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Craniospinal irradiation (CSI) is a cornerstone of pediatric brain cancer therapy, yet detailed, reproducible protocols for accurate CSI delivery in preclinical mouse models remain scarce, hindering translational research and the development of radiosensitizing strategies. We aimed to establish a clinically relevant, easily replicable radiation therapy protocol for medulloblastoma mouse models, providing a robust platform for preclinical evaluation of novel therapeutic combinations.
Melanoma, also known as malignant melanoma, occurs when abnormal skin cells multiply rapidly in an uncontrolled way.
Brain tumours are the second most common cancer in children (after leukaemia).
Local treatment of pelvic Ewing Sarcoma (EWS) is czhallenging due to complex anatomy and potential complications. Local therapy may be deferred to maintain chemotherapy dose-intensity, but the impact of this delay on outcomes remains unclear.
The RNA-binding protein IGF2BP3 is an oncofetal protein overexpressed in B-acute lymphoblastic leukemia and is critical for leukemogenesis in experimental models. With cancerspecific expression, functional dispensability for normal development, and an unleveraged prooncogenic function in mRNA homeostasis, IGF2BP3 represents an excellent target.
It is now well accepted that germline or de novo genetic alterations predispose to cancer development, especially during childhood. Among them, constitutive trisomy 21, also known as Down syndrome (DS), has been shown to predispose to acute leukemia affecting both the myeloid (ML-DS) and lymphoid (DS-ALL) lineages. ML-DS is associated with a good prognosis compared to children without DS, due in part to a higher sensitivity to conventional chemotherapy.
The relationship between anesthetic technique and pediatric oncological outcomes is an emerging field of interest. With significant improvements in childhood cancer survival in recent decades, there is an increased focus on optimizing the quality of survival and reducing the incidence of metastasis and recurrence. The aim of this narrative review article is to investigate and consolidate the current available evidence assessing the immunomodulatory effects of anesthesia in the pediatric oncology population.
High-grade glioma (HGG) cells reactivate neurodevelopmental programs regulated by ion channels to drive tumor progression. The activity of voltage-gated sodium channels (VGSCs) is fundamental to development, a target of blood-brain barrier (BBB)-permeable FDA-approved drugs, and aids tumor advancement in several cancers. However, the contribution of VGSC activity to HGG pathology remains unknown.
Citation: Junaid M, Downs J, Groza T, Lassmann T, Baker S, et al. The United Nations convention on rare diseases—A framework for research
Citation: Gardner M, Shah S, Jain N, Bynevelt M. Rare Occurrence of Congenital Neuroblastoma and Tuberous Sclerosis. Pediatr Neurol. 2026;176:62-3.