Homologous recombination repair mutation testing patterns in metastatic castration-resistant prostate cancer: Analysis of real-world data in the United States.
Abstract
102 Background: Homologous recombination repair mutations (HRRms) have predictive/prognostic value in metastatic castration-resistant prostate cancer (mCRPC). While therapies are approved for patients (pts) with HRRm mCRPC, HRRm testing data is limited in the United States (US). This analysis utilized real-world secondary data to assess US HRRm testing patterns in pts with mCRPC. Methods: Data were drawn from the Adelphi Real World Prostate Cancer Disease Specific Programme, a cross-sectional survey with retrospective data collection including medical oncologists (ONC) and urologists (URO) and their mCRPC pts in the US from Nov’22 – Jul'23. ONC/URO reported demographics, disease characteristics, and HRRm testing status for ≥1 of 10 genes of interest ( ATM, ATR, BRCA1, BRCA2, CDK12, CHEK2, FANCA, NBN, PALB2, RAD51C ) for eight consecutively seen adult pts. Analyses were descriptive. Logistic regression assessed variables associated with receiving a HRRm test. Results: Overall, 70 ONC/URO reported on 448 pts, of whom 53% received HRRm testing (ONC 57%, URO 39%). Mean (standard deviation) pt age (years) was 69.2 (8.2) for pts who were tested (vs 70.6 [8.3] not tested). HRRm testing occurred in: 73% with a known family history of HRRm-related (prostate/breast/ovarian/pancreatic) cancer (vs 50% without); 53% with visceral metastases (vs 52% without); 61% with an initial localized diagnosis (Dx; vs 48% regional/47% metastatic); 56% of pts with a Gleason score (GS) ≥8 at initial Dx (vs 43% with <8); and 63% with private insurance (vs 48% with public). Metastatic disease at initial Dx (odds ratio [OR] 0.41), no known family history of HRRm-related cancer (OR 0.40), and a GS <8 at initial Dx (OR 0.51) were significantly associated with lower odds of HRRm testing (all p<0.05; Table). Conclusions: In this analysis, nearly half of pts did not receive a HRRm test. As with prior analyses, disparities in testing were evident for pts with a lower GS at initial Dx, metastatic disease at initial Dx and/or those without a family history of cancer, highlighting a need to increase HRRm testing in the US. Association of covariates with odds ratio for HRRm test. Covariate Odds ratio (95% confidence interval) p value Physician specialty: Urologist vs Medical oncologist 0.49 (0.19–1.30) 0.152 Age (years): ≥65 vs <65 0.91 (0.28–2.90) 0.867 Family history of HRRm-related cancer: No history vs Known history 0.40 (0.18–0.89) 0.025* Ethnicity: Non white vs White 0.94 (0.51–1.73) 0.843 Metastatic sites: Visceral metastases vs No visceral metastases 0.67 (0.35–1.29) 0.237 Gleason score: <8 vs ≥8 0.51 (0.27–0.97) 0.042* Initial diagnosis: Regional vs LocalizedMetastatic vs Localized 0.68 (0.28–1.69)0.41 (0.17–1.00) 0.408 0.049* Insurance status: Private vs Public 1.09 (0.47–2.52) 0.844 *Statistical significance ( P <0.05). HRRm, homologous recombination repair mutation.
Article Details
Journal Info
Journal of Clinical Oncology
Lippincott Williams & Wilkins
Authors (10)
Pedro C. Barata
Division of Solid Tumor Oncology, Department of Medicine University Hospitals, Cleveland Medical Center Case Western Reserve University School of Medicine Cleveland Ohio USA
Suvina Amin
Pfizer Inc., New York, NY
Alexander Niyazov
Pfizer Inc., New York, NY
Melissa Kirker
Pfizer Inc., New York, NY
Amanda Ribbands
5Adelphi Real World, Bollington, United Kingdom
Jake Butcher
Adelphi Real World, Bollington, United Kingdom
Jacob Skilling
Adelphi Real World, Bollington, United Kingdom
Alex Busby
Adelphi Real World, Bollington, United Kingdom
Alastair Hinds
Adelphi Real World, Bollington, United Kingdom
Elena Castro
Hospital Universitario 12 de Octubre, Madrid, Spain