Medical Management of Modifiable Risks: Improving Survival in High-Risk Prostate Cancer Patients Receiving Brachytherapy.

Background: High-risk (HR) prostate cancer has a propensity for local and distant progression with ultimate death, mandating aggressive locoregional and systemic treatment approaches to maximize oncologic outcomes. Although brachytherapy (BT) with supplemental therapies has demonstrated favorable biochemical and quality of life outcomes, improvements in overall survival have been hampered by an excessive incidence of non- prostate cancer deaths. In this HR study, we report on biochemical failure (BF), prostate cancer-specific mortality (PCSM), overall mortality (OM) and patterns of death with recommendations for the mitigation of non-prostate cancer deaths. Materials and Methods: From April 1995 to November 2018, 577 consecutive HR patients were treated with LDR BT (97.9% Pd-103). Patients were stratified into three age cohorts: ≤ 59, 60-69 and ≥70 years. The BT prescription dose was prescribed to the prostate gland with generous peri-prostatic margins and the proximal 10mm of the seminal vesicles. 94.6% received supplemental EBRT (45-50.4 Gy) and 63.3% received androgen deprivation therapy (ADT) (median duration 12 months). Post-implant CT-based dosimetry was performed on day 0. BF was defined as a PSA > 0.40 ng/mL after nadir. The cause of death was determined for each patient. Patients with metastatic prostate cancer or non-metastatic castrate resistant prostate cancer who died of any cause were classified as dead of prostate cancer. All other deaths were attributed to the immediate cause. Multiple clinical, pathologic and treatment were evaluated for impact on patient outcomes. Results: Of the patients, 87.5% (median follow-up 8.9 years) presented with a single HR factor. The day 0 D90 was 122.5%. Overall, the 15-year BF, PCSM and OM were 12.4%, 5.6% and 51.7%. When stratified by age, there was no significant difference in BF or PCSM. The median post- treatment PSA in biochemically controlled patients was <0.01 ng/mL. In all three cohorts, OM increased linearly for the first 10 years and then approximately doubled from years 10 to 15. Moreover, 239 patients died: 10.9% due to prostate cancer, 38.1% from cardiovascular (CV) disease and 28.4% from other malignancies (to include one rectal and three bladder cancers). In MVA, BF was most closely related to percent positive biopsies (p < 0.001, SHR 1.018), PCSM to Gleason score (p = 0.004, SHR 2.884) and percent positive biopsies (p = 0.005, SHR 1.021) and OM to age (p < 0.001, HR 1.075) and tobacco (p < 0.001, HR 2.374). Conclusions: Despite high cancer control rates, overall survival was limited by a preponderance of CV and non-prostate cancer deaths, which were 6 times more likely than prostate cancer deaths. The implementation of a comprehensive multidisciplinary survivorship program will be essential to impact longevity in this patient population.

Journal of clinical medicine. 2026 Jul 10*** epublish ***

Shalini Moningi, Grgur Mirić, Robert W Galbreath, Ryan Fiano, Kent E Wallner, Mutlay Sayan, Peter F Orio, Martin King

Department of Radiation Oncology, Taussig Cancer Institute, Cleveland Clinic Foundation, 9500 Euclide Avenue, CA-50, Cleveland, OH 44195, USA., Urologic Research Institute, Sarasota, FL 34236, USA., Department of Radiation Oncology, University of Washington, Seattle, WA 98195, USA., Department of Radiation Oncology, Brigham and Women's Hospital, Boston, MA 02115, USA., Dana Farber Cancer Institute, Boston, MA 02215, USA.