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Impact of Radiochemotherapy on Immune Cell Subtypes in High-Grade Glioma Patients
Valérie Dutoit1,2, Géraldine Philippin1,2, Valérie Widmer1,2
1Laboratory of Tumor Immunology and Center of Oncology, Geneva University Hospital, Geneva, Switzerland.
Abstract:
Glioblastoma is a dreadful disease with very poor prognosis, median overall survival being <2 years despite standard-of-care treatment. This has led to the development of alternative strategies, among which immunotherapy is being actively tested. In particular, many clinical trials of therapeutic vaccination using peptides or tumor cells are ongoing. A major issue in implementing therapeutic vaccines in patients with high-grade glioma is that immune responses have to be elicited in the context of immunosuppressive treatments. Indeed, radiotherapy, chemotherapy, and steroids, which are part of the standard of care for patients with glioblastoma, are known to deplete leukocytes. Whether lymphopenia is beneficial or detrimental to elicitation of efficient immune responses is still debated. Here, in order to determine the impact of standard radiochemotherapy on immune cell subsets, we analyzed the phenotype and function of immune populations in 25 patients with high-grade glioma along concomitant radiochemotherapy and adjuvant chemotherapy with temozolomide. Thirteen healthy individuals were studied along the same period. We show that absolute T and B cell counts are reduced upon concomitant radiochemotherapy. Importantly, T cell counts were not restored long-term after discontinuation of treatment. In addition, the percentage of T regulatory cells among CD4 T cells was increased during the same period and was not decreased upon treatment discontinuation. Finally, we show that the ability of T cells to proliferate is transiently reduced after concomitant radiochemotherapy but is restored at the time of adjuvant TMZ cycles. Although not experimentally validated, transient reduction in proliferation associated with strong lymphopenia during radiochemotherapy may suggest that vaccine-induced T cell stimulation would be suboptimal in that period and that therapeutic vaccination should be performed outside radiochemotherapy administration. In addition, strategies aiming at depleting Treg cells should be implemented in future trials.
Insights
Standard glioblastoma treatments like radiochemotherapy significantly reduce T and B cell counts, impacting immune responses. Therapeutic vaccination may be more effective when administered outside of these treatments.
Area of Science:
- Neuro-oncology
- Immunology
- Cancer Therapy
Background:
- Glioblastoma has a poor prognosis, driving research into alternative treatments like immunotherapy.
- Standard glioblastoma care (radiotherapy, chemotherapy, steroids) can suppress the immune system, complicating immunotherapy efficacy.
- The impact of treatment-induced lymphopenia on immune responses in glioblastoma patients is not fully understood.
Purpose of the Study:
- To investigate the effects of standard radiochemotherapy on immune cell subsets in high-grade glioma patients.
- To assess the long-term impact of treatment on immune cell counts and function.
- To inform the optimal timing for therapeutic vaccination in glioblastoma patients.
Main Methods:
- Analysis of immune cell phenotypes and functions in 25 high-grade glioma patients undergoing radiochemotherapy and temozolomide.
- Comparison with 13 healthy individuals over the same time period.
- Flow cytometry and functional assays to evaluate T and B cell counts, T regulatory cell percentages, and T cell proliferation.
Main Results:
- Concomitant radiochemotherapy significantly reduced absolute T and B cell counts.
- T cell counts remained low long-term after treatment cessation.
- The percentage of T regulatory cells increased and did not decrease post-treatment.
- T cell proliferation was transiently reduced during radiochemotherapy but restored during adjuvant temozolomide cycles.
Conclusions:
- Radiochemotherapy-induced lymphopenia and increased T regulatory cells may impair immunotherapy efficacy in glioblastoma.
- Therapeutic vaccination might be suboptimal during radiochemotherapy due to reduced T cell proliferation and lymphopenia.
- Future glioblastoma immunotherapy trials should consider timing vaccination outside radiochemotherapy and explore strategies to deplete T regulatory cells.
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