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Published on: February 6, 2019
Outcomes following limited-volume proton therapy for multifocal spinal myxopapillary ependymoma
Wen Shen Looi1, Daniel J Indelicato1, Raymond B Mailhot Vega1
1Department of Radiation Oncology, University of Florida College of Medicine, Jacksonville, Florida.
Purpose:
Spinal myxopapillary ependymoma (MPE) often presents with a multifocal distribution, complicating attempts at resection. There remains no standard approach to irradiating these patients. We report disease control and toxicity in pediatric patients with multifocal spinal MPE treated with limited-volume proton therapy.
Materials/Methods:
Twelve patients (≤21 years old) with multifocal spinal MPE were treated between 2009 and 2018 with limited-volume brain-sparing proton therapy. Median age was 13.5 years (range, 7-21). Radiotherapy was given as adjuvant therapy after primary surgery in five patients (42%) and for recurrence in seven (58%). No patient received prior radiation. Eleven patients (92%) had evidence of gross disease at radiotherapy. Eleven patients received 54 GyRBE; one received 50.4 GyRBE. Treatment toxicity was graded per the CTCAEv4.0. We estimated disease control and survival using the Kaplan-Meier product-limit method.
Results:
The median follow-up was 3.6 years (range, 1.8-10.6). The five-year actuarial rates of local control, progression-free survival, and overall survival were 100%, 92%, and 100%, respectively. One patient experienced an out-of-field recurrence in the spine superior to the irradiated region. No patients developed in-field recurrences. Following surgery and irradiation, one patient developed grade three spinal kyphosis and one patient developed grade 2 unilateral L5 neuropathy.
Conclusion:
54 GyRBE to a limited volume appears effective for disseminated spinal MPE in both the primary and salvage settings, sparing children the toxicity of full craniospinal irradiation. Compared with historical reports, this approach using proton therapy improves the therapeutic ratio, resulting in minimal side effects and high rates of disease control.
Insights
Limited-volume proton therapy shows high disease control and minimal toxicity in pediatric patients with multifocal spinal myxopapillary ependymoma (MPE). This approach offers an improved therapeutic ratio compared to historical methods for treating this rare spinal tumor.
Area of Science:
- Pediatric Oncology
- Radiation Oncology
- Neuro-oncology
Background:
- Spinal myxopapillary ependymoma (MPE) frequently presents multifocally, challenging surgical resection.
- Standardized irradiation protocols for multifocal spinal MPE are lacking.
- Pediatric patients with multifocal spinal MPE require effective and less toxic treatment strategies.
Purpose of the Study:
- To evaluate the efficacy and toxicity of limited-volume proton therapy in pediatric patients with multifocal spinal MPE.
- To assess disease control rates and treatment-related adverse events following proton therapy.
- To compare the therapeutic ratio of this approach with historical treatments.
Main Methods:
- Retrospective analysis of 12 pediatric patients (age ≤21) with multifocal spinal MPE treated between 2009-2018.
- Limited-volume, brain-sparing proton therapy delivered at doses of 50.4-54 GyRBE.
- Evaluation of local control, progression-free survival, and overall survival using Kaplan-Meier method.
- Toxicity grading according to CTCAEv4.0.
Main Results:
- Median follow-up of 3.6 years.
- Five-year actuarial rates: 100% local control, 92% progression-free survival, 100% overall survival.
- One out-of-field recurrence superior to the irradiated spine; no in-field recurrences.
- Grade 3 spinal kyphosis in one patient; Grade 2 unilateral L5 neuropathy in another.
Conclusions:
- Limited-volume proton therapy (54 GyRBE) is effective for disseminated spinal MPE in pediatric patients, both primarily and for salvage.
- This technique spares children the toxicity associated with full craniospinal irradiation.
- Proton therapy improves the therapeutic ratio, offering minimal side effects and high disease control rates for spinal MPE.

