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Specific expression of PD-L1 in RELA-fusion supratentorial ependymoma: Implications for PD-1-targeted therapy
Davis A Witt1,2, Andrew M Donson1,2, Vladimir Amani1,2
1Department of Pediatrics, University of Colorado Denver, Aurora, Colorado.
Background:
A desperate need for novel therapies in pediatric ependymoma (EPN) exists, as chemotherapy remains ineffective and radiotherapy often fails. EPN have significant infiltration of immune cells, which correlates with outcome. Immune checkpoint inhibitors provide an avenue for new treatments. This study characterizes tumor-infiltrating immune cells in EPN and aims at predicting candidates for clinical trials using checkpoint inhibitors targeting PD-L1/PD-1 (programmed death ligand 1/programmed death 1).
Methods:
The transcriptomic profiles of the primary study cohort of EPN and other pediatric brain tumors were interrogated to identify PD-L1 expression levels. Transcriptomic findings were validated using the western blotting, immunohistochemistry and flow cytometry.
Results:
We evaluated PD-L1 mRNA expression across four intracranial subtypes of EPN in two independent cohorts and found supratentorial RELA fusion (ST-RELA) tumors to have significantly higher levels. There was a correlation between high gene expression and protein PD-L1 levels in ST-RELA tumors by both the western blot and immunohistochemisty. The investigation of EPN cell populations revealed PD-L1 was expressed on both tumor and myeloid cells in ST-RELA. Other subtypes had little PD-L1 in either tumor or myeloid cell compartments. Lastly, we measured PD-1 levels on tumor-infiltrating T cells and found ST-RELA tumors express PD-1 in both CD4 and CD8 T cells. A functional T-cell exhaustion assay found ST-RELA T cells to be exhausted and unable to secrete IFNγ on stimulation.
Conclusions:
These findings in ST-RELA suggest tumor evasion and immunsuppression due to PD-L1/PD-1-mediated T-cell exhaustion. Trials of checkpoint inhibitors in EPN should be enriched for ST-RELA tumors.
Insights
Pediatric ependymoma (EPN) shows high PD-L1/PD-1 expression in ST-RELA tumors, leading to T-cell exhaustion. These findings suggest checkpoint inhibitors may benefit EPN patients, particularly those with ST-RELA subtype.
Area of Science:
- Neuro-oncology
- Immunology
- Pediatric oncology
Background:
- Pediatric ependymoma (EPN) lacks effective therapies, with chemotherapy and radiotherapy showing limited success.
- EPN exhibits significant immune cell infiltration, correlating with patient outcomes.
- Immune checkpoint inhibitors offer a promising therapeutic avenue for EPN.
Purpose of the Study:
- To characterize tumor-infiltrating immune cells in pediatric ependymoma (EPN).
- To identify EPN subtypes suitable for clinical trials involving immune checkpoint inhibitors targeting programmed death ligand 1 (PD-L1) and programmed death 1 (PD-1).
Main Methods:
- Transcriptomic profiling of EPN and other pediatric brain tumors to assess PD-L1 expression.
- Validation of transcriptomic findings using western blotting, immunohistochemistry, and flow cytometry.
- Measurement of PD-1 levels on tumor-infiltrating T cells and functional T-cell exhaustion assays.
Main Results:
- Supratentorial RELA fusion (ST-RELA) EPN subtypes exhibited significantly higher PD-L1 mRNA and protein expression compared to other subtypes.
- PD-L1 was expressed on both tumor and myeloid cells in ST-RELA EPN.
- ST-RELA tumors showed PD-1 expression on CD4 and CD8 T cells, which were functionally exhausted and unable to secrete IFNγ upon stimulation.
Conclusions:
- High PD-L1/PD-1 expression in ST-RELA EPN contributes to tumor immune evasion and immunosuppression via T-cell exhaustion.
- Clinical trials for EPN should prioritize patient enrollment from the ST-RELA subtype for checkpoint inhibitor therapies.
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