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Updated: Dec 15, 2025

Tumor Treating Field Therapy in Combination with Bevacizumab for the Treatment of Recurrent Glioblastoma
Published on: October 27, 2014
[Glioblastomas in patients with medulloblastomas after combined treatment]
A V Golanov1, M V Ryzhova1, Yu Yu Trunin1
1Burdenko Neurosurgical Center, Moscow, Russia.
Abstract:
Medulloblastoma (MB) is the most common brain malignancy in children occurring in the posterior cranial fossa. This tumor is characterized by high risk of metastasis along the CSF pathways. Significant progress in research of this tumor and appropriate treatment is associated with determining the various molecular categories of primary medulloblastomas. This analysis includes certain factors of cytogenetic and transcriptional proliferation. Modern treatment approaches for patients older than 3 years include advanced resection, craniospinal irradiation with a boost on the postoperative bed followed by platinum-based chemotherapy. Conventional radiotherapy including craniospinal irradiation results a significant number of complications. Morbidity rate is increased throughout long-term follow-up. Secondary tumors including glioblastomas are under special attention since their occurrence is associated with a fatal outcome. This may partially explaine the fact that chemotherapy without repeated morphological verification doesn't always ensure tumor growth control in patients with recurrent medulloblastomas. The authors consider irradiation-induced glioblastomas secondary to primarily verified medulloblastomas in patients who had previously undergone craniospinal irradiation as a component of combined treatment after tumor resection. It was found that the incidence of this phenomenon is significant and made up about 10% among patients with recurrent medulloblastomas. This value is significantly higher compared to previous data. The authors analyzed patterns of occurrence of irradiation-induced glioblastomas depending on the molecular genetic group and clinical characteristics of patients after primary surgery. Treatment outcomes were estimated too. It was concluded that morphological verification is necessary if long-term recurrence is diagnosed after combined treatment of medulloblastoma.
Insights
Medulloblastoma treatment can lead to secondary glioblastomas, especially in children. Morphological verification is crucial for diagnosing long-term medulloblastoma recurrence after initial treatment.
Area of Science:
- Pediatric neuro-oncology
- Radiation oncology
- Molecular pathology
Background:
- Medulloblastoma (MB) is a common pediatric posterior fossa brain tumor with high metastatic potential.
- Current MB treatment involves surgery, craniospinal irradiation, and chemotherapy, which can cause significant long-term complications.
- Secondary tumors, particularly glioblastomas, are a concern, often linked to fatal outcomes.
Purpose of the Study:
- To investigate the incidence and patterns of irradiation-induced glioblastomas in medulloblastoma survivors.
- To analyze the relationship between these secondary tumors, molecular subtypes, and clinical characteristics.
- To evaluate treatment outcomes and the necessity of morphological verification for recurrent medulloblastoma.
Main Methods:
- Retrospective analysis of medulloblastoma patients treated with craniospinal irradiation.
- Correlation of secondary glioblastoma occurrence with molecular genetic groups and clinical data.
- Assessment of treatment outcomes and recurrence patterns.
Main Results:
- The incidence of irradiation-induced glioblastomas was approximately 10% in recurrent medulloblastoma cases, higher than previously reported.
- Analysis revealed patterns in the occurrence of these secondary tumors based on molecular and clinical factors.
- Treatment outcomes for patients with secondary glioblastomas were evaluated.
Conclusions:
- Morphological verification is essential for diagnosing long-term medulloblastoma recurrence following combined treatment.
- Craniospinal irradiation, while effective, carries a risk of secondary glioblastoma development.
- Understanding these risks aids in refining treatment strategies and follow-up protocols for pediatric medulloblastoma.

