
Our preclinical observations suggest that semi-allogeneic vaccines could be tested clinically on subjects with GBM, as an adjuvant to standard treatment.
Insights
This study shows that a novel immunotherapy using irradiated semi-allogeneic vaccines significantly improved survival in mice with glioblastoma (GBM). The vaccine therapy reduced tumor size and led to long-term survival in some GBM-bearing mice.
Area of Science:
- Neuro-oncology
- Immunotherapy
- Preclinical Cancer Research
Background:
- Glioblastoma (GBM) is an aggressive brain tumor with limited treatment options.
- Standard GBM treatment (surgery, radiation, chemotherapy) prolongs survival but does not cure.
- Novel immunotherapies are needed to improve GBM patient outcomes.
Purpose of the Study:
- To evaluate a novel immunotherapy for glioblastoma (GBM) in a preclinical mouse model.
- To assess the efficacy of irradiated semi-allogeneic vaccines in extending survival and reducing tumor burden.
- To investigate the immunological response within the tumor microenvironment.
Main Methods:
- GL261 glioma cells were intracranially injected into C57BL/6 mice.
- Mice received either an irradiated semi-allogeneic vaccine or a mock vaccination (PBS).
- Tumor growth, survival rates, and tumor volume were monitored; immunohistochemistry was performed.
Main Results:
- Vaccinated mice demonstrated significantly longer survival compared to controls.
- A subset of vaccinated mice survived over 90 days, appearing disease-free.
- Tumor volumes were reduced five to ten-fold in vaccinated mice.
- Microglia infiltration and activation were observed around tumor cells in vaccinated mice.
- The study led to Orphan Drug Designation for GBM treatment.
Conclusions:
- Preclinical data suggest semi-allogeneic vaccines are a promising adjuvant therapy for GBM.
- Further clinical investigation of this immunotherapy for GBM is warranted.
- This approach may offer a new strategy against aggressive brain tumors.
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