Clinical evidence of variable proton biological effectiveness in pediatric patients treated for ependymoma.

Peeler, Christopher R; Mirkovic, Dragan; Titt, Uwe; Blanchard, Pierre; Gunther, Jillian R; Mahajan, Anita; Mohan, Radhe; Grosshans, David R · Radiother Oncol · 2016

case_series · Level IV

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Abstract

A constant relative biological effectiveness (RBE) is used for clinical proton therapy; however, experimental evidence indicates that RBE can vary. We analyzed pediatric ependymoma patients who received proton therapy to determine if areas of normal tissue damage indicated by post-treatment image changes were associated with increased biological dose effectiveness. Fourteen of 34 children showed T2-FLAIR hyperintensity on post-treatment magnetic resonance (MR) images. We delineated regions of treatment-related change and calculated dose and linear energy transfer (LET) distributions with Monte Carlo. Voxel-level image change data were fit to a generalized linear model incorporating dose and LET. Cross-validation was used to determine model parameters and for receiver operating characteristic curve analysis. Tolerance dose (TD<sub>50</sub>; dose at which 50% of patients would experience toxicity) was interpolated from the model. Image changes showed dependence on increasing LET and dose. TD<sub>50</sub> decreased with increasing LET, indicating an increase in biological dose effectiveness. The cross-validated area under the curve for the model was 0.91 (95% confidence interval 0.88-0.94). Our correlation of changes on MR images after proton therapy with increased LET constitutes the first clinical evidence of variable proton biological effectiveness.

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