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Review: therapeutic approaches for circadian modulation of the glioma microenvironment
Ella A Nettnin1, Thien Nguyen2, Sophia Arana1
1Department of Neurosurgery, Stanford University School of Medicine, Stanford, CA, United States.
Abstract:
High-grade gliomas are malignant brain tumors that are characteristically hard to treat because of their nature; they grow quickly and invasively through the brain tissue and develop chemoradiation resistance in adults. There is also a distinct lack of targeted treatment options in the pediatric population for this tumor type to date. Several approaches to overcome therapeutic resistance have been explored, including targeted therapy to growth pathways (ie. EGFR and VEGF inhibitors), epigenetic modulators, and immunotherapies such as Chimeric Antigen Receptor T-cell and vaccine therapies. One new promising approach relies on the timing of chemotherapy administration based on intrinsic circadian rhythms. Recent work in glioblastoma has demonstrated temporal variations in chemosensitivity and, thus, improved survival based on treatment time of day. This may be due to intrinsic rhythms of the glioma cells, permeability of the blood brain barrier to chemotherapy agents, the tumor immune microenvironment, or another unknown mechanism. We review the literature to discuss chronotherapeutic approaches to high-grade glioma treatment, circadian regulation of the immune system and tumor microenvironment in gliomas. We further discuss how these two areas may be combined to temporally regulate and/or improve the effectiveness of immunotherapies.
Insights
High-grade gliomas are difficult to treat due to rapid growth and resistance. Timing chemotherapy based on circadian rhythms shows promise for improving glioblastoma treatment outcomes.
Area of Science:
- Neuro-oncology
- Chronobiology
- Immunotherapy
Background:
- High-grade gliomas (HGGs) are aggressive brain tumors with poor prognoses.
- Current treatments face challenges due to rapid invasion and resistance to chemoradiation.
- Pediatric HGGs lack targeted therapeutic options.
Purpose of the Study:
- To review chronotherapeutic strategies for high-grade glioma treatment.
- To explore the role of circadian rhythms in glioma biology and treatment response.
- To discuss the integration of chronotherapy with immunotherapy for enhanced efficacy.
Main Methods:
- Literature review of chronotherapy in high-grade gliomas.
- Analysis of circadian regulation in the tumor immune microenvironment.
- Exploration of temporal modulation of immunotherapies.
Main Results:
- Chemosensitivity in glioblastoma varies with the time of day, impacting survival.
- Circadian rhythms influence glioma cell behavior, blood-brain barrier permeability, and immune responses.
- Temporal administration of therapies may overcome resistance mechanisms.
Conclusions:
- Chronotherapy presents a promising approach to improve high-grade glioma treatment.
- Understanding circadian rhythms is crucial for optimizing glioma therapies.
- Combining chronotherapy with immunotherapy holds potential for synergistic effects.

