Dose-response modelling of stereotactic radiosurgery for brain metastases: Preliminary prospective data from the SAFER study (IRAS 276567).
prospective_cohort · Level II
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- Record sourced from PubMed, PMID 40812484.
- Also identified by DOI 10.1016/j.radonc.2025.111067.
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Abstract
The number of people living with brain metastases (BMs) has increased in the last decade. Despite the large number of patients treated with stereotactic radiosurgery (SRS), there are very few prospective studies of the dose-response relationship to guide practice. We present preliminary dose-response data from a prospective observational study of post-SRS outcomes in patients with BMs (SAFER, IRAS 276567). The first 91 patients who did not have prior radiotherapy or neuro-surgery, to reach 9-months post-SRS follow up in the SAFER study were included. Local control (LC) probability was calculated using Kaplan Meier methodology. Prescription doses were converted to Biologically Effective Doses (BED) using the linear quadratic cubic (LQC) equation, and an alpha-beta ratio of 10. Logistic regression was used for dose-response modelling on a per-lesion basis. The overall 9-month LC rate was 92.01 %. The dose-response curve demonstrated a significant relationship between LQC model BED<sub>10</sub> and LC (odds ratio 1.145, slope 2.479, p = 0.0132). Based on the regression model, 71.50 % of those receiving LQC model BED<sub>10</sub> 35 Gy were predicted to have LC at 9 months. This increased to 97.4 % in those receiving LQC model BED<sub>10</sub> 55 Gy. This is a large prospective dataset on the dose-response relationship of BMs treated with SRS. Our results indicate an LQC model BED<sub>10</sub> 45 Gy is required to achieve 9-month LC of > 90 %. This is equivalent to single fraction-SRS doses > 20 Gy, or 3-fraction SRS doses > 27 Gy.
Medical subject headings
- Radiosurgery
- Brain Neoplasms