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Immune checkpoint inhibitors in Wilms' tumor and Neuroblastoma: What now?
Anders Valind1,2, David Gisselsson1,3
1Division of Clinical Genetics, Lund University, Lund, Sweden.
Background:
Therapeutic activation of tumor-infiltrating lymphocytes using monoclonal antibodies targeting PD1 or PD-L1 (immune checkpoint inhibitors-ICIs) has revolutionized treatment of specific solid tumors in adult cancer patients, and much hope has been placed on a similar effect in relapsed or refractory solid pediatric tumors. Recent clinical trials have disappointingly shown an almost nonexistent response rate, while case reports have demonstrated that some pediatric patients do achieve durable responses when treated with this type of drug.
Aim:
To elucidate this paradox, we mapped the landscape of expressed neoantigens as well as the levels of immune cell infiltration in the two most common extracranial solid pediatric tumors: Wilms tumor and neuroblastoma using state-of-the-art in silico analysis of a large cohort of patients with these tumors.
Methods:
By integration of whole exome sequencing and RNA-sequencing, we mapped the landscape of neoantigens in the TARGET cohorts for these diagnoses and correlated these findings with known genetic prognostic markers.
Results:
Our analysis shows that these tumors typically have much lower levels of expressed neoantigens than commonly seen in adult cancers, but we also identify subgroups with significantly higher levels of neoantigens. For neuroblastomas, the cases with higher levels of neoantigens were confined to the group without MYCN-amplification and for Wilms tumor restricted to the TP53-mutated cases. Furthermore, we demonstrate that neuroblastomas have an unexpectedly high level of CD8+ tumor-infiltrating lymphocytes, even when compared to adult tumor types where ICI is an approved treatment.
Conclusion:
These results could be important to consider when designing future clinical trials of ICI treatment in pediatric patients with relapsed or refractory solid tumors.
Insights
Pediatric solid tumors show low neoantigen expression, but specific subgroups with higher neoantigens exist. Neuroblastomas have high CD8+ T-cell infiltration, suggesting potential for immune checkpoint inhibitor therapy in select pediatric cancer patients.
Area of Science:
- Pediatric Oncology
- Immunology
- Genomics
Background:
- Immune checkpoint inhibitors (ICIs) targeting PD1/PD-L1 have transformed adult cancer therapy.
- Pediatric solid tumors show limited response to ICIs, creating a therapeutic paradox.
- Case reports indicate durable responses in some pediatric patients, necessitating further investigation.
Purpose of the Study:
- To investigate the neoantigen landscape and immune cell infiltration in pediatric Wilms tumor and neuroblastoma.
- To elucidate the reasons behind the differential response to ICIs in pediatric solid tumors.
Main Methods:
- In silico analysis of large patient cohorts for Wilms tumor and neuroblastoma.
- Integration of whole exome sequencing and RNA-sequencing data.
- Correlation of neoantigen levels with genetic prognostic markers.
Main Results:
- Pediatric tumors generally exhibit lower neoantigen expression compared to adult cancers.
- Subgroups with significantly higher neoantigens were identified: MYCN-nonamplified neuroblastomas and TP53-mutated Wilms tumors.
- Neuroblastomas demonstrated high CD8+ tumor-infiltrating lymphocyte levels, comparable to adult tumors responsive to ICIs.
Conclusions:
- Findings highlight distinct neoantigen profiles in pediatric solid tumors.
- High CD8+ T-cell infiltration in neuroblastoma suggests potential ICI efficacy in specific subsets.
- Results inform the design of future clinical trials for ICIs in relapsed/refractory pediatric solid tumors.
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