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Proton Therapy Delivery and Its Clinical Application in Select Solid Tumor Malignancies
Published on: February 6, 2019
Pencil beam scanning proton therapy for pediatric intracranial ependymoma
Carmen Ares1,2, Francesca Albertini3, Martina Frei-Welte4
1Center for Proton Therapy, Paul Scherrer Institute, Villigen PSI, Switzerland. carmen.ares@hcuge.ch.
Insights
Pencil beam scanning proton therapy (PT) is safe and effective for pediatric intracranial ependymoma, showing promising local control and survival rates. Late side effects were comparable to photon therapy, indicating PT
Area of Science:
- Pediatric Oncology
- Radiation Oncology
- Neuro-oncology
Background:
- Intracranial ependymoma is a malignant brain tumor in children.
- Proton therapy (PT) offers potential advantages for pediatric central nervous system tumors.
- Assessing clinical outcomes and late side effects of PT in this population is crucial.
Purpose of the Study:
- To evaluate the clinical outcomes and late side effects of pencil beam scanning proton therapy (PT) in children with intracranial ependymoma.
- To determine local control and overall survival rates.
- To compare the toxicity profile with historical photon therapy data.
Main Methods:
- Retrospective analysis of 50 pediatric patients with intracranial ependymoma treated with involved-field PT.
- Median age at PT was 2.6 years; 92% had high-grade tumors.
- Follow-up for late toxicity (CTCAE v4.0) and clinical outcomes.
Main Results:
- Five-year local control rate was 78% ± 7.5%; 5-year overall survival was 84% ± 6.8%.
- Grade ≥3 toxicity occurred in 3 patients (unilateral deafness, fatal brainstem necrosis).
- PT demonstrated favorable late effects compared to photon-treated cohorts.
Conclusions:
- Pencil beam scanning PT is a safe and effective treatment for pediatric intracranial ependymoma.
- Encouraging local control and survival rates achieved, even in high-risk patients.
- PT offers a favorable toxicity profile for treating pediatric ependymoma.
Abstract:
To assess the clinical outcome and late side effect profile of pencil beam scanning proton therapy (PT) delivered to children with intracranial ependymoma. Between July-2004 and March-2013, 50 patients with intracranial ependymoma (n = 46, grade 3) received involved-field PT at Paul Scherrer Institute (PSI). Median age at time of PT was 2.6 years (range 1.1-15.2). Thirty-six patients had infratentorial and 14 supratentorial ependymomas. Seventeen patients presented with macroscopic residual disease after subtotal resection before starting PT (8 with ≤1.5 cc and 9 with >1.5 cc residual tumor respectively). Forty-three (86 %) patients received post-operative chemotherapy before PT according to protocols; 44 (88 %) patients younger than 5 years required general anesthesia. Median prescribed dose was 59.4 Gy (RBE) (range 54-60) delivered in 1.8-2 Gy (RBE) per fraction. Late toxicity was assessed according to CTCAE v4.0. With a mean follow-up time of 43.4 months (range 8.5-113.7) seven patients experienced local failure (6 with infratentorial tumors and 1 with supratentorial tumor); four of the local failures were in patients with residual disease ≥1.5 cc at the time of PT and 3 without residual macroscopic disease. Five patients died from tumor progression. Actuarial 5-year Local Control rates were 78 ± 7.5 % and 5-year OS rates were 84 ± 6.8 %. Three patients developed grade ≥3 toxicity: 2 developed unilateral deafness (infratentorial tumors infiltrating into the internal acoustic canal), one patient developed a fatal brainstem necrosis. Repeated general anesthesia in children younger than 5 years was delivered without complications. Our data indicate the safety and the effectiveness of PT for pediatric ependymomas. Local control and survival rates are encouraging considering the high grade histology in 92 % of the patients and the number of patients with residual tumor ≥1.5 cc. The rates of late effects compare favorably with published photon-treated cohorts.
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