Immunotherapy for pediatric solid tumors: overcoming biological barriers through rational multimodal combinations
Mahsa Fatahichegeni1, Mohammad Amin Ansarian2, Mi Xiao1
1Department of Pediatrics, the First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, 710061, People's Republic of China.
Abstract:
Pediatric solid tumors remain among the most treatment-refractory childhood malignancies, defined by biological features that have largely resisted the immunotherapeutic advances transforming adult oncology. Exceptionally low tumor mutational burden, sparse neoantigen landscapes, and profoundly immunosuppressive tumor microenvironments collectively undermine the T cell-dependent mechanisms on which most current immunotherapies depend. Yet the field is undergoing a meaningful shift. Anti-GD2 monoclonal antibodies have established a survival benchmark in high-risk neuroblastoma, and next-generation antibody-drug conjugates and bispecific T cell engagers targeting GD2, B7-H3, and GPC2 are extending the reach of antibody-based approaches across pediatric histologies. CAR T cell therapies have demonstrated clinical feasibility against multiple targets, with advanced engineering strategies, including cytokine armoring, bispecific constructs, and locoregional delivery, beginning to address fundamental barriers such as poor tumor infiltration, limited persistence, and antigen escape. Immune checkpoint inhibitors, while largely ineffective as monotherapy in unselected populations, induce durable responses in molecularly defined subsets such as mismatch repair-deficient and hypermutated tumors. Emerging platforms, including oncolytic virotherapy, NK cell engagers, and neoantigen vaccines, offer rational strategies to convert immunologically cold tumors into treatment-responsive phenotypes. Together, these advances point toward a future of combination immunotherapy tailored to the distinct immune biology of childhood cancers.
Insights
Pediatric solid tumors are challenging to treat due to their biology. New immunotherapies, including antibody-based treatments and CAR T cells, show promise for improving outcomes in childhood cancers.
Area of Science:
- Pediatric Oncology
- Cancer Immunology
- Immunotherapy
Background:
- Pediatric solid tumors are largely resistant to current immunotherapies.
- Low tumor mutational burden and immunosuppressive microenvironments hinder T cell-dependent treatments.
- Advances in adult oncology immunotherapy have not translated effectively to childhood cancers.
Purpose of the Study:
- To review recent advances in immunotherapy for pediatric solid tumors.
- To discuss emerging platforms and strategies to overcome treatment resistance.
- To highlight the potential for combination immunotherapy tailored to childhood cancer biology.
Main Methods:
- Review of current literature on pediatric solid tumor immunotherapies.
- Analysis of novel therapeutic platforms including antibody-drug conjugates, CAR T cells, and oncolytic virotherapy.
- Discussion of strategies to enhance T cell function and overcome immunosuppression.
Main Results:
- Anti-GD2 antibodies and antibody-drug conjugates show efficacy in neuroblastoma and other histologies.
- CAR T cell therapies are feasible, with engineering strategies addressing infiltration and persistence.
- Immune checkpoint inhibitors benefit specific molecular subsets; emerging platforms aim to "warm" cold tumors.
Conclusions:
- Significant progress is being made in pediatric cancer immunotherapy.
- Novel antibody-based therapies, CAR T cells, and emerging platforms offer new hope.
- Combination immunotherapy tailored to specific tumor immune biology is the future direction.
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