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Factors Influencing Immunotherapy Response in Neuroblastoma: From Tumor Microenvironment to Combination Strategies
Xiaoran Du1,2, Rui Dong1,2, Kuiran Dong1,2
1Department of Pediatric Surgery, Children's Hospital of Fudan University, Shanghai 201102, China.
Abstract:
Neuroblastoma is the most common extracranial solid tumor in children, and the prognosis for high-risk patients remains dismal. Immunotherapies, represented by anti-GD2 monoclonal antibodies and chimeric antigen receptor T cells (CAR-T), have significantly improved the survival of high-risk neuroblastoma patients and become part of standard therapy. However, their efficacy exhibits significant inter-individual heterogeneity, with some patients showing primary resistance or secondary relapse. This review aims to analyze the multi-faceted factors influencing the response to immunotherapy in neuroblastoma, including: (1) the inherent immunosuppressive properties of the tumor microenvironment, such as infiltration of myeloid-derived suppressor cells and tumor-associated macrophages, as well as checkpoint molecules and metabolic barriers; (2) tumor cell-intrinsic characteristics, such as low tumor mutational burden, MYCN amplification-associated downregulation of MHC-I, and heterogeneity of GD2 antigen expression; (3) host factors, such as systemic immune status and Fc receptor polymorphisms; and (4) treatment-related factors, such as combination strategies and the development of novel immunotherapeutic products. A deep understanding of these interrelated factors is crucial for developing predictive biomarkers, designing novel combination strategies and next-generation immunotherapies, and ultimately achieving precise immunotherapy for neuroblastoma.
Insights
Neuroblastoma immunotherapy shows varied success. Understanding tumor, host, and treatment factors is key to improving outcomes for children with this common childhood cancer.
Area of Science:
- Pediatric Oncology
- Cancer Immunology
- Immunotherapy
Background:
- Neuroblastoma is a common childhood extracranial solid tumor with poor prognosis in high-risk cases.
- Immunotherapies like anti-GD2 antibodies and CAR-T cells have improved survival but face resistance and relapse.
- Significant inter-individual heterogeneity exists in treatment response.
Purpose of the Study:
- To analyze multifaceted factors influencing neuroblastoma immunotherapy response.
- To identify key elements for developing predictive biomarkers and novel therapies.
- To advance precise immunotherapy strategies for neuroblastoma patients.
Main Methods:
- Review of literature on neuroblastoma immunotherapy.
- Analysis of tumor microenvironment, tumor-intrinsic, host, and treatment-related factors.
- Synthesis of current knowledge on immunotherapy resistance and efficacy.
Main Results:
- Immunosuppressive tumor microenvironment (MDSCs, TAMs, checkpoints, metabolic barriers) impacts efficacy.
- Tumor-intrinsic factors (low TMB, MYCN amplification, MHC-I downregulation, GD2 heterogeneity) affect response.
- Host factors (immune status, Fc receptor polymorphisms) and treatment strategies (combinations, novel products) play crucial roles.
Conclusions:
- Understanding these factors is crucial for precise neuroblastoma immunotherapy.
- Development of predictive biomarkers and next-generation immunotherapies is essential.
- Tailoring treatment strategies based on individual patient factors will improve outcomes.
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