Neuroblastoma in Childhood: Biological Insights, Risk Stratification, and Advances in Multimodal Therapy
Нейробластома у детей: биологические аспекты, стратификация риска и достижения мультимодальной терапии
2026-01-30
SCID: 54.1/36arnk8f
Discuss with AI
ALK mutationsAnti-GD2 monoclonal antibodiesMYCN amplificationNeuroblastomaRisk stratification
Figures from the paper
Abstract (AI)
Neuroblastoma is the most common extracranial solid tumor of childhood and remains a leading cause of cancer-related mortality in pediatric patients. Characterized by marked clinical and biological heterogeneity, the disease ranges from spontaneously regressing tumors in infants to highly aggressive, treatment-resistant malignancies in older children. Advances in molecular biology and genomics have significantly improved understanding of neuroblastoma pathogenesis, revealing the critical role of genetic and epigenetic alterations—such as MYCN amplification, ALK mutations, and chromosomal aberrations—in disease behavior and prognosis. Contemporary risk stratification systems now integrate clinical, biological, and molecular features to guide therapy more precisely. Management strategies have evolved toward risk-adapted, multimodal approaches. Low- and intermediate-risk patients often achieve excellent outcomes with surgery alone or limited chemotherapy, whereas high-risk neuroblastoma requires intensive multimodal treatment including induction chemotherapy, surgical resection, high-dose chemotherapy with autologous stem cell rescue, radiotherapy, and maintenance therapy. The incorporation of immunotherapeutic approaches, particularly anti-GD2 monoclonal antibodies, has significantly improved survival in high-risk disease. Emerging therapies such as targeted agents, radiopharmaceuticals, and cellular immunotherapies are further expanding the therapeutic landscape. Despite these advances, high-risk and relapsed neuroblastoma remain associated with substantial morbidity and mortality. Ongoing challenges include treatment resistance, long-term toxicity, and disparities in access to advanced therapies. Continued progress will depend on integrating molecular profiling into clinical decision-making, refining risk-adapted treatment strategies, and expanding international collaborative research efforts. This narrative review summarizes current knowledge on neuroblastoma epidemiology, biology, staging, and treatment, highlighting recent advances and future directions aimed at improving outcomes for affected children.
Key Findings
1
Anti-GD2 monoclonal antibody immunotherapy has significantly improved survival in high-risk neuroblastoma, while targeted agents, radiopharmaceuticals, and cellular immunotherapies are expanding treatment options.
2
Genetic and epigenetic alterations, including MYCN amplification, ALK mutations, and chromosomal aberrations, critically influence neuroblastoma behavior and prognosis.
3
High-risk and relapsed neuroblastoma remain major clinical challenges because of treatment resistance, substantial morbidity and mortality, long-term toxicity, and unequal access to advanced therapies.
4
Low- and intermediate-risk patients often achieve excellent outcomes with surgery alone or limited chemotherapy, whereas high-risk disease requires intensive multimodal therapy.
5
Modern risk stratification integrates clinical, biological, and molecular features to guide more precise, risk-adapted treatment selection.
6
Neuroblastoma exhibits substantial clinical and biological heterogeneity, ranging from spontaneous regression in infants to aggressive, treatment-resistant disease in older children.
Research Object
Childhood neuroblastoma
Research Subject
The biological heterogeneity, molecular and prognostic determinants, risk stratification, and outcomes of multimodal, risk-adapted therapy
Publication Details
Publication Date
2026-01-30
Journal
Publisher
ISSN
Cited by
14
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest