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Repeat irradiation for children with supratentorial high-grade glioma
Derek S Tsang1,2, Carol Oliveira3, Eric Bouffet2
1Radiation Medicine Program, Princess Margaret Cancer Centre, University Health Network, Toronto, Ontario, Canada.
Insights
Repeat irradiation (RT2) is a safe and effective treatment for children with recurrent supratentorial high-grade glioma (HGG), offering short-term disease control. Longer intervals between initial radiation (RT1) and RT2 correlate with improved overall survival.
Area of Science:
- Pediatric Oncology
- Radiation Oncology
- Neuro-oncology
Background:
- Limited research exists on repeat irradiation (RT2) for pediatric recurrent supratentorial high-grade glioma (HGG).
- Assessing the efficacy and safety of RT2 in this specific patient population is crucial.
Purpose of the Study:
- To evaluate the effectiveness and safety of repeat irradiation (RT2) in children with recurrent supratentorial high-grade glioma (HGG).
Main Methods:
- Retrospective cohort study of 40 pediatric patients (≤18 years) with recurrent supratentorial HGG who received at least one course of radiation.
- In-field reirradiation doses ranged from 30 to 54 Gy.
- Primary endpoint was overall survival (OS) from the initiation of RT2.
Main Results:
- Fourteen patients received RT2, with a median survival of 6.5 months.
- Patients with ≥12 months between RT1 and RT2 had significantly longer OS (P=0.009).
- 80% of patients with locally recurrent disease treated with in-field RT2 experienced clinical benefit (response or stable disease).
- Patients selected for RT2 showed improved median survival from first progression compared to those not reirradiated (9.4 vs 3.8 months, P=0.005).
Conclusions:
- Repeat irradiation (RT2) is a safe and effective treatment for pediatric recurrent supratentorial HGG.
- RT2 provides short-term disease control.
- Longer intervals between RT1 and RT2 are associated with better outcomes.
Background:
There are very few studies about the role of repeat irradiation (RT2) for children with recurrent supratentorial high-grade glioma (HGG). It was the aim of this study to assess the effectiveness and safety of RT2 in this population.
Procedure:
This was a retrospective cohort study of 40 children age 18 years and under with recurrent supratentorial HGG who had received at least one course of RT. In-field reirradiation volumes included focal or whole brain RT, with doses ranging from 30 to 54 Gy. The primary endpoint was overall survival (OS) from the first day of RT2.
Results:
Fourteen patients underwent RT2. The median survival of these patients was 6.5 months. Patients with ≥12 months elapsed time between RT1 and RT2 experienced longer OS than patients who had < 12 months (P = 0.009). There was no difference in OS between patients with or without germline mutations (e.g., Lynch, Li-Fraumeni, or constitutional mismatch-repair deficiency, P = 0.20). Ten patients received RT2 that overlapped with RT1 volumes for locally recurrent disease. Of this group, 80% experienced clinical benefit from in-field RT2, defined as clinical/radiologic response or stable disease. Ninety-three percent completed the prescribed course of RT2, with one patient developing grade 3 radiation necrosis four months after RT2. When compared with 26 patients who were not offered reirradiation, those selected for RT2 had improved median survival from the time of first disease progression (9.4 vs 3.8 months, P = 0.005).
Conclusions:
Reirradiation for children with recurrent supratentorial HGG is a safe, effective treatment that provides short-term disease control.
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