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Checkpoint inhibitor immunotherapy for glioblastoma: current progress, challenges and future outlook
Patrick C Gedeon1, Cosette D Champion2, Kristen E Rhodin3
1Department of Surgery, Brigham and Women's Hospital and Harvard Medical School , Boston, MA, USA.
Introduction:
Despite maximal surgical resection and chemoradiation, glioblastoma (GBM) continues to be associated with significant morbidity and mortality. Novel therapeutic strategies are urgently needed. Given success in treating multiple other forms of cancer, checkpoint inhibitor immunotherapy remains foremost amongst novel therapeutic strategies that are currently under investigation.
Areas Covered:
Through a systematic review of both published literature and the latest preliminary data available from ongoing clinical studies, we provide an up-to-date discussion on the immune system in the CNS, a detailed mechanistic evaluation of checkpoint biology in the CNS along with evidence for disruption of these pathways in GBM, and a summary of available preclinical and clinical data for checkpoint blockade in GBM. We also include a discussion of novel, emerging targets for checkpoint blockade which may play an important role in GBM immunotherapy.
Expert Opinion:
Evidence indicates that while clinical success of checkpoint blockade for the treatment of GBM has been limited to date, through improved preclinical models, optimization in the context of standard of care therapies, assay standardization and harmonization, and combinatorial approaches which may include novel targets for checkpoint blockade, checkpoint inhibitor immunotherapy may yield a safe and effective therapeutic option for the treatment of GBM.
Insights
Checkpoint inhibitor immunotherapy shows promise for glioblastoma (GBM) treatment. Further research into novel targets and combinatorial approaches may improve its efficacy for this aggressive brain cancer.
Area of Science:
- Neuro-oncology
- Immunotherapy
- Cancer research
Background:
- Glioblastoma (GBM) remains a significant challenge despite standard treatments.
- Novel therapeutic strategies, including immunotherapy, are crucial for improving patient outcomes.
Purpose of the Study:
- To review the current landscape of checkpoint inhibitor immunotherapy for GBM.
- To discuss the role of the central nervous system (CNS) immune system and checkpoint biology in GBM.
- To summarize preclinical and clinical data, and explore emerging targets for GBM immunotherapy.
Main Methods:
- Systematic review of published literature.
- Analysis of preliminary data from ongoing clinical studies.
- Mechanistic evaluation of checkpoint biology in the CNS and GBM.
Main Results:
- Checkpoint blockade has shown limited clinical success in GBM to date.
- Preclinical models and ongoing studies provide valuable insights into potential efficacy.
- Emerging targets for checkpoint blockade may enhance GBM immunotherapy.
Conclusions:
- Optimizing immunotherapy with standard care, improved models, and novel targets is key.
- Combinatorial approaches hold promise for developing safe and effective GBM treatments.
- Checkpoint inhibitor immunotherapy may become a viable therapeutic option for glioblastoma.
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